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果蝇阿贝尔森酪氨酸激酶在神经和肌肉中的水平升高:亚细胞定位和突变体表型暗示其在细胞间相互作用中的作用。

Increased levels of the Drosophila Abelson tyrosine kinase in nerves and muscles: subcellular localization and mutant phenotypes imply a role in cell-cell interactions.

作者信息

Bennett R L, Hoffmann F M

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin, Madison 53706.

出版信息

Development. 1992 Dec;116(4):953-66. doi: 10.1242/dev.116.4.953.

Abstract

Mutations in the Drosophila Abelson tyrosine kinase have pleiotropic effects late in development that lead to pupal lethality or adults with a reduced life span, reduced fecundity and rough eyes. We have examined the expression of the abl protein throughout embryonic and pupal development and analyzed mutant phenotypes in some of the tissues expressing abl. abl protein, present in all cells of the early embryo as the product of maternally contributed mRNA, transiently localizes to the region below the plasma membrane cleavage furrows as cellularization initiates. The function of this expression is not yet known. Zygotic expression of abl is first detected in the post-mitotic cells of the developing muscles and nervous system midway through embryogenesis. In later larval and pupal stages, abl protein levels are also highest in differentiating muscle and neural tissue including the photoreceptor cells of the eye. abl protein is localized subcellularly to the axons of the central nervous system, the embryonic somatic muscle attachment sites and the apical cell junctions of the imaginal disk epithelium. Evidence for abl function was obtained by analysis of mutant phenotypes in the embryonic somatic muscles and the eye imaginal disk. The expression patterns and mutant phenotypes indicate a role for abl in establishing and maintaining cell-cell interactions.

摘要

果蝇阿贝尔森酪氨酸激酶的突变在发育后期具有多效性作用,导致蛹期致死或成虫寿命缩短、繁殖力降低和眼睛粗糙。我们研究了abl蛋白在整个胚胎和蛹发育过程中的表达,并分析了一些表达abl的组织中的突变表型。abl蛋白作为母源mRNA的产物存在于早期胚胎的所有细胞中,在细胞化开始时短暂定位于质膜分裂沟下方的区域。这种表达的功能尚不清楚。abl的合子表达首先在胚胎发育中期发育中的肌肉和神经系统的有丝分裂后细胞中检测到。在幼虫和蛹后期,abl蛋白水平在包括眼睛感光细胞在内的分化肌肉和神经组织中也最高。abl蛋白在亚细胞水平上定位于中枢神经系统的轴突、胚胎体肌附着部位和成虫盘上皮的顶端细胞连接。通过分析胚胎体肌和眼成虫盘中的突变表型获得了abl功能的证据。表达模式和突变表型表明abl在建立和维持细胞间相互作用中起作用。

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