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首页> 外文期刊>Theranostics >TMEM16A ameliorates vascular remodeling by suppressing autophagy via inhibiting Bcl-2-p62 complex formation
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TMEM16A ameliorates vascular remodeling by suppressing autophagy via inhibiting Bcl-2-p62 complex formation

机译:TMEM16A通过抑制BCl-2-P62复杂形成来改善血管重塑血管重塑

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摘要

Rationale: Transmembrane member 16A (TMEM16A) is a component of calcium-activated chloride channels that regulate vascular smooth muscle cell (SMC) proliferation and remodeling. Autophagy, a highly conserved cellular catabolic process in eukaryotes, exerts important physiological functions in vascular SMCs. In the current study, we investigated the relationship between TMEM16A and autophagy during vascular remodeling. Methods: We generated a transgenic mouse that overexpresses TMEM16A specifically in vascular SMCs to verify the role of TMEM16A in vascular remodeling. Techniques employed included immunofluorescence, electron microscopy, co-immunoprecipitation, and Western blotting. Results: Autophagy was activated in aortas from angiotensin II (AngII)-induced hypertensive mice with decreased TMEM16A expression. The numbers of light chain 3B (LC3B)-positive puncta in aortas correlated with the medial cross-sectional aorta areas and TMEM16A expression during hypertension. SMC-specific TMEM16A overexpression markedly inhibited AngII-induced autophagy in mouse aortas. Moreover, in mouse aortic SMCs (MASMCs), AngII-induced autophagosome formation and autophagic flux were blocked by TMEM16A upregulation and were promoted by TMEM16A knockdown. The effect of TMEM16A on autophagy was independent of the mTOR pathway, but was associated with reduced kinase activity of the vacuolar protein sorting 34 (VPS34) enzyme. Overexpression of VPS34 attenuated the effect of TMEM16A overexpression on MASMC proliferation, while the effect of TMEM16A downregulation was abrogated by a VPS34 inhibitor. Further, co-immunoprecipitation assays revealed that TMEM16A interacts with p62. TMEM16A overexpression inhibited AngII-induced p62-Bcl-2 binding and enhanced Bcl-2-Beclin-1 interactions, leading to suppression of Beclin-1/VPS34 complex formation. However, TMEM16A downregulation showed the opposite effects. Conclusion: TMEM16A regulates the four-way interaction between p62, Bcl-2, Beclin-1, and VPS34, and coordinately prevents vascular autophagy and remodeling.? The author(s).
机译:理由:跨膜构件16a(tmem16a)是调节血管平滑肌细胞(SMC)增殖和重塑的钙激活氯化物通道的组分。自噬是真核生物中高度保守的细胞分解代谢过程,在血管中发挥重要的生理功能。在目前的研究中,我们研究了血管重塑期间TMEM16A和自噬之间的关系。方法:我们生成了特异性地在血管SMC中过表达TMEM16A的转基因小鼠,以验证TMEM16A在血管重塑中的作用。所用技术包括免疫荧光,电子显微镜,共免疫沉淀和蛋白质印迹。结果:从血管紧张素II(Angii)诱导高血压小鼠的主动脉中激活自噬,降低TMEM16a表达。主动脉中的轻链3b(Lc3b) - 阳性斑点的数量与高血压期间的内侧横截面主动脉区域和TMEM16a表达相关。 SMC特异性TMEM16A过表达明显抑制了小鼠主动脉中的血管诱导的自噬。此外,在小鼠主动脉SMC(MASMC)中,通过TMEM16A上限阻断了Angii诱导的自噬体形成和自噬助焊剂,并通过TMEM16A敲低促进。 TMEM16a对自噬的影响与MTOR途径无关,但与液泡蛋白分选34(VPS34)酶的激酶活性降低。 VPS34的过度表达抑制了TMEM16A过表达对MASMC增殖的影响,而VPS34抑制剂废除了TMEM16A下调的效果。此外,共免疫沉淀测定显示TMEM16a与p62相互作用。 TMEM16A过表达抑制血管诱导的P62-BCL-2结合和增强的BCL-2-BECIN-1相互作用,导致BECLIN-1 / VPS34复合物形成。然而,TMEM16A下调显示出相反的效果。结论:TMEM16A调节P62,BCL-2,BECLIN-1和VPS34之间的四向相互作用,并且协调妨碍血管自噬和重塑。作者。

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