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小鼠体内β1整合素的缺失会导致内细胞团发育失败和植入周围期致死。

Deletion of beta 1 integrins in mice results in inner cell mass failure and peri-implantation lethality.

作者信息

Stephens L E, Sutherland A E, Klimanskaya I V, Andrieux A, Meneses J, Pedersen R A, Damsky C H

机构信息

Department of Stomatology, University of California, San Francisco 94143-0512, USA.

出版信息

Genes Dev. 1995 Aug 1;9(15):1883-95. doi: 10.1101/gad.9.15.1883.

Abstract

Integrin receptors for extracellular matrix receptors are important effectors of cell adhesion, differentiation, and migration in cultured cells and are believed to be critical effectors of these processes during development. To determine when beta 1 integrins become critical during embryonic development, we generated mutant mice with a targeted disruption of the beta 1 integrin subunit gene. Heterozygous mutant mice were normal. Homozygous loss of beta 1 integrin expression was lethal during early postimplantation development. Homozygous embryos lacking beta 1 integrins formed normal-looking blastocysts and initiated implantation at E4.5. However, the E4.5 beta 1-null embryos in situ had collapsed blastocoeles, and whereas the trophoblast penetrated the uterine epithelium, extensive invasion of the decidua was not observed. Laminin-positive endoderm cells were detected in the inner cell mass area, but endoderm morphogenesis and migration were defective. By E5.5 beta 1-null embryos had degenerated extensively. In vitro analysis showed that trophoblast function in beta 1-null peri-implantation embryos was largely normal, including expression of tissue-specific markers, and outgrowth on fibronectin- and vitronectin-coated, although not on laminin-coated substrates. In contrast, the inner cell mass region of beta 1-null blastocyst outgrowths, and inner cell masses isolated from beta 1-null blastocysts, showed highly retarded growth and defective extraembryonic endoderm morphogenesis and migration. These data suggest that beta 1 integrins are required for normal morphogenesis of the inner cell mass and are essential mediators of growth and survival of cells of the inner cell mass. Failure of continued trophoblast development in beta 1-null embryos after inner cell mass failure could be attributable to either an intrinsic requirement for beta 1 integrins for later stages of trophoblast development, or to the lack of trophic signals from the beta 1-null inner cell mass.

摘要

细胞外基质受体的整合素受体是培养细胞中细胞黏附、分化和迁移的重要效应器,并且被认为是发育过程中这些过程的关键效应器。为了确定β1整合素在胚胎发育过程中何时变得至关重要,我们生成了β1整合素亚基基因靶向破坏的突变小鼠。杂合突变小鼠正常。β1整合素表达的纯合缺失在植入后早期发育过程中是致死的。缺乏β1整合素的纯合胚胎形成外观正常的囊胚,并在E4.5开始植入。然而,原位的E4.5β1基因缺失胚胎的囊胚腔已经塌陷,虽然滋养层穿透了子宫上皮,但未观察到对蜕膜的广泛侵袭。在内细胞团区域检测到层粘连蛋白阳性的内胚层细胞,但内胚层形态发生和迁移存在缺陷。到E5.5时,β1基因缺失胚胎已经广泛退化。体外分析表明,β1基因缺失的植入前胚胎中的滋养层功能在很大程度上是正常的,包括组织特异性标志物的表达,并且在纤连蛋白和玻连蛋白包被的底物上生长,但不在层粘连蛋白包被的底物上生长。相比之下,β1基因缺失囊胚外植体的内细胞团区域以及从β1基因缺失囊胚中分离出的内细胞团显示出生长高度迟缓以及胚外内胚层形态发生和迁移存在缺陷。这些数据表明,β1整合素是内细胞团正常形态发生所必需的,并且是内细胞团细胞生长和存活的重要介质。β1基因缺失胚胎在内细胞团功能衰竭后滋养层持续发育失败可能归因于滋养层发育后期对β1整合素的内在需求,或者归因于来自β1基因缺失内细胞团的营养信号缺乏。

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