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影响黑腹果蝇翅面之间黏附的常染色体突变。

Autosomal mutations affecting adhesion between wing surfaces in Drosophila melanogaster.

作者信息

Prout M, Damania Z, Soong J, Fristrom D, Fristrom J W

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.

出版信息

Genetics. 1997 May;146(1):275-85. doi: 10.1093/genetics/146.1.275.

Abstract

Integrins are evolutionarily conserved transmembrane alpha,beta heterodimeric receptors involved in cell-to-matrix and cell-to-cell adhesions. In Drosophila the position-specific (PS) integrins mediate the formation and maintenance of junctions between muscle and epidermis and between the two epidermal wing surfaces. Besides integrins, other proteins are implicated in integrin-dependent adhesion. In Drosophila, somatic clones of mutations in PS integrin genes disrupt adhesion between wing surfaces to produce wing blisters. To identify other genes whose products function in adhesion between wing surfaces, we conducted a screen for autosomal mutations that produce blisters in somatic wing clones. We isolated 76 independent mutations in 25 complementation groups, 15 of which contain more than one allele. Chromosomal sites were determined by deficiency mapping, and genetic interactions with mutations in the beta PS integrin gene myospheroid were investigated. Mutations in four known genes (blistered, Delta, dumpy and mastermind) were isolated. Mutations were isolated in three new genes (piopio, rhea and steamer duck) that affect myo-epidermal junctions or muscle function in embryos. Mutations in three other genes (kakapo, kiwi and moa) may also affect cell adhesion or muscle function at hatching. These new mutants provide valuable material for the study of integrin-dependent cell-to-cell adhesion.

摘要

整合素是进化上保守的跨膜α、β异二聚体受体,参与细胞与基质以及细胞与细胞之间的黏附。在果蝇中,位置特异性(PS)整合素介导肌肉与表皮之间以及两个表皮翅面之间连接的形成和维持。除了整合素外,其他蛋白质也参与整合素依赖性黏附。在果蝇中,PS整合素基因突变的体细胞克隆会破坏翅面之间的黏附,从而产生翅泡。为了鉴定其产物在翅面之间黏附中发挥作用的其他基因,我们对在体细胞翅克隆中产生翅泡的常染色体突变进行了筛选。我们在25个互补群中分离出76个独立突变,其中15个互补群包含不止一个等位基因。通过缺失作图确定染色体位点,并研究了与βPS整合素基因肌球样蛋白突变的遗传相互作用。分离出四个已知基因(起泡、Delta、矮胖和主谋)的突变。在三个影响胚胎肌表皮连接或肌肉功能的新基因(皮奥皮奥、瑞亚和蒸鸭)中分离出突变。其他三个基因(卡卡波、几维鸟和恐鸟)的突变也可能在孵化时影响细胞黏附或肌肉功能。这些新突变体为研究整合素依赖性细胞间黏附提供了有价值的材料。

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