Institute of Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang (ZJ), People's Republic of China.
Cell Mol Life Sci. 2019 Feb;76(4):667-680. doi: 10.1007/s00018-018-2951-4. Epub 2018 Oct 20.
The complexity of neuronal wiring relies on the extraordinary recognition diversity of cell surface molecules. Drosophila Dscam1 and vertebrate clustered protocadherins (Pcdhs) are two classic examples of the striking diversity from a complex genomic locus, wherein the former encodes more than 10,000 distinct isoforms via alternative splicing, while the latter employs alternative promoters to attain isoform diversity. These structurally unrelated families show remarkably striking molecular parallels and even similar functions. Recent studies revealed a novel Dscam gene family with tandemly arrayed 5' cassettes in Chelicerata (e.g., the scorpion Mesobuthus martensii and the tick Ixodes scapularis), similar to vertebrate clustered Pcdhs. Likewise, octopus shows a more remarkable expansion of the Pcdh isoform repertoire than human. These discoveries of Dscam and Pcdh diversification reshape the evolutionary landscape of recognition molecule diversity and provide a greater understanding of convergent molecular strategies for isoform diversity. This article reviews new insights into the evolution, regulatory mechanisms, and functions of Dscam and Pcdh isoform diversity. In particular, the convergence of clustered Dscams and Pcdhs is highlighted.
神经元连接的复杂性依赖于细胞表面分子的非凡识别多样性。果蝇 Dscam1 和脊椎动物聚集原钙黏蛋白(Pcdhs)是复杂基因组位点中显著多样性的两个典型例子,前者通过选择性剪接编码了超过 10000 种不同的异构体,而后者则利用不同的启动子获得异构体多样性。这两个结构上不相关的家族表现出惊人的相似分子特征,甚至具有相似的功能。最近的研究揭示了一个新的 Dscam 基因家族,在螯肢动物(例如,蝎子 Mesobuthus martensii 和蜱 Ixodes scapularis)中具有串联排列的 5' 盒,类似于脊椎动物聚集的 Pcdhs。同样,章鱼的 Pcdh 异构体谱比人类有更显著的扩展。这些 Dscam 和 Pcdh 多样化的发现重塑了识别分子多样性的进化景观,并提供了对异构体多样性的趋同分子策略的更深入理解。本文综述了 Dscam 和 Pcdh 异构体多样性的进化、调控机制和功能的新见解。特别是强调了聚集 Dscam 和 Pcdh 的趋同。