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α整合素胞质尾部在秀丽隐杆线虫发育过程中具有组织特异性作用。

α Integrin cytoplasmic tails have tissue-specific roles during C. elegans development.

作者信息

Meighan Christopher M, Schwarzbauer Jean E

机构信息

Department of Molecular Biology and Chemistry, Christopher Newport University, Newport News, VA, USA.

出版信息

Int J Dev Biol. 2014;58(5):325-33. doi: 10.1387/ijdb.130327cm.

Abstract

Integrin signaling impacts many developmental processes. The complexity of these signals increases when multiple, unique integrin heterodimers are expressed during a single developmental event. Since integrin heterodimers have different signaling capabilities, the signals originating at each integrin type must be separated in the cell. C. elegans have two integrin heterodimers, α INA-1/β PAT-3 and α PAT-2/β PAT-3, which are expressed individually or simultaneously, based on tissue type. We used chimeric α integrins to assess the role of α integrin cytoplasmic tails during development. Chimeric integrin ina-1 with the pat-2 cytoplasmic tail rescued lethality and maintained neuron fasciculation in an ina-1 mutant. Interestingly, the pat-2 tail was unable to completely restore distal tip cell migration and vulva morphogenesis. Chimeric integrin pat-2 with the ina-1 cytoplasmic tail had a limited ability to rescue a lethal mutation in pat-2, with survivors showing aberrant muscle organization, yet normal distal tip cell migration. In a wild type background, α integrin pat-2 with the ina-1 cytoplasmic tail had a dominant negative effect which induced muscle disorganization, cell migration defects and lethality. These results show the α integrin cytoplasmic tails impact unique cellular behaviors that vary by tissue type during development.

摘要

整合素信号传导影响许多发育过程。当在单个发育事件中表达多个独特的整合素异二聚体时,这些信号的复杂性会增加。由于整合素异二聚体具有不同的信号传导能力,因此源自每种整合素类型的信号必须在细胞中分开。秀丽隐杆线虫有两种整合素异二聚体,α INA-1/β PAT-3和α PAT-2/β PAT-3,它们根据组织类型单独或同时表达。我们使用嵌合α整合素来评估α整合素细胞质尾巴在发育过程中的作用。带有pat-2细胞质尾巴的嵌合整合素ina-1挽救了致死性,并在ina-1突变体中维持了神经元成束。有趣的是,pat-2尾巴无法完全恢复远端尖端细胞迁移和外阴形态发生。带有ina-1细胞质尾巴的嵌合整合素pat-2挽救pat-2致死突变的能力有限,存活者表现出异常的肌肉组织,但远端尖端细胞迁移正常。在野生型背景下,带有ina-1细胞质尾巴的α整合素pat-2具有显性负效应,可诱导肌肉紊乱、细胞迁移缺陷和致死性。这些结果表明,α整合素细胞质尾巴影响发育过程中因组织类型而异的独特细胞行为。

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