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Dscam and DSCAM: complex genes in simple animals, complex animals yet simple genes.

机译:Dscam和DSCAM:简单动物中的复杂基因,复杂动物中的简单基因。

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Cadherins and the immunoglobulin (Ig) proteins give rise to a multitude of surface receptors, which function as diverse cell adhesion molecules (CAMs) or signal-transducing receptors. These functions are often interdependent, and rely on a high degree of specificity in homophilic binding as well as heterophilic interactions. The Drosophila receptor Dscam is an exceptional example of homophilic binding specificity involved in a number of important biological processes, such as neural wiring and innate immunity. Combinatorial use of alternatively spliced Ig-domains enables the generation of an estimated 18,000 isoform-specific homophilic receptor pairs. Although isoform diversity of Dscam is unique to arthropods, recent genetic analysis of vertebrate DSCAM (Down Syndrome Cell Adhesion Molecule) genes has revealed an intriguing conservation of molecular functions underlying neural wiring. This review covers the multiple functions of Dscam across different species highlighting its remarkable versatility aswell as its conserved basic functions in neural development. We discuss how an unprecedented expansion of complex alternative splicing has been uniquely employed by arthropods to generate diverse surface receptors, important for cell-cell communication, molecular self-recognition in neurons, and innate immune defenses. We end with a speculative hypothesis reconciling the striking differences in Dscam and DSCAM gene structures with their conserved functions in molecular recognition underlying neural circuit formation.
机译:钙黏着蛋白和免疫球蛋白(Ig)蛋白产生多种表面受体,这些表面受体起着多种细胞粘附分子(CAM)或信号传导受体的作用。这些功能通常是相互依赖的,并且在同质结合以及异源相互作用中依赖于高度的特异性。果蝇受体Dscam是许多重要生物学过程(如神经系统连接和先天免疫)中涉及的同型结合特异性的一个例外实例。交替使用剪接的Ig结构域的组合使用可以生成估计的18,000个同工型特异性同源受体对。尽管Dscam的同工型多样性是节肢动物所独有的,但最近对脊椎动物DSCAM(唐氏综合症细胞粘附分子)基因的遗传分析显示,神经连接背后的分子功能十分有趣。这篇综述涵盖了Dscam在不同物种中的多种功能,强调了其出色的多功能性以及在神经发育中保守的基本功能。我们讨论节肢动物如何独特地利用空前复杂的可变剪接扩展来产生各种表面受体,这些受体对于细胞间通讯,神经元中的分子自我识别以及固有的免疫防御至关重要。我们以一个推测性的假设结尾,该假设调和了Dscam和DSCAM基因结构的显着差异及其在神经回路形成的分子识别中的保守功能。

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