Analysis of the interaction between human RITA and Drosophila Suppressor of Hairless

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Birgit Brockmann, Helena Mastel, Franz Oswald, Dieter Maier
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引用次数: 7

Abstract

Notch signalling mediates intercellular communication, which is effected by the transcription factor CSL, an acronym for vertebrate CBF1/RBP-J, Drosophila Suppressor of Hairless [Su(H)] and C. elegans Lag1. Nuclear import of CBF1/RBP-J depends on co-activators and co-repressors, whereas the export relies on RITA. RITA is a tubulin and CBF1/RBP-J binding protein acting as a negative regulator of Notch signalling in vertebrates. RITA protein is highly conserved in eumatazoa, but no Drosophila homologue was yet identified. In this work, the activity of human RITA in the fly was addressed. To this end, we generated transgenic flies that allow a tissue specific induction of human RITA, which was demonstrated by Western blotting and in fly tissues. Unexpectedly, overexpression of RITA during fly development had little phenotypic consequences, even when overexpressed simultaneously with either Su(H) or the Notch antagonist Hairless. We demonstrate the in vivo binding of human RITA to Su(H) and to tubulin by co-immune precipitation. Moreover, RITA and tubulin co-localized to some degree in several Drosophila tissues. Overall our data show that human RITA, albeit binding to Drosophila Su(H) and tubulin, cannot influence the Notch signalling pathway in the fly, suggesting that a nuclear export mechanism of Su(H), if existent in Drosophila, does not depend on RITA.

Abstract Image

人RITA与果蝇无毛抑制因子的相互作用分析
Notch信号通路介导细胞间通讯,受转录因子CSL、脊椎动物CBF1/RBP-J、果蝇无毛抑制因子[Su(H)]和线虫Lag1的首字母缩写影响。CBF1/RBP-J的核进口依赖于共激活剂和共阻滞剂,而出口依赖于RITA。RITA是一种微管蛋白和CBF1/RBP-J结合蛋白,在脊椎动物中作为Notch信号的负调节因子。RITA蛋白在类人猿中高度保守,但尚未发现与果蝇同源的蛋白。本文研究了人RITA在蝇体内的活性。为此,我们通过Western blotting和果蝇组织实验证明,我们培育了能够组织特异性诱导人RITA的转基因果蝇。出乎意料的是,在果蝇发育过程中,即使与Su(H)或Notch拮抗剂Hairless同时过表达,RITA也几乎没有表型后果。我们通过共免疫沉淀证明了人RITA与Su(H)和微管蛋白在体内的结合。此外,RITA和微管蛋白在果蝇的几个组织中有一定程度的共定位。总的来说,我们的数据表明,人类的RITA虽然与果蝇的Su(H)和微管蛋白结合,但不能影响果蝇的Notch信号通路,这表明如果果蝇中存在Su(H)的核输出机制,则不依赖于RITA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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