4.7 Article

Aspirin delays mesothelioma growth by inhibiting HMGB1-mediated tumor progression

期刊

CELL DEATH & DISEASE
卷 6, 期 -, 页码 -

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/cddis.2015.153

关键词

-

资金

  1. NCI [R01 CA160715, P01 CA114047, P30 CA071789]
  2. DOD [CA120355]
  3. The Riviera United 4-a Cure
  4. V-Foundation
  5. University of Hawai'i Foundation
  6. Ricerca Finalizzata from the Italian Ministry of Health
  7. Associazione Italiana Ricerca sul Cancro [IG-10411, IG-14442, MFAG-13521]

向作者/读者索取更多资源

High-mobility group box 1 (HMGB1) is an inflammatory molecule that has a critical role in the initiation and progression of malignant mesothelioma (MM). Aspirin (acetylsalicylic acid, ASA) is the most widely used nonsteroidal anti-inflammatory drug that reduces the incidence, metastatic potential and mortality of many inflammation-induced cancers. We hypothesized that ASA may exert anticancer properties in MM by abrogating the carcinogenic effects of HMGB1. Using HMGB1-secreting and -non-secreting human MM cell lines, we determined whether aspirin inhibited the hallmarks of HMGB1-induced MM cell growth in vitro and in vivo. Our data demonstrated that ASA and its metabolite, salicylic acid (SA), inhibit motility, migration, invasion and anchorage-independent colony formation of MM cells via a novel HMGB1-mediated mechanism. ASA/SA, at serum concentrations comparable to those achieved in humans taking therapeutic doses of aspirin, and BoxA, a specific inhibitor of HMGB1, markedly reduced MM growth in xenograft mice and significantly improved survival of treated animals. The effects of ASA and BoxA were cyclooxygenase-2 independent and were not additive, consistent with both acting via inhibition of HMGB1 activity. Our findings provide a rationale for the well documented, yet poorly understood antitumorigenic activity of aspirin, which we show proceeds via HMGB1 inhibition. Moreover, the use of BoxA appears to allow a more efficient HMGB1 targeting while eluding the known gastrointestinal side effects of ASA. Our findings are directly relevant to MM. Given the emerging importance of HMGB1 and its tumor-promoting functions in many cancer types, and of aspirin in cancer prevention and therapy, our investigation is poised to provide broadly applicable information.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

Article Oncology

Current management of benign retroperitoneal tumors

Fabio Tirotta, Andrea Napolitano, Sangkyu Noh, Erika Schmitz, Carolyn Nessim, Dakshesh Patel, Jason K. Sicklick, Myles Smith, Khin Thway, Jos van der Hage, Samuel J. Ford, William W. Tseng

Summary: This review provides an overview of current management strategies for adult patients with benign retroperitoneal tumors (BRT). Despite the significant heterogeneity of BRT, several generic considerations have emerged and can be applied to its management. It is notable that misdiagnosis of BRT with other pathology, such as retroperitoneal sarcoma, is a significant risk. Suspected BRT should be referred to specialized sarcoma centers for further evaluation.
Article Biochemistry & Molecular Biology

Calcium Homeostasis in the Control of Mitophagy

Mariasole Perrone, Simone Patergnani, Tommaso Di Mambro, Laura Palumbo, Mariusz R. Wieckowski, Carlotta Giorgi, Paolo Pinton

Summary: Maintenance of mitochondrial quality is crucial for cellular homeostasis. Mitophagy, the selective elimination of dysfunctional mitochondria, plays a significant role in various diseases, including carcinogenesis, neurodegenerative disorders, and cardiovascular pathologies. The relationship between calcium homeostasis and mitophagy is still a topic of debate.

