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视网膜内层神经元中钙传感器神经钙蛋白δ的结构、生化及功能特性及其与视杆外段膜鸟苷酸环化酶转导系统的联系。

Structural, biochemical, and functional characterization of the calcium sensor neurocalcin delta in the inner retinal neurons and its linkage with the rod outer segment membrane guanylate cyclase transduction system.

作者信息

Krishnan Anuradha, Venkataraman Venkateswar, Fik-Rymarkiewicz Ewa, Duda Teresa, Sharma Rameshwar K

机构信息

The Unit of Regulatory and Molecular Biology, Department of Cell Biology, SOM and NJMS, University of Medicine and Dentistry of New Jersey, Stratford, New Jersey 08084, USA.

出版信息

Biochemistry. 2004 Mar 16;43(10):2708-23. doi: 10.1021/bi035631v.

Abstract

This study documents the detailed biochemical, structural, and functional identity of a novel Ca(2+)-modulated membrane guanylate cyclase transduction system in the inner retinal neurons. The guanylate cyclase is the previously characterized ROS-GC1 from the photoreceptor outer segments (PROS), and its new modulator is neurocalcin delta. At the membrane, the myristoylated form of neurocalcin delta senses submicromolar increments in free Ca(2+), binds to its specific ROS-GC1 domain, and stimulates the cyclase. Neurocalcin delta is not present in PROS, indicating the absence of the pathway in the outer segments and the dissociation of its linkage with phototransduction. Thus, the pathway is linked specifically with the visual transduction machinery in the secondary neurons of the retina. With the inclusion of this pathway, the findings broaden the understanding of the existing mechanisms showing how ROS-GC1 is able to receive and transduce diverse Ca(2+) signals into the cell-specific generation of second-messenger cyclic GMP in the retinal neurons.

摘要

本研究记录了视网膜内层神经元中一种新型钙(Ca²⁺)调节的膜鸟苷酸环化酶转导系统的详细生化、结构和功能特性。该鸟苷酸环化酶是先前在光感受器外段(PROS)中鉴定出的ROS-GC1,其新的调节因子是神经钙蛋白δ。在细胞膜上,肉豆蔻酰化形式的神经钙蛋白δ可感知游离Ca²⁺亚微摩尔级别的增加,与特定的ROS-GC1结构域结合,并刺激环化酶。神经钙蛋白δ不存在于PROS中,这表明在外段不存在该信号通路,且其与光转导的联系已解离。因此,该信号通路与视网膜二级神经元中的视觉转导机制特异性相关。随着这一信号通路的加入,这些发现拓宽了对现有机制的理解,展示了ROS-GC1如何能够接收并将不同的Ca²⁺信号转导为视网膜神经元中细胞特异性生成的第二信使环磷酸鸟苷(cGMP)。

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