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果蝇的APC2和APC1在胚胎和成虫盘的无翅信号传导中发挥重叠作用。

Drosophila APC2 and APC1 play overlapping roles in wingless signaling in the embryo and imaginal discs.

作者信息

Akong Kathryn, Grevengoed Elizabeth E, Price Meredith H, McCartney Brooke M, Hayden Melissa A, DeNofrio Jan C, Peifer Mark

机构信息

Curriculum in Genetics and Molecular Biology, University of North Carolina, Chapel Hill, North Carolina 27599-3280, USA.

出版信息

Dev Biol. 2002 Oct 1;250(1):91-100. doi: 10.1006/dbio.2002.0776.

Abstract

The regulation of signal transduction plays a key role in cell fate choices, and its disregulation contributes to oncogenesis. This duality is exemplified by the tumor suppressor APC. Originally identified for its role in colon tumors, APC family members were subsequently shown to negatively regulate Wnt signaling in both development and disease. The analysis of the normal roles of APC proteins is complicated by the presence of two APC family members in flies and mice. Previous work demonstrated that, in some tissues, single mutations in each gene have no effect, raising the question of whether there is functional overlap between the two APCs or whether APC-independent mechanisms of Wnt regulation exist. We addressed this by eliminating the function of both Drosophila APC genes simultaneously. We find that APC1 and APC2 play overlapping roles in regulating Wingless signaling in the embryonic epidermis and the imaginal discs. Surprisingly, APC1 function in embryos occurs at levels of expression nearly too low to detect. Further, the overlapping functions exist despite striking differences in the intracellular localization of the two APC family members.

摘要

信号转导的调控在细胞命运选择中起着关键作用,其失调会导致肿瘤发生。肿瘤抑制因子APC就体现了这种双重性。APC最初因其在结肠肿瘤中的作用而被发现,随后APC家族成员被证明在发育和疾病过程中均对Wnt信号传导起负调控作用。果蝇和小鼠中存在两个APC家族成员,这使得对APC蛋白正常功能的分析变得复杂。先前的研究表明,在某些组织中,每个基因的单突变没有影响,这就提出了两个APC之间是否存在功能重叠或者是否存在不依赖APC的Wnt调控机制的问题。我们通过同时消除果蝇两个APC基因的功能来解决这个问题。我们发现,APC1和APC2在调节胚胎表皮和成虫盘的无翅信号传导中发挥重叠作用。令人惊讶的是,胚胎中的APC1功能在几乎低到无法检测的表达水平上就已发生。此外,尽管两个APC家族成员在细胞内定位上存在显著差异,但重叠功能依然存在。

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