ANTIOXIDANTS & REDOX SIGNALING (2023)

Article Cell Biology

The inhibition of MDM2 slows cell proliferation and activates apoptosis in ADPKD cell lines

Simone Patergnani, Antonino Giattino, Nicoletta Bianchi, Carlotta Giorgi, Paolo Pinton, Gianluca Aguiari

Summary: This study reveals that inhibition of mTOR activates autophagy in ADPKD cells, leading to drug degradation through autophagic vesicles and reduced therapeutic efficacy. The combination of mTOR inhibitor and autophagy inhibitor enhances the decrease in cell proliferation caused by mTOR inhibition. Targeting MDM2, a downstream effector of mTOR signaling, prevents TP53 degradation and induces cell apoptosis, providing a new therapeutic option for ADPKD treatment.

BIOLOGY OF THE CELL (2023)

Article Astronomy & Astrophysics

Polarization Properties of the Weakly Magnetized Neutron Star X-Ray Binary GS 1826-238 in the High Soft State

Fiamma Capitanio, Sergio Fabiani, Andrea Gnarini, Francesco Ursini, Carlo Ferrigno, Giorgio Matt, Juri Poutanen, Massimo Cocchi, Romana Mikusincova, Ruben Farinelli, Stefano Bianchi, Jari J. E. Kajava, Fabio Muleri, Celia Sanchez-Fernandez, Paolo Soffitta, Kinwah Wu, Ivan Agudo, Lucio A. Antonelli, Matteo Bachetti, Luca Baldini, Wayne H. Baumgartner, Ronaldo Bellazzini, Stephen D. Bongiorno, Raffaella Bonino, Alessandro Brez, Niccolo Bucciantini, Simone Castellano, Elisabetta Cavazzuti, Stefano Ciprini, Enrico Costa, Alessandra De Rosa, Ettore Del Monte, Laura Di Gesu, Niccolo Di Lalla, Alessandro Di Marco, Immacolata Donnarumma, Victor Doroshenko, Michal Dovciak, Steven R. Ehlert, Teruaki Enoto, Yuri Evangelista, Riccardo Ferrazzoli, Javier A. Garcia, Shuichi Gunji, Kiyoshi Hayashida, Jeremy Heyl, Wataru Iwakiri, Svetlana G. Jorstad, Vladimir Karas, Takao Kitaguchi, Jeffery J. Kolodziejczak, Henric Krawczynski, Fabio La Monaca, Luca Latronico, Ioannis Liodakis, Simone Maldera, Alberto Manfreda, Frederic Marin, Andrea Marinucci, Alan P. Marscher, Herman L. Marshall, Ikuyuki Mitsuishi, Tsunefumi Mizuno, C. -Y. Ng, Stephen L. O'Dell, Nicola Omodei, Chiara Oppedisano, Alessandro Papitto, George G. Pavlov, Abel L. Peirson, Matteo Perri, Melissa Pesce-Rollins, Pierre-Olivier Petrucci, Maura Pilia, Andrea Possenti, Simonetta Puccetti, Brian D. Ramsey, John Rankin, Ajay Ratheesh, Roger W. Romani, Carmelo Sgro, Patrick Slane, Gloria Spandre, Toru Tamagawa, Fabrizio Tavecchio, Roberto Taverna, Yuzuru Tawara, Allyn F. Tennant, Nicholas E. Thomas, Francesco Tombesi, Alessio Trois, Sergey S. Tsygankov, Roberto Turolla, Jacco Vink, Martin C. Weisskopf, Fei Xie, Silvia Zane

Summary: The launch of IXPE on December 9, 2021 has provided a new perspective in X-ray astronomy. In this study, we present the first observation results of GS 1826-238, a weakly magnetized neutron star, using IXPE on March 29-31, 2022. The upper limit of linear polarization degree (99.73% confidence level) is found to be 1.3% in the energy range of 2-8 keV. Coordinated observations with INTEGRAL and NICER were conducted simultaneously to constrain the geometry and inclination angle of GS 1826-238.

