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NCLX型钠钙交换体NCX-9是[此处信息缺失]神经回路模式形成所必需的。

The NCLX-type Na/Ca Exchanger NCX-9 Is Required for Patterning of Neural Circuits in .

作者信息

Sharma Vishal, Roy Soumitra, Sekler Israel, O'Halloran Damien M

机构信息

From the Department of Biological Sciences and.

the Institute for Neuroscience, George Washington University, Washington, D. C. 20052 and.

出版信息

J Biol Chem. 2017 Mar 31;292(13):5364-5377. doi: 10.1074/jbc.M116.758953. Epub 2017 Feb 14.

Abstract

NCLX is a Na/Ca exchanger that uses energy stored in the transmembrane sodium gradient to facilitate the exchange of sodium ions for ionic calcium. Mammals have a single NCLX, which has been shown to function primarily at the mitochondrion and is an important regulator of neuronal physiology by contributing to neurotransmission and synaptic plasticity. The role of NCLX in developmental cell patterning ( in neural circuits) is largely unknown. Here we describe a novel role for the NCLX-type protein, NCX-9, in neural circuit formation. NCX-9 functions in hypodermal seam cells that secrete the axon guidance cue UNC-129/BMP, and our data revealed that mutant animals exhibit development defects in stereotyped left/right axon guidance choices within the GABAergic motor neuron circuit. Our data also implicate NCX-9 in a LON-2/heparan sulfate and UNC-6/netrin-mediated, RAC-dependent signaling pathway to guide left/right patterning within this circuit. Finally, we also provide physiology data supporting the role for NCX-9 in handling calcium exchange at the mitochondrion. Taken together, our work reveals the specificity by which the handling by NCLX of calcium exchange can map to neural circuit patterning and axon guidance decisions during development.

摘要

NCLX是一种钠钙交换体,它利用跨膜钠梯度中储存的能量来促进钠离子与钙离子的交换。哺乳动物有单一的NCLX,已证明其主要在线粒体中发挥作用,并且通过促进神经传递和突触可塑性,是神经元生理学的重要调节因子。NCLX在发育性细胞模式形成(在神经回路中)中的作用很大程度上未知。在这里,我们描述了NCLX型蛋白NCX-9在神经回路形成中的新作用。NCX-9在分泌轴突导向信号分子UNC-129/BMP的皮下缝细胞中发挥作用,我们的数据显示突变动物在GABA能运动神经元回路中典型的左右轴突导向选择上表现出发育缺陷。我们的数据还表明,NCX-9参与了LON-2/硫酸乙酰肝素和UNC-6/网蛋白介导的、RAC依赖的信号通路,以指导该回路中的左右模式形成。最后,我们还提供了生理学数据,支持NCX-9在线粒体处理钙交换中的作用。综上所述,我们的工作揭示了NCLX处理钙交换的特异性如何与发育过程中的神经回路模式形成和轴突导向决策相关联。

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