首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >E3 ubiquitin ligase RFWD2 controls lung branching through protein-level regulation of ETV transcription factors
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E3 ubiquitin ligase RFWD2 controls lung branching through protein-level regulation of ETV transcription factors

机译:E3泛素连接酶RFWD2通过蛋白质水平调节ETV转录因子来控制肺分支

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摘要

The mammalian lung is an elaborate branching organ, and it forms following a highly stereotypical morphogenesis program. It is well established that precise control at the transcript level is a key genetic underpinning of lung branching. In comparison, little is known about how regulation at the protein level may play a role. Ring finger and WD domain 2 (RFWD2, also termed COP1) is an E3 ubiquitin ligase that modifies specific target proteins, priming their degradation via the ubiquitin proteasome system. RFWD2 is known to function in the adult in pathogenic processes such as tumorigenesis. Here, we show that prenatal inactivation of Rfwd2 gene in the lung epithelium led to a striking halt in branching morphogenesis shortly after secondary branch formation. This defect is accompanied by distalization of the lung epithelium while growth and cellular differentiation still occurred. In the mutant lung, two E26 transformation-specific (ETS) transcription factors essential for normal lung branching, ETS translocation variant 4 (ETV4) and ETV5, were up-regulated at the protein level, but not at the transcript level. Introduction of Etv loss-of-function alleles into the Rfwd2 mutant background attenuated the branching phenotype, suggesting that RFWD2 functions, at least in part, through degrading ETV proteins. Because a number of E3 ligases are known to target factors important for lung development, our findings provide a preview of protein-level regulatory network essential for lung branching morphogenesis.
机译:哺乳动物的肺是复杂的分支器官,它是按照高度定型的形态发生程序形成的。众所周知,在转录水平上的精确控制是肺分支的关键遗传基础。相比之下,关于蛋白质水平调控如何发挥作用的知之甚少。无名指和WD结构域2(RFWD2,也称为COP1)是E3泛素连接酶,可修饰特定的靶蛋白,通过泛素蛋白酶体系统引发其降解。已知RFWD2在成年过程中在诸如肿瘤发生的致病过程中起作用。在这里,我们显示肺上皮细胞中Rfwd2基因的产前失活导致次级分支形成后不久,分支形态发生中止。该缺陷伴有肺上皮的远端化,而生长和细胞分化仍在发生。在突变肺中,正常肺分支必不可少的两个E26转换特异性(ETS)转录因子,ETS易位变体4(ETV4)和ETV5,在蛋白水平上调,但在转录水平上调。 Etv功能丧失的等位基因引入Rfwd2突变体背景减弱了分支表型,表明RFWD2至少部分通过降解ETV蛋白起作用。由于已知许多E3连接酶靶向于对肺发育重要的因子,因此我们的发现提供了对肺分支形态发生必不可少的蛋白质水平调控网络的预览。

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