ASTROPHYSICAL JOURNAL (2023)

Article Astronomy & Astrophysics

X-Ray Polarization Observations of BL Lacertae

Riccardo Middei, Ioannis Liodakis, Matteo Perri, Simonetta Puccetti, Elisabetta Cavazzuti, Laura Di Gesu, Steven R. Ehlert, Grzegorz Madejski, Alan P. Marscher, Herman L. Marshall, Fabio Muleri, Michela Negro, Svetlana G. Jorstad, Beatriz Agis-Gonzalez, Ivan Agudo, Giacomo Bonnoli, Maria Bernardos, Victor Casanova, Maya Garcia-Comas, Cesar Husillos, Alessandro Marchini, Alfredo Sota, Pouya M. Kouch, Elina Lindfors, George A. Borman, Evgenia N. Kopatskaya, Elena G. Larionova, Daria A. Morozova, Sergey S. Savchenko, Andrey A. Vasilyev, Alexey Zhovtan, Carolina Casadio, Juan Escudero, Ioannis Myserlis, Antonio Hales, Seiji Kameno, Ruediger Kneissl, Hugo Messias, Hiroshi Nagai, Dmitry Blinov, Ioakeim G. Bourbah, Sebastian Kiehlmann, Evangelos Kontopodis, Nikos Mandarakas, Stylianos Romanopoulos, Raphael Skalidis, Anna Vervelaki, Joseph R. Masiero, Dimitri Mawet, Maxwell A. Millar-Blanchaer, Georgia Panopoulou, Samaporn Tinyanont, Andrei Berdyugin, Masato Kagitani, Vadim Kravtsov, Takeshi Sakanoi, Ryo Imazawa, Mahito Sasada, Yasushi Fukazawa, Koji S. Kawabata, Makoto Uemura, Tsunefumi Mizuno, Tatsuya Nakaoka, Hiroshi Akitaya, Mark Gurwell, Ramprasad Rao, Niccolo Di Lalla, Nicolo Cibrario, Immacolata Donnarumma, Dawoon E. Kim, Nicola Omodei, Luigi Pacciani, Juri Poutanen, Fabrizio Tavecchio, Lucio A. Antonelli, Matteo Bachetti, Luca Baldini, Wayne H. Baumgartner, Ronaldo Bellazzini, Stefano Bianchi, Stephen D. Bongiorno, Raffaella Bonino, Alessandro Brez, Niccolo Bucciantini, Fiamma Capitanio, Simone Castellano, Stefano Ciprini, Enrico Costa, Alessandra De Rosa, Ettore Del Monte, Alessandro Di Marco, Victor Doroshenko, Michal Dovciak, Teruaki Enoto, Yuri Evangelista, Sergio Fabiani, Riccardo Ferrazzoli, Javier A. Garcia, Shuichi Gunji, Kiyoshi Hayashida, Jeremy Heyl, Wataru Iwakiri, Vladimir Karas, Takao Kitaguchi, Jeffery J. Kolodziejczak, Henric Krawczynski, Fabio La Monaca, Luca Latronico, Simone Maldera, Alberto Manfreda, Frederic Marin, Andrea Marinucci, Francesco Massaro, Giorgio Matt, Ikuyuki Mitsuishi, C-Y Ng, Stephen L. O'Dell, Chiara Oppedisano, Alessandro Papitto, George G. Pavlov, Abel L. Peirson, Melissa Pesce-Rollins, Pierre-Olivier Petrucci, Maura Pilia, Andrea Possenti, Brian D. Ramsey, John Rankin, Ajay Ratheesh, Roger W. Romani, Carmelo Sgro, Patrick Slane, Paolo Soffitta, Gloria Spandre, Toru Tamagawa, Roberto Taverna, Yuzuru Tawara, Allyn F. Tennant, Nicholas E. Thomas, Francesco Tombesi, Alessio Trois, Sergey Tsygankov, Roberto Turolla, Jacco Vink, Martin C. Weisskopf, Kinwah Wu, Fei Xie, Silvia Zane

Summary: A multiwavelength polarization analysis of BL Lacertae suggests that proton-synchrotron radiation does not significantly contribute to its X-ray emission, providing support for a leptonic origin.

