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首页> 外文期刊>Peptides: An International Journal >Caveolae-dependent internalization and homologous desensitization of VIP/PACAP receptor, VPAC2, in gastrointestinal smooth muscle
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Caveolae-dependent internalization and homologous desensitization of VIP/PACAP receptor, VPAC2, in gastrointestinal smooth muscle

机译:胃肠道平滑肌中VIP / PACAP受体VPAC2的小窝依赖性内化作用和同源脱敏作用

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The main membrane proteins of caveolae (caveolin-1, -2 and -3) oligomerize within lipid rich domains to form regular invaginations of smooth muscle plasma membrane and participate in receptor internalization and desensitization independent of clathrin-coated vesicle endocytosis. We have previously shown that Gs-coupled VIP/PACAP receptors, VPAC2, predominantly expressed in smooth muscle cells of the gut, are exclusively phosphorylated by GRK2 leading to receptor internalization and desensitization. Herein, we characterized the role of caveolin-1 in VPAC2 receptor internalization and desensitization in gastric smooth muscle using three approaches: (i) methyl β-cyclodextrin (MβCD) to deplete cholesterol and disrupt caveolae in dispersed muscle cells, (ii) caveolin-1 siRNA to suppress caveolin-1 expression in cultured muscle cells, and (iii) caveolin-1 knockout mice (caveolin-1-/-). Pretreatment of gastric muscle cells with VIP stimulated tyrosine phosphorylation of caveolin-1, and induced VPAC2 receptor internalization (measured as decrease in 125I-VIP binding after pretreatment) and desensitization (measured as decrease in VIP-induced cAMP formation after pretreatment). Caveolin-1 phosphorylation, and VPAC2 receptor internalization and desensitization were blocked by disruption of caveolae with MβCD, suppression of caveolin-1 with caveolin-1 siRNA or inhibition of Src kinase activity by PP2. Pretreatment with VIP significantly inhibited adenylyl cyclase activity and muscle relaxation in response to subsequent addition of VIP in freshly dispersed muscle cells and in muscle strips isolated from wild type and caveolin-1-/- mice; however, the inhibition was significantly attenuated in caveolin-1-/- mice. These results suggest that caveolin-1 plays an important role in VPAC2 receptor internalization and desensitization.
机译:小窝的主要膜蛋白(caveolin-1,-2和-3)在富含脂质的域内寡聚,形成规则的平滑肌质膜侵入,并参与受体内在化和脱敏,独立于网格蛋白包被的囊泡内吞作用。先前我们已经表明,主要在肠道平滑肌细胞中表达的Gs偶联VIP / PACAP受体VPAC2仅被GRK2磷酸化,导致受体内化和脱敏。在这里,我们使用三种方法表征了小窝蛋白1在胃平滑肌VPAC2受体内在化和脱敏中的作用:(i)甲基β-环糊精(MβCD)消耗胆固醇并破坏分散的肌肉细胞中的小窝,(ii)小窝蛋白- 1个siRNA抑制培养的肌肉细胞中小窝蛋白1的表达,以及(iii)小窝蛋白1敲除小鼠(caveolin-1-/-)。用VIP预处理胃肌细胞可刺激小窝蛋白1的酪氨酸磷酸化,并诱导VPAC2受体内在化(以预处理后125 I-VIP结合减少)和脱敏(以VIP诱导后cAMP形成减少)测量。通过用MβCD破坏小窝,用Caveolin-1 siRNA抑制Caveolin-1或通过PP2抑制Src激酶活性,可阻断小窝蛋白1的磷酸化以及VPAC2受体的内在化和脱敏。用VIP预处理可显着抑制腺苷酸环化酶活性和肌肉松弛,这是由于随后在刚分散的肌肉细胞和从野生型和Caveolin-1-/-小鼠分离的肌肉条中添加VIP引起的。然而,该抑制作用在caveolin-1-/-小鼠中显着减弱。这些结果表明小窝蛋白-1在VPAC2受体内在化和脱敏中起重要作用。

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