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Crk 和 CrkL 在出生后晶状体发育过程中的需求。

Requirement for Crk and CrkL during postnatal lens development.

机构信息

Children's Mercy Research Institute, Children's Mercy Kansas City, Department of Pediatrics, University of Missouri-Kansas City School of Medicine, Kansas City, MO, 64108, USA.

Children's Mercy Research Institute, Children's Mercy Kansas City, Department of Pediatrics, University of Missouri-Kansas City School of Medicine, Kansas City, MO, 64108, USA.

出版信息

Biochem Biophys Res Commun. 2020 Aug 27;529(3):603-607. doi: 10.1016/j.bbrc.2020.06.108. Epub 2020 Jul 17.

DOI:10.1016/j.bbrc.2020.06.108
PMID:32736680
Abstract

The Crk and CrkL adaptor proteins have SH2 and SH3 domains and play essential overlapping, as well as distinct, roles in many biological processes, ranging from cell structure and motility to proliferation. Conditional ablation of both Crk and CrkL in neuronal progenitor cells, using a Nestin-Cre transgene, resulted in severe defects in postnatal eye development, including progressive eye closure, lens rupture, and retinal malformation. These phenotypes were not observed in the presence of a single wild-type allele of either Crk or CrkL. We found that the lens in knockout mice started to rupture and disintegrate between postnatal days 7 and 12, although the structure of the retina was relatively well maintained. As the lens deteriorated further, the outer nuclear layer in the posterior of the retina enlarged and developed ruffles. Cre recombination occurred in the lens and retina of the knockout mice. Furthermore, the posterior lens capsule of the knockout mouse was thinner at postnatal days 0.5 and 3, suggesting that the defective lens capsule caused rupturing of the lens near the posterior pole. These results indicate that Crk and CrkL play essential overlapping roles in postnatal lens development.

摘要

Crk 和 CrkL 衔接蛋白具有 SH2 和 SH3 结构域,在许多生物学过程中发挥着重要的重叠作用,以及独特的作用,从细胞结构和运动到增殖。使用 Nestin-Cre 转基因在神经元祖细胞中条件性敲除 Crk 和 CrkL,导致出生后眼睛发育严重缺陷,包括进行性眼睛闭合、晶状体破裂和视网膜畸形。在存在 Crk 或 CrkL 的单个野生型等位基因的情况下,没有观察到这些表型。我们发现,敲除小鼠的晶状体在出生后第 7 天至 12 天之间开始破裂和分解,尽管视网膜的结构相对保持良好。随着晶状体进一步恶化,视网膜后部的外核层增大并出现皱褶。Cre 重组发生在敲除小鼠的晶状体和视网膜中。此外,敲除小鼠的后晶状体囊在出生后第 0.5 天和第 3 天更薄,表明有缺陷的晶状体囊导致后极附近的晶状体破裂。这些结果表明 Crk 和 CrkL 在出生后晶状体发育中发挥着重要的重叠作用。

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