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Defining essential elements and genetic interactions of the yeast Lsm2-8 ring and demonstration that essentiality of Lsm2-8 is bypassed via overexpression of U6 snRNA or the U6 snRNP subunit Prp24

机译:定义酵母LSM2-8环的基本要素和遗传相互作用,并通过U6 SnRNA的过表达或U6 SNRNP亚基PRP24旁路LSM2-8的物质.PRP24

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A seven-subunit Lsm2-8 protein ring assembles on the U-rich 3' end of the U6 snRNA. A structure-guided mutational analysis of the Saccharomyces cerevisiae Lsm2-8 ring affords new insights to structure-function relations and genetic interactions of the Lsm subunits. Alanine scanning of 39 amino acids comprising the RNA-binding sites or intersubunit interfaces of Lsm2, Lsm3, Lsm4, Lsm5, and Lsm8 identified only one instance of lethality (Lsm3-R69A) and one severe growth defect (Lsm2-R63A), both involving amino acids that bind the 3'-terminal UUU trinucleotide. All other Ala mutations were benign with respect to vegetative growth. Tests of 235 pairwise combinations of benign Lsm mutants identified six instances of inter-Lsm synthetic lethality and 45 cases of nonlethal synthetic growth defects. Thus, Lsm2-8 ring function is buffered by a network of internal genetic redundancies. A salient finding was that otherwise lethal single-gene deletions Ism2 Delta, Ism3 Delta, Ism4 Delta, Isms, and Ism8 Delta were rescued by overexpression of U6 snRNA from a high-copy plasmid. Moreover, U6 overexpression rescued myriad IsmA IsmA double-deletions and IsmA IsmA IsmA triple-deletions. We find that U6 overexpression also rescues a lethal deletion of the U6 snRNP protein subunit Prp24 and that Prp24 overexpression bypasses the essentiality of the U6-associated Lsm subunits. Our results indicate that abetting U6 snRNA is the only essential function of the yeast Lsm2-8 proteins.
机译:七亚单位LSM2-8蛋白质环组合在U6 SnRNA的U-Rich 3'末端。 Saccharomyces Cerevisiae LSM2-8环的结构引导突变分析提供了对LSM亚基的结构功能关系和遗传相互作用的新见解。丙氨酸扫描39个氨基酸,包括LSM2,LSM3,LSM4,LSM5和LSM8的RNA结合位点或IntersubUnit界面,并且LSM8仅涉及一种致死性(LSM3-R69A)和一个严重生长缺陷(LSM2-R63A)的一个实例结合3'-末端UUU三核苷酸的氨基酸。所有其他ALA突变都对营养生长良好。良性LSM突变体的235个成对组合的测试确定了六种患者间合成致死性和45例的非致力合成生长缺陷。因此,LSM2-8环函数被内部遗传冗余网络缓冲。突出的发现是,否则致命的单基因缺失是ISM2δ,ISM3 Delta,ISM4δ,ISMS和ISM8δ从高拷贝质粒过表达抵抗U6 SnRNA。此外,U6过度表达救出了无数的ISMA ISMA双删除和ISMA ISMA ISMA Triple-删除。我们发现U6过表达还抵押U6 SNRNP蛋白亚基PRP24的致死缺失,并且PRP24过表达绕过U6相关LSM亚基的基本性。我们的结果表明,教唆U6 SnRNA是酵母LSM2-8蛋白的唯一基本功能。

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