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The CR3 motif of Rrp44p is important for interaction with the core exosome and exosome function

机译:Rrp44p的CR3基序对于与核心外泌体和外泌体功能的相互作用非常重要

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The 10-subunit RNA exosome is involved in a large number of diverse RNA processing and degradation events in eukaryotes. These reactions are carried out by the single catalytic subunit, Rrp44p/Dis3p, which is composed of three parts that are conserved throughout eukaryotes. The exosome is named for the 3′ to 5′ exoribonuclease activity provided by a large C-terminal region of the Rrp44p subunit that resembles other exoribonucleases. Rrp44p also contains an endoribonuclease domain. Finally, the very N-terminus of Rrp44p contains three Cys residues (CR3 motif) that are conserved in many eukaryotes but have no known function. These three conserved Cys residues cluster with a previously unrecognized conserved His residue in what resembles a metal-ion-binding site. Genetic and biochemical data show that this CR3 motif affects both endo- and exonuclease activity in vivo and both the nuclear and cytoplasmic exosome, as well as the ability of Rrp44p to associate with the other exosome subunits. These data provide the first direct evidence that the exosome-Rrp44p interaction is functionally important and also provides a molecular explanation for the functional defects when the conserved Cys residues are mutated.
机译:10个亚单位的RNA外泌体参与了真核生物中大量多样的RNA加工和降解事件。这些反应由单个催化亚基Rrp44p / Dis3p进行,该亚基由三个部分组成,在整个真核生物中都保守。该外泌体因类似于其他外切核糖核酸酶的Rrp44p亚基的大C端区域提供的3'至5'外切核糖核酸酶活性而命名。 Rrp44p还包含一个核糖核酸内切酶域。最后,Rrp44p的N末端包含三个Cys残基(CR3基序),这些残基在许多真核生物中都是保守的,但功能未知。这三个保守的Cys残基在类似于金属离子结合位点的位置带有一个先前无法识别的保守His残基。遗传和生化数据表明,该CR3基序既影响体内核酸内切酶和核酸外切酶的活性,也影响核和细胞质外泌体,以及Rrp44p与其他外泌体亚基缔合的能力。这些数据提供了外来体-Rrp44p相互作用在功能上很重要的第一个直接证据,也为保守的Cys残基突变时的功能缺陷提供了分子解释。

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