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首页> 外文期刊>The Journal of biological chemistry >Complexin 2 Modulates Vesicle-associated Membrane Protein (VAMP) 2-regulated Zymogen Granule Exocytosis in Pancreatic Acini
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Complexin 2 Modulates Vesicle-associated Membrane Protein (VAMP) 2-regulated Zymogen Granule Exocytosis in Pancreatic Acini

机译:复合素2在胰腺Acini中调节囊泡相关的膜蛋白(Vamp)2调节的Zymogen颗粒粒细胞症

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Complexins are soluble proteins that regulate the activity of soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complexes necessary for vesicle fusion. Neuronal specific complexin 1 has inhibitory and stimulatory effects on exocytosis by clamping trans-SNARE complexes in a prefusion state and promoting conformational changes to facilitate membrane fusion following cell stimulation. Complexins are unable to bind to monomeric SNARE proteins but bind with high affinity to ternary SNARE complexes and with lower affinity to target SNARE complexes. Far less is understood about complexin function outside the nervous system. Pancreatic acini express the complexin 2 isoform by RT-PCR and immunoblotting. Immunofluorescence microscopy revealed complexin 2 localized along the apical plasma membrane consistent with a role in secretion. Accordingly, complexin 2 was found to interact with vesicle-associated membrane protein (VAMP) 2, syntaxins 3 and 4, but not with VAMP 8 or syntaxin 2. Introduction of recombinant complexin 2 into permeabilized acini inhibited Ca2+-stimulated secretion in a concentration-dependent manner with a maximal inhibition of nearly 50%. Mutations of the central α-helical domain reduced complexin 2 SNARE binding and concurrently abolished its inhibitory activity. Surprisingly, mutation of arginine 59 to histidine within the central α-helical domain did not alter SNARE binding and moreover, augmented Ca2+-stimulated secretion by 130% of control. Consistent with biochemical studies, complexin 2 colocalized with VAMP 2 along the apical plasma membrane following cholecystokinin-8 stimulation. These data demonstrate a functional role for complexin 2 outside the nervous system and indicate that it participates in the Ca2+-sensitive regulatory pathway for zymogen granule exocytosis.
机译:复合物是可溶性蛋白质,其调节囊泡融合所需的可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(圈套)复合物的活性。神经元特异性综合体1通过夹紧旋转络合物在预熔点状态下具有抑制和刺激作用对外胞菌络合物并促进组合变化以促进细胞刺激后膜融合。复合物无法与单体圈套蛋白结合,但与三元蛇形复合物的高亲和力结合,并具有较低的对靶圈络合物的亲和力。关于神经系统外的复合素函数越来越少。胰腺Aciini通过RT-PCR和免疫印迹表达复合物2同种型。免疫荧光显微镜显示沿着分泌物局部局部局部化的复合素2,其分泌中的作用一致。因此,发现复合素2与囊泡相关的膜蛋白(Vamp)2,语法3和4相互作用,但不用vamp 8或Syntaxin 2。将重组复合物2引入透化性的Acini抑制Ca2 +浓度的浓度 - 依赖的方式具有近50%的最大抑制。中央α-螺旋结构域的突变降低了复合素2圈套结合,并同时消除其抑制活性。令人惊讶的是,精氨酸59对中央α-螺旋结构域内的组氨酸的突变并未改变圈套结合,而且通过130%的对照组增加Ca2 + + + +刺激的分泌。与生物化学研究一致,复合素2在胆囊蛋白-8刺激后沿着顶端血浆膜与凹凸膜分开。这些数据证明了神经系统外部复合物2的功能作用,并表明它参与了酶原颗粒卵尿的Ca2 + -Ssisive调节途径。

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