ASTROPHYSICAL JOURNAL LETTERS (2023)

Article Biochemistry & Molecular Biology

PML at mitochondria-associated membranes governs a trimeric complex with NLRP3 and P2X7R that modulates the tumor immune microenvironment

Sonia Missiroli, Mariasole Perrone, Roberta Gafa, Francesco Nicoli, Massimo Bonora, Giampaolo Morciano, Caterina Boncompagni, Saverio Marchi, Magdalena Lebiedzinska-Arciszewska, Bianca Vezzani, Giovanni Lanza, Franz Kricek, Alessandro Borghi, Francesco Fiorica, Keisuke Ito, Mariusz R. Wieckowski, Francesco Di Virgilio, Luigi Abelli, Paolo Pinton, Carlotta Giorgi

Summary: Uncontrolled inflammatory response from the tumor microenvironment significantly contributes to cancer progression. A trimeric complex at the mitochondria-associated membranes, involving P2X7 receptor-NLRP3 inflammasome interaction, is regulated by the tumor suppressor PML. Downregulation of PML leads to an exacerbated immune response and boosted tumor growth. Mislocalization of PML results in uncontrolled NLRP3 activation and cytokine production, fueling cancer development and worsening prognosis in various human cancers. Mechanistic insights into the PML-P2X7R-NLRP3 axis provide new opportunities for targeted therapeutic approaches in human carcinogenesis.

CELL DEATH AND DIFFERENTIATION (2023)

Article Multidisciplinary Sciences

SARS-CoV-2 viral entry and replication is impaired in Cystic Fibrosis airways due to ACE2 downregulation

Valentino Bezzerri, Valentina Gentili, Martina Api, Alessia Finotti, Chiara Papi, Anna Tamanini, Christian Boni, Elena Baldisseri, Debora Olioso, Martina Duca, Erika Tedesco, Sara Leo, Monica Borgatti, Sonia Volpi, Paolo Pinton, Giulio Cabrini, Roberto Gambari, Francesco Blasi, Giuseppe Lippi, Alessandro Rimessi, Roberta Rizzo, Marco Cipolli

Summary: As an inherited disorder characterized by severe pulmonary disease, cystic fibrosis could be considered a comorbidity for coronavirus disease 2019. However, current clinical evidence suggests that cystic fibrosis may actually protect against SARS-CoV-2 infection. The expression of SARS-CoV-2 receptors in primary airway epithelial cells is regulated by the CFTR channel, and dysfunctional CFTR channels in cystic fibrosis cells result in reduced viral entry and replication.

NATURE COMMUNICATIONS (2023)

