Signal transduction by GPI-anchored receptors in the nervous system

Lloyd Vaughan
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引用次数: 8

Abstract

A particularly intriguing role in communication within the nervous system is played by glycosyl phosphatidylinositol (GPI)-anchored glycoproteins. Although our understanding of how neuronal GPI-linked molecules transduce signals is still in its infancy, it is now possible to assemble a tentative model to describe their functioning. Shared features of these otherwise diverse receptors will be outlined, with particular emphasis given to the exclusively GPI-anchored contactin/F11 subgroup of the immunoglobulin superfamily. Contactin/F11 itself, with five extracellular ligands and an intracellular pathway involving Fyn, serves to illustrate the wide range of signalling possible through this group of receptors.

神经系统中gpi锚定受体的信号转导
糖基磷脂酰肌醇(GPI)锚定的糖蛋白在神经系统内的通讯中起着特别有趣的作用。虽然我们对神经元gpi连接分子如何传递信号的理解仍处于起步阶段,但现在有可能组装一个试探性模型来描述它们的功能。这些不同受体的共同特征将被概述,特别强调免疫球蛋白超家族中gpi锚定的接触蛋白/F11亚群。Contactin/F11本身具有5个细胞外配体和一个涉及Fyn的细胞内通路,有助于说明通过这组受体可能产生的广泛信号传导。
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