A calmodulin-binding site on cyclin E mediates Ca2+-sensitive G1/S transitions in vascular smooth muscle cells

被引:48
作者
Choi, Jaehyun
Chiang, Andrew
Taulier, Nicolas
Gros, Robert
Pirani, Asif
Husain, Mansoor
机构
[1] Toronto Gen Hosp, Res Inst, Toronto, ON M5G 2C4, Canada
[2] Univ Toronto, Heart & Stroke Richard Lewar Ctr Excellence Cardi, Toronto, ON, Canada
[3] Univ Toronto, Fac Med, Toronto, ON, Canada
[4] Univ Toronto, Dept Med, Toronto, ON, Canada
[5] Univ Toronto, Dept Physiol, Toronto, ON, Canada
[6] Univ Toronto, Dept Lab Med & Pathol, Toronto, ON, Canada
[7] Univ Toronto, Dept Pharmaceut Sci, Leslie Dan Fac Pharm, Toronto, ON, Canada
[8] Univ Toronto, McLaughlin Ctr Mol Med, Toronto, ON, Canada
[9] Toronto Gen Hosp, Res Inst, Div Cell & Mol Biol, Toronto, ON, Canada
关键词
calcium; calmodulin; cell cycle; cell cycle progression; CDK2; cyclin E; vascular smooth muscle cells;
D O I
10.1161/01.RES.0000223059.19250.91
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Calcium transients are known to control several transition points in the eukaryotic cell cycle. For example, we have previously shown that a coordinate elevation in the intracellular free calcium ion concentration is required for G(1)-to S-phase cell cycle progression in vascular smooth muscle cells (VSMC). However, the molecular basis for this Ca2+ sensitivity was not known. Using buffers with differing [Ca2+], we found that the kinase activity of mouse and human cyclin E/CDK2, but not other G(1)/S-associated cell cycle complexes, was responsive to physiological changes in [Ca2+]. We next determined that this Ca2+-responsive kinase activity was dependent on a direct interaction between calmodulin (CaM), one of the major Ca2+-signal transducers of eukaryotic cells, and cyclin E. Pharmacological inhibition of CaM abrogated the Ca2+ sensitivity of cyclin E/CDK2 and retarded mouse VSMC proliferation by causing G(1) arrest. We next defined the presence of a highly conserved 22 amino acid N-terminal CaM-binding motif in mammalian cyclin E genes (dissociation constant, 1.5 +/- 0.1 mu mol/L) and showed its essential role in mediating Ca2+-sensitive kinase activity of cyclin E/CDK2. Mutant human cyclin E protein, lacking this CaM-binding motif, was incapable of binding CaM or responding to [Ca2+]. Taken together, these findings reveal CaM-dependent cyclin E/CDK2 activity as a mediator of the known Ca2+ sensitivity of the G(1)/S transition of VSMC.
引用
收藏
页码:1273 / 1281
页数:9
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