Review Biochemistry & Molecular Biology

Apoptotic cell death in disease-Current understanding of the NCCD 2023

Ilio Vitale, Federico Pietrocola, Emma Guilbaud, Stuart A. Aaronson, John M. Abrams, Dieter Adam, Massimiliano Agostini, Patrizia Agostinis, Emad S. Alnemri, Lucia Altucci, Ivano Amelio, David W. Andrews, Rami Aqeilan, Eli Arama, Eric H. Baehrecke, Siddharth Balachandran, Daniele Bano, Nickolai A. Barlev, Jiri Bartek, Nicolas G. Bazan, Christoph Becker, Francesca Bernassola, Mathieu J. M. Bertrand, Marco E. Bianchi, Mikhail V. Blagosklonny, J. Magarian Blander, Giovanni Blandino, Klas Blomgren, Christoph Borner, Carl D. Bortner, Pierluigi Bove, Patricia Boya, Catherine Brenner, Petr Broz, Thomas Brunner, Rune Busk Damgaard, George A. Calin, Michelangelo Campanella, Eleonora Candi, Michele Carbone, Didac Carmona-Gutierrez, Francesco Cecconi, Francis K-M Chan, Guo-Qiang Chen, Quan Chen, Youhai H. Chen, Emily H. Cheng, Jerry E. Chipuk, John A. Cidlowski, Aaron Ciechanover, Gennaro Ciliberto, Marcus Conrad, Juan R. Cubillos-Ruiz, Peter E. Czabotar, Vincenzo D'Angiolella, Mads Daugaard, Ted M. Dawson, Valina L. Dawson, Ruggero De Maria, Bart De Strooper, Klaus-Michael Debatin, Ralph J. Deberardinis, Alexei Degterev, Giannino Del Sal, Mohanish Deshmukh, Francesco Di Virgilio, Marc Diederich, Scott J. Dixon, Brian D. Dynlacht, Wafik S. El-Deiry, John W. Elrod, Kurt Engeland, Gian Maria Fimia, Claudia Galassi, Carlo Ganini, Ana J. Garcia-Saez, Abhishek D. Garg, Carmen Garrido, Evripidis Gavathiotis, Motti Gerlic, Sourav Ghosh, Douglas R. Green, Lloyd A. Greene, Hinrich Gronemeyer, Georg Haecker, Gyorgy Hajnoczky, J. Marie Hardwick, Ygal Haupt, Sudan He, David M. Heery, Michael O. Hengartner, Claudio Hetz, David A. Hildeman, Hidenori Ichijo, Satoshi Inoue, Marja Jaeaettelae, Ana Janic, Bertrand Joseph, Philipp J. Jost, Thirumala-Devi Kanneganti, Michael Karin, Hamid Kashkar, Thomas Kaufmann, Gemma L. Kelly, Oliver Kepp, Adi Kimchi, Richard N. Kitsis, Daniel J. Klionsky, Ruth Kluck, Dmitri Krysko, Dagmar Kulms, Sharad Kumar, Sergio Lavandero, Inna N. Lavrik, John J. Lemasters, Gianmaria Liccardi, Andreas Linkermann, Stuart A. Lipton, Richard A. Lockshin, Carlos Lopez-Otin, Tom Luedde, Marion MacFarlane, Frank Madeo, Walter Malorni, Gwenola Manic, Roberto Mantovani, Saverio Marchi, Jean-Christophe Marine, Seamus J. Martin, Jean-Claude Martinou, Pier G. Mastroberardino, Jan Paul Medema, Patrick Mehlen, Pascal Meier, Gerry Melino, Sonia Melino, Edward A. Miao, Ute M. Moll, Cristina Munoz-Pinedo, Daniel J. Murphy, Maria Victoria Niklison-Chirou, Flavia Novelli, Gabriel Nunez, Andrew Oberst, Dimitry Ofengeim, Joseph T. Opferman, Moshe Oren, Michele Pagano, Theocharis Panaretakis, Manolis Pasparakis, Josef M. Penninger, Francesca Pentimalli, David M. Pereira, Shazib Pervaiz, Marcus E. Peter, Paolo Pinton, Giovanni Porta, Jochen H. M. Prehn, Hamsa Puthalakath, Gabriel A. Rabinovich, Krishnaraj Rajalingam, Kodi S. Ravichandran, Markus Rehm, Jean-Ehrland Ricci, Rosario Rizzuto, Nirmal Robinson, Cecilia M. P. Rodrigues, Barak Rotblat, Carla Rothlin, David C. Rubinsztein, Thomas Rudel, Alessandro Rufini, Kevin M. Ryan, Kristopher A. Sarosiek, Akira Sawa, Emre Sayan, Kate Schroder, Luca Scorrano, Federico Sesti, Feng Shao, Yufang Shi, Giuseppe S. Sica, John Silke, Hans-Uwe Simon, Antonella Sistigu, Anastasis Stephanou, Brent R. Stockwell, Flavie Strapazzon, Andreas Strasser, Liming Sun, Erwei Sun, Qiang Sun, Gyorgy Szabadkai, Stephen W. G. Tait, Daolin Tang, Nektarios Tavernarakis, Carol M. Troy, Boris Turk, Nicoletta Urbano, Peter Vandenabeele, Tom Vanden Berghe, Matthew G. Vander Heiden, Jacqueline L. Vanderluit, Alexei Verkhratsky, Andreas Villunger, Silvia von Karstedt, Anne K. Voss, Karen H. Vousden, Domagoj Vucic, Daniela Vuri, Erwin F. Wagner, Henning Walczak, David Wallach, Ruoning Wang, Ying Wang, Achim Weber, Will Wood, Takahiro Yamazaki, Huang-Tian Yang, Zahra Zakeri, Joanna E. Zawacka-Pankau, Lin Zhang, Haibing Zhang, Boris Zhivotovsky, Wenzhao Zhou, Mauro Piacentini, Guido Kroemer, Lorenzo Galluzzi

