Centre for Molecular Biology of Heidelberg University (ZMBH), Heidelberg, Germany.
Division of Immune Diversity, Deutsche Krebsforschungszentrum (DKFZ), Heidelberg, Germany.
Elife. 2021 Mar 30;10:e68136. doi: 10.7554/eLife.68136.
is the causative agent of human sleeping sickness. The parasites' variant surface glycoprotein (VSG) enables them to evade adaptive immunity via antigenic variation. VSG comprises 10% of total cell protein and the high stability of VSG mRNA is essential for trypanosome survival. To determine how VSG mRNA stability is maintained, we used mRNA affinity purification to identify all its associated proteins. CFB2 (cyclin F-box protein 2), an unconventional RNA-binding protein with an F-box domain, was specifically enriched with VSG mRNA. We demonstrate that CFB2 is essential for VSG mRNA stability, describe cis acting elements within the VSG 3'-untranslated region that regulate the interaction, identify trans-acting factors that are present in the VSG messenger ribonucleoprotein particle, and mechanistically explain how CFB2 stabilizes the mRNA of this key pathogenicity factor. Beyond , the mRNP purification approach has the potential to supply detailed biological insight into metabolism of relatively abundant mRNAs in any eukaryote.
是引起人类昏睡病的病原体。寄生虫的变异表面糖蛋白(VSG)使它们能够通过抗原变异逃避适应性免疫。VSG 占细胞总蛋白的 10%,VSG mRNA 的高稳定性对锥虫的存活至关重要。为了确定 VSG mRNA 的稳定性是如何维持的,我们使用 mRNA 亲和纯化来鉴定其所有相关蛋白。CFB2(细胞周期蛋白 F-box 蛋白 2)是一种具有 F-box 结构域的非常规 RNA 结合蛋白,与 VSG mRNA 特异性富集。我们证明 CFB2 对 VSG mRNA 的稳定性是必不可少的,描述了调节相互作用的 VSG 3'-非翻译区中的顺式作用元件,鉴定了存在于 VSG 信使核糖核蛋白颗粒中的反式作用因子,并从机制上解释了 CFB2 如何稳定这种关键致病因子的 mRNA。此外,mRNP 纯化方法有可能为任何真核生物中相对丰富的 mRNA 的代谢提供详细的生物学见解。