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SNAP-25 Puts SNAREs at Center Stage in Metabolic Disease

机译:Snap-25在代谢疾病中放入中心阶段的陷阱

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摘要

Synaptosomal Associated Protein of 25 kD (SNAP-25) is an essential protein contributing 2 out of 4 alpha-helices in the formation of the core soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complex which mediates regulated membrane fusion. Regulated exocytosis is a strictly controlled event in eukaryotic cells mediating important homeostatic processes and cellular communications. Altered release of neurotransmitters or hormones is usually considered as part of the progressing pathophysiology of central neurological or peripheral metabolic disorders. However, the molecular changes which precede and initiate disturbed secretion of neurotransmitters and hormones are still unclear. We have explored an alternative hypothesis; that a minor modification in the machinery mediating regulated exocytosis, instead, may underlie the origin of the diseases associated with altered secretion of neurotransmitters and hormones. Possibly, certain modifications to genes encoding for SNAREs or proteins affecting SNARE function may increase the susceptibility to develop disease and its progression can be accelerated when combined with aging and life style factors. To test this theory, we genetically manipulated the Snap25 gene to express only one of the two alternatively spliced isoforms, SNAP-25a. SNAP-25b-deficient mice demonstrated alterations in synaptic transmission and increased insulin secretion which, with time, spontaneously progressed into a pronounced metabolic disease, including defects in glucose homeostasis, obesity, liver steatosis and perturbations in central homeostatic signaling. Thus, deregulated function of SNAP-25 and possibly other SNAREs or SNARE-interacting proteins, can, by itself, act as risk factors for the development of metabolic disease. Here, we provide an overview of the peripheral and central consequences of the deregulations in core SNARE complex with focus on SNAP-25.
机译:突触体相关蛋白为25kd(SNAP-25)是在形成核心可溶性的N-乙基马来酰亚胺敏感因子附着蛋白受体(圈套)复合物中的4个α-螺旋中的必要蛋白质,其介导介导膜融合。受管制的外尿精是一种严格控制的真核细胞在介导重要的稳态过程和蜂窝通信中的真核细胞。神经递质或激素的改变释放通常被认为是中枢神经或外周代谢障碍进展病理生理学的一部分。然而,在神经递质和激素的扰乱分泌和发起的分子变化仍然不清楚。我们探索了替代假设;在调解规定的外毒性的机器中进行了微小的修改,可以利于与神经递质和激素改变相关的疾病的起源。可能的是,对影响圈套功能的捕获或蛋白质的基因的某些修饰可能会增加发育疾病的易感性,并且在与老化和生活方式因素结合时可以加速其进展。为了测试这种理论,我们遗传地操纵Snap25基因,仅表达两个可变的同种型中的一个,卡扣25A。 Snap-25B缺陷小鼠在突触传播和增加的胰岛素分泌中显示出改变,随着时间的推移,随着时间的推移,将其自发地进入明显的代谢疾病,包括葡萄糖稳态,肥胖,肝脏脂肪变性和中枢性稳态信号中的扰动的缺陷。因此,SNAP-25的潜眠功能和可能的其他狭窄或圈套相互作用的蛋白质可以本身可以作为制定代谢疾病的危险因素。在这里,我们概述了核心圈套复合体中放定管腔的外围和核心后果,重点在Snap-25上。

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