Summary: Apoptosis is a regulated cell death process involving caspase family proteases. Inhibiting or delaying apoptosis experimentally through pharmacological and genetic strategies has demonstrated its importance in embryonic development, tissue homeostasis, and the pathogenesis of various human disorders. Defects in apoptotic cell death machinery impair development and promote oncogenesis, while inappropriate activation of apoptosis contributes to cell loss and tissue damage in neurological, cardiovascular, renal, hepatic, infectious, neoplastic, and inflammatory conditions.

CELL DEATH AND DIFFERENTIATION (2023)

Article Biochemistry & Molecular Biology

1,3,8-Triazaspiro[4.5]decane Derivatives Inhibit Permeability Transition Pores through a FO-ATP Synthase c Subunit Glu119-Independent Mechanism That Prevents Oligomycin A-Related Side Effects

Gaia Pedriali, Daniela Ramaccini, Esmaa Bouhamida, Alessio Branchini, Giulia Turrin, Elisabetta Tonet, Antonella Scala, Simone Patergnani, Mirko Pinotti, Claudio Trapella, Carlotta Giorgi, Elena Tremoli, Gianluca Campo, Giampaolo Morciano, Paolo Pinton

Summary: The molecular composition and activity modulation of the permeability transition pore (PTP) have been extensively studied due to their importance in ischemia reperfusion injury (IRI). The c subunit of ATP synthase (Csub) has been identified as one of the PTP-forming proteins and a target for cardioprotection. This study aims to identify equivalent residues in the human Csub sequence, validate their role in Oligomycin A-mediated PTP inhibition, and understand their relevance in the binding of 1,3,8-Triazaspiro[4.5]decane derivatives as potential inhibitors.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

Review Biochemistry & Molecular Biology

The Tricky Connection between Extracellular Vesicles and Mitochondria in Inflammatory-Related Diseases

Tommaso Di Mambro, Giulia Pellielo, Esther Densu Agyapong, Marianna Carinci, Diego Chianese, Carlotta Giorgi, Giampaolo Morciano, Simone Patergnani, Paolo Pinton, Alessandro Rimessi

Summary: Mitochondria are essential for energy production and play important roles in various cell processes. They communicate with other organelles and cells through the release of mtDAMPs and interact with extracellular vesicles (EVs). EVs have emerged as important mediators of inter-cellular communication and can transport mitochondria and mtDAMPs to modulate metabolic and inflammatory responses in recipient cells. Further research is needed to fully understand the mechanisms and therapeutic potential of the relationship between EVs and mitochondria in inflammation.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

Review Biochemistry & Molecular Biology

Comprehensive Analysis of Mitochondrial Dynamics Alterations in Heart Diseases

Giampaolo Morciano, Caterina Boncompagni, Daniela Ramaccini, Gaia Pedriali, Esmaa Bouhamida, Elena Tremoli, Carlotta Giorgi, Paolo Pinton

Summary: The most common alterations affecting mitochondria in cardiac pathological conditions include impairments of the electron transport chain activity, leading to a decrease in energy formation and ATP generation, as well as increased ROS generation and inflammation. These alterations contribute to the impairment of cardiac electrical characteristics, loss of myocyte contractility, and cardiomyocyte damage. The dysregulation of mitochondrial dynamics, which plays a role in maintaining mitochondrial fitness, is also observed in cardiac diseases. However, the translation and therapeutic applications of this knowledge are still in the early stages.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

