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果蝇四跨膜蛋白Tsp68C的表达增加可抑制ytr缺陷型和Ras/Raf激活型血细胞的异常增殖。

Increased expression of Drosophila tetraspanin, Tsp68C, suppresses the abnormal proliferation of ytr-deficient and Ras/Raf-activated hemocytes.

作者信息

Sinenko Sergey A, Mathey-Prevot Bernard

机构信息

Division of Pediatric Oncology, Dana-Farber Cancer Institute and Children's Hospital Boston, Boston, MA 02115, USA.

出版信息

Oncogene. 2004 Dec 2;23(56):9120-8. doi: 10.1038/sj.onc.1208156.

Abstract

Tetraspanins are evolutionary conserved transmembrane proteins thought to facilitate cell proliferation, movement or fusion by acting as organizers of different signaling events. Despite their prevalence and conservation, their specific role and functions remain largely elusive, as their redundancy in various organisms has hindered loss of function studies. Here, we take a gain of function approach to study Drosophila tetraspanin Tsp68C and its effect on larval hemocytes. We recently characterized a lethal mutation in ytr, a conserved gene that encodes a nuclear arginine-rich protein of unknown function, which is accompanied by abnormal differentiation and proliferation of the larval hematopoietic tissue in flies. A hemolectin (hml)-Gal4 construct carried by hml-Gal4 transgenic flies was sufficient by itself to abrogate the hematopoietic defects in ytr mutant larvae. This rescue correlated with the overexpression of tsp68C, a tetraspanin gene nested in the hml promoter. The suppression of abnormal proliferation by the hml-Gal4 construct was not restricted to ytr-deficient hemocytes, but was also observed in hemocytes expressing the oncogenic forms of Raf or Ras proteins. However, it had no effect on overproliferation mediated by a constitutively active form of Jak. New hml-Gal4 lines, in which the tsp68C gene was silenced or deleted from the promoter, no longer rescued the hematopoietic defect in ytr mutants nor suppressed the activated Raf-induced overproliferation. Therefore, change in tetraspanin Tsp68C expression has a strong suppressor effect on abnormal proliferation and differentiation of hemocytes in the context of specific lesions, such as overactivation of the Ras/Raf/MAPK pathway.

摘要

四跨膜蛋白是进化上保守的跨膜蛋白,被认为通过充当不同信号事件的组织者来促进细胞增殖、运动或融合。尽管它们普遍存在且具有保守性,但其具体作用和功能在很大程度上仍然难以捉摸,因为它们在各种生物体中的冗余性阻碍了功能缺失研究。在这里,我们采用功能获得方法来研究果蝇四跨膜蛋白Tsp68C及其对幼虫血细胞的影响。我们最近鉴定了ytr中的一个致死突变,ytr是一个保守基因,编码一种功能未知的富含精氨酸的核蛋白,该突变伴随着果蝇幼虫造血组织的异常分化和增殖。hml-Gal4转基因果蝇携带的血凝集素(hml)-Gal4构建体本身就足以消除ytr突变幼虫中的造血缺陷。这种拯救与tsp68C的过表达相关,tsp68C是一个嵌套在hml启动子中的四跨膜蛋白基因。hml-Gal4构建体对异常增殖的抑制不仅限于ytr缺陷的血细胞,在表达致癌形式的Raf或Ras蛋白的血细胞中也观察到了这种抑制。然而,它对由组成型活性形式的Jak介导的过度增殖没有影响。新的hml-Gal4品系,其中tsp68C基因从启动子中沉默或缺失,不再能拯救ytr突变体中的造血缺陷,也不能抑制活化的Raf诱导的过度增殖。因此,在特定损伤(如Ras/Raf/MAPK途径的过度激活)的情况下,四跨膜蛋白Tsp68C表达的变化对血细胞的异常增殖和分化具有强烈的抑制作用。

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