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果蝇αPS2整合素亚基的遗传分析揭示了其离散的黏附、形态发生和肌节功能。

Genetic analysis of the Drosophila alphaPS2 integrin subunit reveals discrete adhesive, morphogenetic and sarcomeric functions.

作者信息

Bloor J W, Brown N H

机构信息

Wellcome/CRC Institute, Cambridge, United Kingdom.

出版信息

Genetics. 1998 Mar;148(3):1127-42. doi: 10.1093/genetics/148.3.1127.

Abstract

The integrin family of cell surface receptors mediates cell-substrate and cell-to-cell adhesion and transmits intracellular signals. In Drosophila there is good evidence for an adhesive role of integrins, but evidence for integrin signalling has remained elusive. Each integrin is an alphabeta heterodimer, and the Drosophila betaPS subunit forms at least two integrins by association with different alpha subunits: alphaPS1betaPS (PS1) and alphaPS2betaPS (PS2). The complex pattern of PS2 integrin expression includes, but is more extensive than, the sites where PS2 has a known requirement. In order to investigate whether PS2 integrin is required at these additional sites and/or has functions besides mediating adhesion, a comprehensive genetic analysis of inflated, the gene that encodes alphaPS2, was performed. We isolated 35 new inflated alleles, and obtained 10 alleles from our colleagues. The majority of alleles are amorphs (36/45) or hypomorphs (4/45), but five alleles that affect specific developmental processes were identified. Interallelic complementation between these alleles suggests that some may affect distinct functional domains of the alphaPS2 protein, which specify particular interactions that promote adhesion or signalling. One new allele reveals that the PS2 integrin is required for the development of the adult halteres and legs as well as the wing.

摘要

细胞表面受体的整合素家族介导细胞与底物以及细胞与细胞之间的黏附,并传递细胞内信号。在果蝇中,有充分证据表明整合素具有黏附作用,但整合素信号传导的证据仍然难以捉摸。每个整合素都是一个αβ异二聚体,果蝇的βPS亚基通过与不同的α亚基结合形成至少两种整合素:αPS1βPS(PS1)和αPS2βPS(PS2)。PS2整合素表达的复杂模式包括但不限于已知需要PS2的位点。为了研究在这些额外位点是否需要PS2整合素和/或其除了介导黏附之外是否具有其他功能,我们对编码αPS2的inflated基因进行了全面的遗传分析。我们分离出35个新的inflated等位基因,并从同事那里获得了10个等位基因。大多数等位基因是无效等位基因(36/45)或亚效等位基因(4/45),但鉴定出了五个影响特定发育过程的等位基因。这些等位基因之间的等位基因互补表明,有些可能影响αPS2蛋白的不同功能域,这些功能域决定了促进黏附或信号传导的特定相互作用。一个新的等位基因表明,PS2整合素对于成虫的平衡棒、腿部以及翅膀的发育是必需的。

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