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Xrn1p acts at multiple steps in the budding-yeast RNAi pathway to enhance the efficiency of silencing

机译:XRN1P在Budding-yeast RNAi途径中的多个步骤起作用,以提高沉默的效率

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摘要

RNA interference (RNAi) is a gene-silencing pathway that can play roles in viral defense, transposon silencing, heterochromatin formation and post-transcriptional gene silencing. Although absent from Saccharomyces cerevisiae, RNAi is present in other budding-yeast species, including Nau-movozyma castellii, which have an unusual Dicer and a conventional Argonaute that are both required for gene silencing. To identify other factors that act in the budding-yeast pathway, we performed an unbiased genetic selection. This selection identified Xrn1p, the cytoplasmic 5'-to-3' exoribonuclease, as a cofactor of RNAi in budding yeast. Deletion of XRN1 impaired gene silencing in N. castellii, and this impaired silencing was attributable to multiple functions of Xrn1p, including affecting the composition of siRNA species in the cell, influencing the efficiency of siRNA loading into Argonaute, degradation of cleaved passenger strand and degradation of sliced target RNA.
机译:RNA干扰(RNAi)是一种基因 - 沉默途径,可在病毒防御,转座子沉默,异铬胺形成和转录后基因沉默中发挥作用。 虽然Saccharomyces Cerevisiae缺席,但RNAi存在于其他萌芽酵母种类中,包括Nau-Movozyma Castellii,其具有异常的DICER和基因沉默所需的常规Argonaute。 为了识别在萌芽酵母途径中起作用的其他因素,我们进行了无偏遗传选择。 该选择鉴定了XRN1P,细胞质5'-TO-3'Axoribonuclease,作为萌芽酵母中RNAi的辅因子。 缺失XRN1受损基因沉默在N.Castellii中沉默,这种受损的沉默是归因于XRN1P的多种功能,包括影响细胞中siRNA种类的组成,影响siRNA装载到蚁长,裂解乘客链的降解的效率,降解 切片的靶标。

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