The cyclic nucleotide–binding homology domain of the integral membrane protein CNNM mediates dimerization and is required for Mg2+ efflux activity
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Title
The cyclic nucleotide–binding homology domain of the integral membrane protein CNNM mediates dimerization and is required for Mg2+ efflux activity
Authors
Keywords
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Journal
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 293, Issue 52, Pages 19998-20007
Publisher
American Society for Biochemistry & Molecular Biology (ASBMB)
Online
2018-10-22
DOI
10.1074/jbc.ra118.005672
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Note: Only part of the references are listed.- CrossTalk proposal: CNNM proteins are Na+ /Mg2+ exchangers playing a central role in transepithelial Mg2+ (re)absorption
- (2018) Yosuke Funato et al. JOURNAL OF PHYSIOLOGY-LONDON
- CrossTalk opposing view: CNNM proteins are not Na+ /Mg2+ exchangers but Mg2+ transport regulators playing a central role in transepithelial Mg2+ (re)absorption
- (2018) Francisco J. Arjona et al. JOURNAL OF PHYSIOLOGY-LONDON
- Structural insights into the mechanisms of CNBD channel function
- (2017) Zachary M. James et al. JOURNAL OF GENERAL PHYSIOLOGY
- PRL3 phosphatase active site is required for binding the putative magnesium transporter CNNM3
- (2017) Huizhi Zhang et al. Scientific Reports
- Phosphocysteine in the PRL‐CNNM pathway mediates magnesium homeostasis
- (2016) Irina Gulerez et al. EMBO REPORTS
- Structural Basis of the Oncogenic Interaction of Phosphatase PRL-1 with the Magnesium Transporter CNNM2
- (2016) Paula Giménez-Mascarell et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- A new familial case of Jalili syndrome caused by a novel mutation in CNNM4
- (2016) Vehap Topçu et al. OPHTHALMIC GENETICS
- Structure of theLegionellaEffector, lpg1496, Suggests a Role in Nucleotide Metabolism
- (2015) Kathy Wong et al. JOURNAL OF BIOLOGICAL CHEMISTRY
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- Structure of the SthK Carboxy-Terminal Region Reveals a Gating Mechanism for Cyclic Nucleotide-Modulated Ion Channels
- (2015) Divya Kesters et al. PLoS One
- Nucleotide binding triggers a conformational change of the CBS module of the magnesium transporter CNNM2 from a twisted towards a flat structure
- (2014) María Ángeles Corral-Rodríguez et al. BIOCHEMICAL JOURNAL
- Mg2+-dependent Interactions of ATP with the Cystathionine-β-Synthase (CBS) Domains of a Magnesium Transporter
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- Membrane protein CNNM4–dependent Mg2+ efflux suppresses tumor progression
- (2014) Yosuke Funato et al. JOURNAL OF CLINICAL INVESTIGATION
- Determinants of ligand selectivity in a cyclic nucleotide–regulated potassium channel
- (2014) João Pessoa et al. JOURNAL OF GENERAL PHYSIOLOGY
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- (2014) S Hardy et al. ONCOGENE
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- (2013) Yoni Haitin et al. NATURE
- Basolateral Mg2+ Extrusion via CNNM4 Mediates Transcellular Mg2+ Transport across Epithelia: A Mouse Model
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- Towards automated crystallographic structure refinement withphenix.refine
- (2012) Pavel V. Afonine et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
- Membrane Topology and Intracellular Processing of Cyclin M2 (CNNM2)
- (2012) Jeroen H. F. de Baaij et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Structure of the carboxy-terminal region of a KCNH channel
- (2012) Tinatin I. Brelidze et al. NATURE
- REFMAC5 for the refinement of macromolecular crystal structures
- (2011) Garib N. Murshudov et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
- CNNM2, Encoding a Basolateral Protein Required for Renal Mg2+ Handling, Is Mutated in Dominant Hypomagnesemia
- (2011) Marchel Stuiver et al. AMERICAN JOURNAL OF HUMAN GENETICS
- Second messenger role for Mg2+ revealed by human T-cell immunodeficiency
- (2011) Feng-Yen Li et al. NATURE
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- PHENIX: a comprehensive Python-based system for macromolecular structure solution
- (2010) Paul D. Adams et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
- Developments in the US-SOMO Bead Modeling Suite: New Features in the Direct Residue-to-Bead Method, Improved Grid Routines, and Influence of Accessible Surface Area Screening
- (2010) Emre Brookes et al. MACROMOLECULAR BIOSCIENCE
- Dali server: conservation mapping in 3D
- (2010) Liisa Holm et al. NUCLEIC ACIDS RESEARCH
- Mutations in CNNM4 Cause Recessive Cone-Rod Dystrophy with Amelogenesis Imperfecta
- (2009) Bozena Polok et al. AMERICAN JOURNAL OF HUMAN GENETICS
- Mutations in CNNM4 Cause Jalili Syndrome, Consisting of Autosomal-Recessive Cone-Rod Dystrophy and Amelogenesis Imperfecta
- (2009) David A. Parry et al. AMERICAN JOURNAL OF HUMAN GENETICS
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