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首页> 外文期刊>RNA >The crystal structure of S. cerevisiae Ski2, a DExH helicase associated with the cytoplasmic functions of the exosome.
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The crystal structure of S. cerevisiae Ski2, a DExH helicase associated with the cytoplasmic functions of the exosome.

机译:酿酒酵母Ski2的晶体结构,一种DExH解旋酶,与外泌体的胞质功能有关。

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Ski2 is a cytoplasmic RNA helicase that functions together with the exosome in the turnover and quality control of mRNAs. Ski2 is conserved in eukaryotes and is related to the helicase Mtr4, a cofactor of the nuclear exosome involved in the processing and quality control of a variety of structured RNAs. We have determined the 2.4 A resolution crystal structure of the 113 kDa helicase region of Saccharomyces cerevisiae Ski2. The structure shows that Ski2 has an overall architecture similar to that of Mtr4, with a core DExH region and an extended insertion domain. The insertion is not required for the formation of the Ski2-Ski3-Ski8 complex, but is instead an RNA-binding domain. While this is reminiscent of the Mtr4 insertion, there are specific structural and biochemical differences between the two helicases. The insertion of yeast Mtr4 consists of a beta-barrel domain that is flexibly attached to a helical stalk, contains a KOW signature motif, and binds in vitro-transcribed tRNA(i)(Met), but not single-stranded RNA. The beta-barrel domain of yeast Ski2 does not contain a KOW motif and is tightly packed against the helical stalk, forming a single structural unit maintained by a zinc-binding site. Biochemically, the Ski2 insertion has broad substrate specificity, binding both single-stranded and double-stranded RNAs. We speculate that the Ski2 and Mtr4 insertion domains have evolved with different properties tailored to the type of transcripts that are the substrates of the cytoplasmic and nuclear exosome.
机译:Ski2是一种胞质RNA解旋酶,它与外来体一起在mRNA的转换和质量控制中起作用。 Ski2在真核生物中是保守的,与解旋酶Mtr4有关,解旋酶Mtr4是核外体的辅因子,参与各种结构化RNA的加工和质量控制。我们已经确定了酿酒酵母Ski2的113 kDa解旋酶区域的2.4 A分辨率晶体结构。该结构显示,Ski2具有类似于Mtr4的总体架构,具有核心DExH区和扩展的插入域。插入不是形成Ski2-Ski3-Ski8复合体所必需的,而是RNA结合域。虽然这让人想起Mtr4插入,但两种解旋酶之间存在特定的结构和生化差异。酵母Mtr4的插入由一个β桶结构域组成,该结构域灵活地连接到螺旋茎上,包含一个KOW签名基序,并与体外转录的tRNA(i)(Met)结合,但不结合单链RNA。酵母Ski2的β-桶状结构域不包含KOW基序,并且紧紧缠绕在螺旋茎上,形成由锌结合位点维持的单个结构单元。从生化角度看,Ski2插入具有广泛的底物特异性,可结合单链和双链RNA。我们推测,Ski2和Mtr4插入域已经进化出了不同的特性,这些特性适合作为细胞质和核外泌体底物的转录物类型。

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