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首页> 外文期刊>RNA >Structure-function analysis and genetic interactions of the Yhc1, SmD3, SmB, and Snp1 subunits of yeast U1 snRNP and genetic interactions of SmD3 with U2 snRNP subunit Lea1
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Structure-function analysis and genetic interactions of the Yhc1, SmD3, SmB, and Snp1 subunits of yeast U1 snRNP and genetic interactions of SmD3 with U2 snRNP subunit Lea1

机译:酵母U1 snRNP的Yhc1,SmD3,SmB和Snp1亚基的结构功能分析和遗传相互作用以及SmD3与U2 snRNP亚基Lea1的遗传相互作用

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摘要

Yhc1 and U1-C are essential subunits of the yeast and human U1 snRNP, respectively, that stabilize the duplex formed by U1 snRNA at the pre-mRNA 5' splice site (5'SS). Mutational analysis of Yhc1, guided by the human U1 snRNP crystal structure, highlighted the importance of Val20 and Ser19 at the RNA interface. Though benign on its own, V20A was lethal in the absence of branchpoint-binding complex subunit Mud2 and caused a severe growth defect in the absence of U1 subunit Nam8. S19A caused a severe defect with mud2 Delta. Essential DEAD-box ATPase Prp28 was bypassed by mutations of Yhc1 Val20 and Ser19, consistent with destabilization of U1.5'SS interaction. We extended the genetic analysis to SmD3, which interacts with U1-C/Yhc1 in U1 snRNP, and to SmB, its neighbor in the Sm ring. Whereas mutations of the interface of SmD3, SmB, and U1-C/Yhc1 with U1-70K/Snp1, or deletion of the interacting Snp1 N-terminal peptide, had no growth effect, they elicited synthetic defects in the absence of U1 subunit Mud1. Mutagenesis of the RNA-binding triad of SmD3 (Ser-Asn-Arg) and SmB (His-Asn-Arg) provided insights to built-in redundancies of the Sm ring, whereby no individual side-chain was essential, but simultaneous mutations of Asn or Arg residues in SmD3 and SmB were lethal. Asn-to-Ala mutations SmB and SmD3 caused synthetic defects in the absence of Mud1 or Mud2. All three RNA site mutations of SmD3 were lethal in cells lacking the U2 snRNP subunit Lea1. Benign C-terminal truncations of SmD3 were dead in the absence of Mud2 or Lea1 and barely viable in the absence of Nam8 or Mud1. In contrast, SMD3-E35A uniquely suppressed the temperature-sensitivity of lea1 Delta.
机译:Yhc1和U1-C分别是酵母和人U1 snRNP的重要亚基,可稳定U1 snRNA在前mRNA 5'剪接位点(5'SS)形成的双链体。在人类U1 snRNP晶体结构的指导下,Yhc1的突变分析突出了Val20和Ser19在RNA界面上的重要性。尽管它本身是良性的,但在不存在结合分支点的复合亚基Mud2的情况下,V20A具有致死性,而在不存在U1亚基Nam8的情况下,会导致严重的生长缺陷。 S19A造成了严重的缺陷,包括mud2 Delta。必需的DEAD-box ATPase Prp28被Yhc1 Val20和Ser19的突变所绕过,这与U1.5'SS相互作用的不稳定相一致。我们将遗传分析扩展到了SmD3,后者与U1 snRNP中的U1-C / Yhc1相互作用,并扩展到了SmB,它在Sm环中的邻居。尽管SmD3,SmB和U1-C / Yhc1与U1-70K / Snp1的界面突变或相互作用的Snp1 N末端肽的缺失均无生长效应,但在没有U1亚基Mud1的情况下,它们引起了合成缺陷。 。 SmD3(Ser-Asn-Arg)和SmB(His-Asn-Arg)的RNA结合三联体的诱变为Sm环的内在冗余提供了见解,因此没有单独的侧链是必不可少的,但同时突变SmD3和SmB中的Asn或Arg残基具有致命性。从Asn到Ala的SmB和SmD3突变在没有Mud1或Mud2的情况下引起合成缺陷。 SmD3的所有三个RNA站点突变在缺乏U2 snRNP亚基Lea1的细胞中具有致死性。在没有Mud2或Lea1的情况下,SmD3的良性C末端截短会死亡,而在没有Nam8或Mud1的情况下几乎无法存活。相反,SMD3-E35A独特地抑制了lea1 Delta的温度敏感性。

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