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神经分泌中的分子多样性:对下丘脑 - 神经垂体系统的思考

Molecular diversity in neurosecretion: reflections on the hypothalamo-neurohypophysial system.

作者信息

Gainer H, Chin H

机构信息

Laboratory of Neurochemistry, National Institute of Neurological Disorders and Stroke, NIH, Bethesda, Maryland 20892, USA.

出版信息

Cell Mol Neurobiol. 1998 Apr;18(2):211-30. doi: 10.1023/a:1022568904002.

Abstract
  1. The diversity of molecules involved in various aspects of neurosecretion, such as proprotein processing, axonal transport of large dense core vesicles (LDCVs), and regulated secretion, is discussed in the context of the hypothalamo-neurohypophysial system (HNS). 2. Recent studies have uncovered a family of at least seven processing enzymes known as proprotein convertases (PCs) which are involved in proteolytically cleaving protein precursors at paired basic amino acid motifs to yield biologically active peptides. Three of these, PC1(3), 2, and 5, are found in neurons and are involved in producing regulated secretory peptide products. 3. The axonal transport of LDCVs occurs on microtubule tracks by still unknown mechanisms. There are over 11 distinct kinesin-related molecules that have now been identified as possible microtubule motor candidates. 4. Calcium channels in the nervous system are known to be derived from at least five alpha-subunit and four beta-subunit genes with multiple alternatively spliced isoforms in each case. These could account, in part, for the varied calcium currents found in the HNS. 5. The large number of proteins and isoforms now demonstrated to be involved in regulated secretion are discussed, with a focus on LDCV compositions and the synaptotagmin gene family.
摘要
  1. 本文在下丘脑-神经垂体系统(HNS)的背景下,讨论了参与神经分泌各个方面的分子多样性,如前体蛋白加工、大致密核心囊泡(LDCV)的轴突运输以及调节性分泌。2. 最近的研究发现了一个至少由七种加工酶组成的家族,称为前体蛋白转化酶(PCs),它们参与在成对的碱性氨基酸基序处蛋白水解切割蛋白质前体,以产生生物活性肽。其中三种,PC1(3)、2和5,存在于神经元中,并参与产生调节性分泌肽产物。3. LDCV的轴突运输通过仍未知的机制在微管轨道上发生。现在已鉴定出超过11种不同的驱动蛋白相关分子,它们可能是微管运动的候选者。4. 已知神经系统中的钙通道至少源自五个α亚基和四个β亚基基因,每种基因都有多个可变剪接异构体。这些可能部分解释了在HNS中发现的各种钙电流。5. 本文讨论了目前已证明参与调节性分泌的大量蛋白质和异构体,重点是LDCV组成和突触结合蛋白基因家族。

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