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在母源-合子转变过程中,Muskelin作为高度调控的CTLH E3连接酶的底物受体发挥作用。

Muskelin acts as a substrate receptor of the highly regulated CTLH E3 ligase during the maternal-to-zygotic transition.

作者信息

Briney Chloe A, Henriksen Jesslyn C, Lin Chenwei, Jones Lisa A, Benner Leif, Rains Addison B, Gutierrez Roxana, Gafken Philip R, Rissland Olivia S

机构信息

Department of Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus, Aurora, CO 80045.

RNA Bioscience Initiative, University of Colorado Anschutz Medical Campus, Aurora, CO 80045.

出版信息

bioRxiv. 2024 Jul 1:2024.06.28.601265. doi: 10.1101/2024.06.28.601265.

Abstract

The maternal-to-zygotic transition (MZT) is a conserved developmental process where the maternally-derived protein and mRNA cache is replaced with newly made zygotic gene products. We have previously shown that in the deposited RNA-binding proteins ME31B, Cup, and Trailer Hitch (TRAL) are ubiquitylated by the CTLH E3 ligase and cleared. However, the organization and regulation of the CTLH complex remain poorly understood in flies. In particular, lacks an identifiable substrate adaptor, and the mechanisms restricting degradation of ME31B and its cofactors to the MZT are unknown. Here, we show that the developmental specificity of the CTLH complex is mediated by multipronged regulation, including transcriptional control by the transcription factor OVO and autoinhibition of the E3 ligase. One major regulatory target is the subunit Muskelin, which we demonstrate acts as a substrate adaptor for the CTLH complex. Although conserved, Muskelin has structural roles in other species, suggesting a surprising functional plasticity. Finally, we find that Muskelin has few targets beyond the three known RNA binding proteins, showing exquisite target specificity. Thus, multiple levels of integrated regulation restrict the activity of the embryonic CTLH complex to early embryogenesis, seemingly with the goal of regulating three important RNA binding proteins.

摘要

母源-合子转变(MZT)是一个保守的发育过程,在此过程中,母源来源的蛋白质和mRNA储备被新合成的合子基因产物所取代。我们之前已经表明,在果蝇中,沉积的RNA结合蛋白ME31B、Cup和Trailer Hitch(TRAL)被CTLH E3连接酶泛素化并清除。然而,在果蝇中,CTLH复合物的组织和调控仍知之甚少。特别是,它缺乏一个可识别的底物衔接蛋白,并且将ME31B及其辅因子的降解限制在MZT阶段的机制尚不清楚。在这里,我们表明CTLH复合物的发育特异性是由多方面的调控介导的,包括转录因子OVO的转录控制和E3连接酶的自抑制。一个主要的调控靶点是亚基肌动蛋白结合蛋白,我们证明它作为CTLH复合物的底物衔接蛋白发挥作用。尽管肌动蛋白结合蛋白具有保守性,但它在其他物种中具有结构作用,这表明它具有惊人的功能可塑性。最后,我们发现肌动蛋白结合蛋白除了三个已知的RNA结合蛋白外几乎没有其他靶点,显示出精确的靶点特异性。因此,多层次的综合调控将胚胎CTLH复合物的活性限制在早期胚胎发育阶段,其目的似乎是调控三个重要的RNA结合蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21e7/11244905/24b0647f43cf/nihpp-2024.06.28.601265v1-f0001.jpg

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