Review Biochemistry & Molecular Biology

Evaluation of the Synovial Effects of Biological and Targeted Synthetic DMARDs in Patients with Psoriatic Arthritis: A Systematic Literature Review and Meta-Analysis

Maria Sofia Ciliento, Veronica Venturelli, Natale Schettini, Riccardo Bertola, Carlo Garaffoni, Giovanni Lanza, Roberta Gafa, Alessandro Borghi, Monica Corazza, Alen Zabotti, Sonia Missiroli, Caterina Boncompagni, Simone Patergnani, Mariasole Perrone, Carlotta Giorgi, Paolo Pinton, Marcello Govoni, Carlo Alberto Scire, Alessandra Bortoluzzi, Ettore Silvagni

Summary: The aim of this systematic literature review was to investigate the effects of b/tsDMARDs on the synovial membrane of PsA patients and identify biomarkers of response to therapy. A meta-analysis of 22 studies showed a significant reduction in CD3+ lymphocytes and CD68+ macrophages in synovial biopsies from patients treated with bDMARDs for 4-12 weeks. Reduction in CD3+ was correlated with clinical response. The most consistent finding in the literature was the reduction in CD3+/CD68+ sublining cells during the first 3 months of treatment with TNF inhibitors.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

Article Cell Biology

PERK recruits E-Syt1 at ER-mitochondria contacts for mitochondrial lipid transport and respiration

Maria Livia Sassano, Alexander R. R. van Vliet, Ellen Vervoort, Sofie Van Eygen, Chris van den Haute, Benjamin Pavie, Joris Roels, Johannes V. V. Swinnen, Marco Spinazzi, Leen Moens, Kristina Casteels, Isabelle Meyts, Paolo Pinton, Saverio Marchi, Leila Rochin, Francesca Giordano, Blanca Felipe-Abrio, Patrizia Agostinis

Summary: ER-mitochondria appositions play a critical role in the transfer of ions and phospholipids between these organelles and impact mitochondrial bioenergetics. However, the molecular mechanisms involved in this process are not well understood. This study reveals that PERK acts as an adaptor to recruit the lipid transfer protein E-Syt1 at ER-mitochondria contact sites, enabling lipid transport and maintaining mitochondrial homeostasis. These findings provide insights into the molecular components and functions of the lipid trafficking machinery at ER-mitochondria contact sites.

JOURNAL OF CELL BIOLOGY (2023)

Article Cell Biology

Ca2+signaling and cell death

Nada Dhaouadi, Veronica Angela Maria Vitto, Paolo Pinton, Lorenzo Galluzzi, Saverio Marchi

Summary: Multiple forms of regulated cell death (RCD) are associated with the activation of specific molecular mechanisms. Ca2+ ions can physically interact and regulate various components of the RCD machinery, leading to organellar dysfunction and increased sensitivity to cell death induced by other stressors.

CELL CALCIUM (2023)

Review Biochemistry & Molecular Biology

The Complex Relationship between Hypoxia Signaling, Mitochondrial Dysfunction and Inflammation in Calcific Aortic Valve Disease: Insights from the Molecular Mechanisms to Therapeutic Approaches

Esmaa Bouhamida, Giampaolo Morciano, Gaia Pedriali, Daniela Ramaccini, Elena Tremoli, Carlotta Giorgi, Paolo Pinton, Simone Patergnani

Summary: Calcific aortic valve stenosis (CAVS) is a common cause of cardiovascular mortality, and its complex pathomechanisms are still being investigated. There is currently no effective treatment for CAVS, with surgical and transcatheter valve replacement being the only options. Hypoxia, inflammation, and mitochondrial impairments play significant roles in the development of CAVS. This review aims to explore the interplay between hypoxia signaling pathways, mitochondrial dysfunction, and inflammation in CAVS pathogenesis, in order to better understand the molecular mechanisms and develop potential therapeutic approaches.

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2023)

暂无数据