4.6 Article

SPAK mediates KCC3-enhanced cervical cancer tumorigenesis

Journal

FEBS JOURNAL
Volume 281, Issue 10, Pages 2353-2365

Publisher

WILEY-BLACKWELL
DOI: 10.1111/febs.12787

Keywords

KCC3; matrix metalloproteinase; NF-B; Ste20-related proline; alanine-rich kinase; tumor aggressiveness

Funding

  1. program entitle 'To Establish Centers of Excellence for Cancer Research in Taiwan' [DOH102-TD-C-111-003]
  2. Department of Health, Executive Yuan, Taiwan
  3. National Science Council [NRPB MOHW102-TD-PB-111-NSC109, NSC 102-2325-B-006-020]
  4. Headquarters of University Advancement at the National Cheng Kung University by the Ministry of Education, Taiwan

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Ste20-related proline/alanine-rich kinase (SPAK) plays a role in regulating many biological activities, and interacts with K-Cl co-transporter3 (KCC3); however, the importance of SPAK for KCC3 function has not been demonstrated. Here, we investigated the role of SPAK in KCC3-regulated cell invasiveness and tumor formation. We show that induction of KCC3 expression triggers activation of the NF-B and SPAK signaling cascades, leading to activation of p38 mitogen-activated protein kinase (MAPK) and matrix metalloproteinase-2 (MMP2). A small interference RNA-mediated reduction in SPAK protein levels suppressed the invasive ability and oncogenic potential of cervical cancer cells, and decreased tumor formation in mouse xenografts. A combination of experimental approaches, including RT-PCR and real-time RT-PCR, gelatin zymography, NF-B luciferase activity and chromatin immunoprecipitation assays, showed that the induction of KCC3 over-expression increased MMP2 expression and augmented binding of NF-B to its putative SPAK promoter binding site, suggesting that the SPAK/MMP2 axis is up-regulated by NF-B. Pharmacological inhibition of NF-B or MMP2 abrogated KCC3-triggered, SPAK-dependent cell invasiveness. Furthermore, p38 MAPK was identified as the upstream regulator of KCC3-dependent MMP2 activation. We conclude that SPAK may promote KCC3-mediated tumor aggressiveness via the NF-B/p38 MAPK/MMP2 axis. Structured digital abstract with by ()

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