Suppr超能文献

Sentryn 和 SAD 激酶在致密核心囊泡的靶向运输和捕获中起连接作用。

Sentryn and SAD Kinase Link the Guided Transport and Capture of Dense Core Vesicles in .

机构信息

Genetic Models of Disease Laboratory, Oklahoma Medical Research Foundation, Oklahoma 73104.

Department of Biological Sciences, University of Illinois at Chicago, Illinois 60607.

出版信息

Genetics. 2018 Nov;210(3):925-946. doi: 10.1534/genetics.118.300847.

Abstract

Dense core vesicles (DCVs) can transmit signals by releasing neuropeptides from specialized synaptic regions called active zones. DCVs reach the active zone by motorized transport through a long axon. A reverse motor frequently interrupts progress by taking DCVs in the opposite direction. "Guided transport" refers to the mechanism by which outward movements ultimately dominate to bring DCVs to the synaptic region. After guided transport, DCVs alter their interactions with motors and enter a "captured" state. The mechanisms of guided transport and capture of DCVs are unknown. Here, we discovered two proteins that contribute to both processes in SAD kinase and a novel conserved protein we named Sentryn are the first proteins found to promote DCV capture. By imaging DCVs moving in various regions of single identified neurons in living animals, we found that DCV guided transport and capture are linked through SAD kinase, Sentryn, and Liprin-α. These proteins act together to regulate DCV motorized transport in a region-specific manner. Between the cell body and the synaptic region, they promote forward transport. In the synaptic region, where all three proteins are highly enriched at active zones, they promote DCV pausing by inhibiting transport in both directions. These three proteins appear to be part of a special subset of active zone-enriched proteins because other active zone proteins do not share their unique functions.

摘要

致密核心囊泡 (DCV) 可以通过从称为活性区的专门突触区域释放神经肽来传递信号。DCV 通过长轴突的动力运输到达活性区。反向马达经常通过将 DCV 带向相反方向来中断进展。“导向运输”是指外向运动最终占主导地位将 DCV 带到突触区域的机制。在导向运输之后,DCV 改变它们与马达的相互作用并进入“捕获”状态。DCV 的导向运输和捕获的机制尚不清楚。在这里,我们在 SAD 激酶和一种新的保守蛋白 Sentryn 中发现了两种有助于这两个过程的蛋白,这两种蛋白是第一个被发现促进 DCV 捕获的蛋白。通过在活体动物中对单个鉴定神经元的各个区域中移动的 DCV 进行成像,我们发现 DCV 的导向运输和捕获通过 SAD 激酶、Sentryn 和 Liprin-α 联系在一起。这些蛋白共同作用,以区域特异性的方式调节 DCV 的动力运输。在细胞体和突触区域之间,它们促进正向运输。在富含这三种蛋白的突触区域,它们通过抑制两个方向的运输来促进 DCV 暂停。这三种蛋白似乎是富含活性区的特殊蛋白亚群的一部分,因为其他活性区蛋白不具有它们独特的功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验