Xie Xiao-Li, Nie Xi, Wu Jun, Zhang Fan, Zhao Li-Li, Lin Yan-Ling, Yin Ya-Juan, Liu Hui, Shu Ya-Nan, Miao Sui-Bing, Li Huan, Chen Peng, Han Mei
Key Laboratory of Medical Biotechnology of Hebei Province, Key Laboratory of Neural and Vascular Biology of Ministry of Education, Department of Biochemistry and Molecular Biology, College of Basic Medicine, Hebei Medical University, No. 361 Zhongshan East Road, Shijiazhuang, 050017, People's Republic of China.
J Mol Med (Berl). 2015 May;93(5):547-58. doi: 10.1007/s00109-014-1240-4. Epub 2014 Dec 17.
Smooth muscle 22α (SM22α) is involved in stress fiber formation and enhances contractility in vascular smooth muscle cells (VSMCs). In many cases, SM22α acts as an adapter protein to assemble signaling complexes and regulate signaling, but whether SM22α regulates contractile signaling induced by angiotensin II (AngII) remains unclear. To address this issue, we established a hypertension model of Sm22α(-/-) mice, and demonstrated that hypertension induced by AngII was attenuated in Sm22α(-/-) mice. A decreased vasoconstriction was observed in aortic rings from Sm22α(-/-) mice. Furthermore, loss of SM22α resulted in a reduced contractile response to AngII in VSMCs in vitro. The phosphorylation of extracellular signal-regulated kinase 1/2 (ERK1/2) induced by AngII was impaired following depletion of SM22α, in parallel with a reduced contractility. The decay of ERK1/2 activity was associated with increased expression of mitogen-activated protein kinase phosphatase 3 (MKP3). Inhibition of MKP3 activity rescued ERK1/2 activity. SM22α depletion caused an enhanced interaction of MKP3 with ERK1/2, and a reduced ubiquitination and degradation of MKP3. Knockdown of SM22α extended the half-life of MKP3. In conclusion, SM22α promotes AngII-induced contraction by maintenance of ERK1/2 signaling cascades through facilitating ubiquitination and degradation of MKP3.
The vasoconstriction is attenuated in aortic rings from Sm22α(-/-) mice. MKP3 mediates dephosphorylation of ERK1/2 in AngII-induced VSMC contraction. SM22α inhibits the interaction of ERK1/2 with MKP3. SM22α promotes ubiquitination and degradation of MKP3. SM22α facilitates AngII-induced contraction by maintenance of ERK1/2 signaling.
平滑肌22α(SM22α)参与应力纤维形成并增强血管平滑肌细胞(VSMC)的收缩性。在许多情况下,SM22α作为衔接蛋白组装信号复合物并调节信号传导,但SM22α是否调节血管紧张素II(AngII)诱导的收缩信号仍不清楚。为解决此问题,我们建立了Sm22α基因敲除(-/-)小鼠的高血压模型,并证明AngII诱导的高血压在Sm22α(-/-)小鼠中减弱。在Sm22α(-/-)小鼠的主动脉环中观察到血管收缩减弱。此外,SM22α的缺失导致体外VSMC对AngII的收缩反应降低。SM22α缺失后,AngII诱导的细胞外信号调节激酶1/2(ERK1/2)磷酸化受损,同时收缩性降低。ERK1/2活性的衰减与丝裂原活化蛋白激酶磷酸酶3(MKP3)表达增加有关。抑制MKP3活性可挽救ERK1/2活性。SM22α缺失导致MKP3与ERK1/2的相互作用增强,MKP3的泛素化和降解减少。敲低SM22α延长了MKP3的半衰期。总之,SM22α通过促进MKP3的泛素化和降解维持ERK1/2信号级联反应,从而促进AngII诱导的收缩。
Sm22α(-/-)小鼠主动脉环中的血管收缩减弱。MKP3介导AngII诱导的VSMC收缩中ERK1/2的去磷酸化。SM22α抑制ERK1/2与MKP3的相互作用。SM22α促进MKP3的泛素化和降解。SM22α通过维持ERK1/2信号促进AngII诱导的收缩。