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粗糙果蝇是哺乳动物 Neurobeachin 的功能同源物,影响突触结构、大脑形态和联想学习。

Drosophila rugose is a functional homolog of mammalian Neurobeachin and affects synaptic architecture, brain morphology, and associative learning.

机构信息

Department of Human Genetics, KU Leuven, B-3000 Leuven, Belgium.

出版信息

J Neurosci. 2012 Oct 24;32(43):15193-204. doi: 10.1523/JNEUROSCI.6424-11.2012.

DOI:10.1523/JNEUROSCI.6424-11.2012
PMID:23100440
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6704825/
Abstract

Neurobeachin (Nbea) is implicated in vesicle trafficking in the regulatory secretory pathway, but details on its molecular function are currently unknown. We have used Drosophila melanogaster mutants for rugose (rg), the Drosophila homolog of Nbea, to further elucidate the function of this multidomain protein. Rg is expressed in a granular pattern reminiscent of the Golgi network in neuronal cell bodies and colocalizes with transgenic Nbea, suggesting a function in secretory regulation. In contrast to Nbea(-/-) mice, rg null mutants are viable and fertile and exhibit aberrant associative odor learning, changes in gross brain morphology, and synaptic architecture as determined at the larval neuromuscular junction. At the same time, basal synaptic transmission is essentially unaffected, suggesting that structural and functional aspects are separable. Rg phenotypes can be rescued by a Drosophila rg+ transgene, whereas a mouse Nbea transgene rescues aversive odor learning and synaptic architecture; it fails to rescue brain morphology and appetitive odor learning. This dissociation between the functional redundancy of either the mouse or the fly transgene suggests that their complex composition of numerous functional and highly conserved domains support independent functions. We propose that the detailed compendium of phenotypes exhibited by the Drosophila rg null mutant provided here will serve as a test bed for dissecting the different functional domains of BEACH (for beige and human Chediak-Higashi syndrome) proteins, such as Rugose, mouse Nbea, or Nbea orthologs in other species, such as human.

摘要

神经海滩蛋白(Nbea)参与调节性分泌途径中的囊泡转运,但目前其分子功能的细节尚不清楚。我们利用果蝇粗糙突变体(rg),即 Nbea 的果蝇同源物,进一步阐明了这种多功能蛋白的功能。rg 在神经元胞体中的颗粒状模式表达,类似于高尔基网络,与转 Nbea 共定位,表明其在分泌调节中具有功能。与 Nbea(-/-) 小鼠不同,rg 缺失突变体是有活力和有生育能力的,并且表现出异常的联想气味学习、大脑形态学的变化和突触结构,如在幼虫神经肌肉连接处所确定的。同时,基础突触传递基本上不受影响,表明结构和功能方面是可分离的。果蝇 rg+ 转基因可以拯救 rg 表型,而小鼠 Nbea 转基因可以拯救厌恶气味学习和突触结构;它不能拯救大脑形态和食欲气味学习。这种小鼠或果蝇转基因之间功能冗余的分离表明,它们由许多功能和高度保守的结构域组成的复杂成分支持独立的功能。我们提出,这里提供的果蝇 rg 缺失突变体表现出的详细表型综合将作为一个试验台,用于剖析 BEACH(用于 beige 和人类 Chediak-Higashi 综合征)蛋白的不同功能结构域,如粗糙、小鼠 Nbea 或其他物种的 Nbea 同源物,如人类。

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Dendritic spine formation and synaptic function require neurobeachin.树突棘形成和突触功能需要神经海滩蛋白。
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The trafficking proteins Vacuolar Protein Sorting 35 and Neurobeachin interact with the glycine receptor β-subunit.液泡蛋白分选 35 和神经沙滩蛋白与甘氨酸受体β亚基相互作用。
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The autism candidate gene Neurobeachin encodes a scaffolding protein implicated in membrane trafficking and signaling.神经海滩蛋白基因是自闭症候选基因,编码一种支架蛋白,该蛋白与膜运输和信号转导有关。
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