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果蝇的APC2和APC1在幼虫大脑中具有重叠作用,尽管它们在细胞内的定位不同。

Drosophila APC2 and APC1 have overlapping roles in the larval brain despite their distinct intracellular localizations.

作者信息

Akong Kathryn, McCartney Brooke M, 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):71-90. doi: 10.1006/dbio.2002.0777.

Abstract

The tumor suppressor APC and its homologs, first identified for a role in colon cancer, negatively regulate Wnt signaling in both oncogenesis and normal development, and play Wnt-independent roles in cytoskeletal regulation. Both Drosophila and mammals have two APC family members. We further explored the functions of the Drosophila APCs using the larval brain as a model. We found that both proteins are expressed in the brain. APC2 has a highly dynamic, asymmetric localization through the larval neuroblast cell cycle relative to known mediators of embryonic neuroblast asymmetric divisions. Adherens junction proteins also are asymmetrically localized in neuroblasts. In addition they accumulate with APC2 and APC1 in nerves formed by axons of the progeny of each neuroblast-ganglion mother cell cluster. APC2 and APC1 localize to very different places when expressed in the larval brain: APC2 localizes to the cell cortex and APC1 to centrosomes and microtubules. Despite this, they play redundant roles in the brain; while each single mutant is normal, the zygotic double mutant has severely reduced numbers of larval neuroblasts. Our experiments suggest that this does not result from misregulation of Wg signaling, and thus may involve the cytoskeletal or adhesive roles of APC proteins.

摘要

肿瘤抑制因子APC及其同源物最初是因其在结肠癌中的作用而被发现的,它们在肿瘤发生和正常发育过程中均对Wnt信号通路起负调控作用,并且在细胞骨架调节中发挥与Wnt无关的作用。果蝇和哺乳动物都有两个APC家族成员。我们以幼虫脑为模型,进一步探究了果蝇APC的功能。我们发现这两种蛋白均在脑中表达。相对于已知的胚胎神经母细胞不对称分裂调节因子,APC2在幼虫神经母细胞周期中具有高度动态的不对称定位。黏着连接蛋白在神经母细胞中也呈不对称定位。此外,它们与APC2和APC1在每个神经母细胞 - 神经节母细胞簇后代的轴突形成的神经中积累。当在幼虫脑中表达时,APC2和APC1定位于非常不同的位置:APC2定位于细胞皮层,而APC1定位于中心体和微管。尽管如此,它们在脑中发挥冗余作用;虽然每个单突变体都是正常的,但合子双突变体的幼虫神经母细胞数量严重减少。我们的实验表明,这并非由Wg信号通路的失调导致,因此可能涉及APC蛋白的细胞骨架或黏附作用。

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