4.8 Article

Plk1 regulates contraction of postmitotic smooth muscle cells and is required for vascular homeostasis

期刊

NATURE MEDICINE
卷 23, 期 8, 页码 964-+

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/nm.4364

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资金

  1. Marie Curie activities of the European Commission (Oncotrain program)
  2. Spanish Ministry of Economy and Competitiveness (MINECO)
  3. CENIT AMIT Project Advanced Molecular Imaging Technologies [TEC2008-06715-C02-1, RD07/0014/2009]
  4. Red de investigacion Cardiovascular (RIC)
  5. FEDER [RD12/004240022, RD12/0042/0056]
  6. Fundacio La Marato TV3 [20151331]
  7. Castilla-Leon Autonomous Government [BIO/SA01/15, CS049U16]
  8. Solorzano Foundation
  9. Ramon Areces Foundation
  10. MINECO [RD12/0036/0002, SAF2015-64556-R, SAF2015-63633-R, SAF2015-69920-R, SEV-2015-0510, SEV-2015-0505]
  11. Consolider-Ingenio 2010 Programme [SAF2014-57791-REDC]
  12. Red Tematica CellSYS [BFU2014-52125-REDT]
  13. Comunidad de Madrid (OncoCycle Programme) [S2010/BMD-2470]
  14. Worldwide Cancer Research [14-1248, 15-0278]
  15. MitoSys project (European Union) [HEALTH-F5-2010-241548]
  16. Pro-CNIC Foundation

向作者/读者索取更多资源

Polo-like kinase 1 (PLK1), an essential regulator of cell division, is currently undergoing clinical evaluation as a target for cancer therapy. We report an unexpected function of Plk1 in sustaining cardiovascular homeostasis. Plk1 haploinsufficiency in mice did not induce obvious cell proliferation defects but did result in arterial structural alterations, which frequently led to aortic rupture and death. Specific ablation of Plk1 in vascular smooth muscle cells (VSMCs) led to reduced arterial elasticity, hypotension, and an impaired arterial response to angiotensin II in vivo. Mechanistically, we found that Plk1 regulated angiotensin II-dependent activation of RhoA and actomyosin dynamics in VSMCs in a mitosis-independent manner. This regulation depended on Plk1 kinase activity, and the administration of small-molecule Plk1 inhibitors to angiotensin II-treated mice led to reduced arterial fitness and an elevated risk of aneurysm and aortic rupture. We thus conclude that a partial reduction of Plk1 activity that does not block cell division can nevertheless impair aortic homeostasis. Our findings have potentially important implications for current approaches aimed at PLK1 inhibition for cancer therapy.

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