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果蝇β重链血影蛋白对发育至关重要,并在眼睛中促成特定的细胞命运。

Drosophila betaHeavy-spectrin is essential for development and contributes to specific cell fates in the eye.

作者信息

Thomas G H, Zarnescu D C, Juedes A E, Bales M A, Londergan A, Korte C C, Kiehart D P

机构信息

Departments of Biology and of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Development. 1998 Jun;125(11):2125-34. doi: 10.1242/dev.125.11.2125.

Abstract

The spectrin membrane skeleton is a ubiquitous cytoskeletal structure with several cellular roles, including the maintenance of cell integrity, determination of cell shape and as a contributor to cell polarity. We have isolated mutations in the gene encoding &bgr ;Heavy-spectrin in Drosophila, and have named this essential locus karst. karst mutant individuals have a pleiotropic phenotype characterized by extensive larval lethality and, in adult escapers, rough eyes, bent wings, tracheal defects and infertility. Within karst mutant eyes, a significant number of ommatidia specifically lack photoreceptor R7 alongside more complex morphological defects. Immunolocalization of betaHeavy-spectrin in wild-type eye-antennal and wing imaginal discs reveals that betaHeavy-spectrin is present in a restricted subdomain of the membrane skeleton that colocalizes with DE-cadherin. We propose a model where normal levels of Sevenless signaling are dependent on tight cell-cell adhesion facilitated by the betaHeavy-spectrin membrane skeleton. Immunolocalization of betaHeavy-spectrin in the adult and larval midgut indicates that it is a terminal web protein, but we see no gross morphological defects in the adult apical brush border in karst mutant flies. Rhodamine phalloidin staining of karst mutant ovaries similarly reveals no conspicuous defect in the actin cytoskeleton or cellular morphology in egg chambers. This is in contrast to mutations in alpha-spectrin, the molecular partner of betaHeavy-spectrin, which affect cellular structure in both the larval gut and adult ovaries. Our results emphasize the fundamental contribution of the spectrin membrane skeleton to normal development and reveals a critical interplay between the integrity of a cell's membrane skeleton, the structure of cell-cell contacts and cell signaling.

摘要

血影蛋白膜骨架是一种普遍存在的细胞骨架结构,具有多种细胞功能,包括维持细胞完整性、确定细胞形状以及对细胞极性的形成有贡献。我们在果蝇中分离出了编码β重链血影蛋白基因的突变,并将这个必需基因座命名为喀斯特。喀斯特突变个体具有多效性表型,其特征是幼虫大量致死,在成年存活个体中表现为粗糙的眼睛、弯曲的翅膀、气管缺陷和不育。在喀斯特突变体的眼睛中,大量小眼特别缺乏光感受器R7,同时还存在更复杂的形态缺陷。在野生型眼触角和翅成虫盘上对β重链血影蛋白进行免疫定位显示,β重链血影蛋白存在于膜骨架的一个受限亚域中,该亚域与DE-钙黏蛋白共定位。我们提出了一个模型,即正常水平的Sevenless信号传导依赖于由β重链血影蛋白膜骨架促进的紧密细胞间黏附。在成虫和幼虫中肠对β重链血影蛋白进行免疫定位表明它是一种终末网蛋白,但在喀斯特突变果蝇的成年顶端刷状缘中我们没有看到明显的形态缺陷。用罗丹明鬼笔环肽对喀斯特突变体卵巢进行染色同样显示卵室中的肌动蛋白细胞骨架或细胞形态没有明显缺陷。这与β重链血影蛋白的分子伴侣α血影蛋白的突变形成对比,α血影蛋白的突变会影响幼虫肠道和成年卵巢的细胞结构。我们的结果强调了血影蛋白膜骨架对正常发育的根本贡献,并揭示了细胞膜骨架的完整性、细胞间接触结构和细胞信号传导之间的关键相互作用。

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