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酵母信号识别颗粒的Alu结构域同源物由一个Srp14p同型二聚体和一个酵母特异性RNA结构组成。

The Alu domain homolog of the yeast signal recognition particle consists of an Srp14p homodimer and a yeast-specific RNA structure.

作者信息

Strub K, Fornallaz M, Bui N

机构信息

Département de Biologie Cellulaire, Université de Genève, Sciences III, Switzerland.

出版信息

RNA. 1999 Oct;5(10):1333-47. doi: 10.1017/s1355838299991045.

Abstract

The mammalian Alu domain of the signal recognition particle (SRP) consists of a heterodimeric protein SRP9/14 and the Alu portion of 7SL RNA and comprises the elongation arrest function of the particle. To define the domain in Saccharomyces cerevisiae SRP that is homologous to the mammalian Alu domain [Alu domain homolog in yeast (Adhy)], we examined the assembly of a yeast protein homologous to mammalian SRP14 (Srp14p) and scR1 RNA. Srp14p binds as a homodimeric complex to the 5' sequences of scR1 RNA. Its minimal binding site consists of 99 nt. (Adhy RNA), comprising a short hairpin structure followed by an extended stem. As in mammalian SRP9/14, the motif UGUAAU present in most SRP RNAs is part of the Srp14p binding sites as shown by footprint and mutagenesis studies. In addition, certain basic amino acid residues conserved between mammalian SRP14 and Srp14p are essential for RNA binding in both proteins. These findings confirm the common ancestry of the yeast and the mammalian components and indicate that Srp14p together with Adhy RNA represents the Alu domain homolog in yeast SRP that may comprise its elongation arrest function. Despite the similarities, Srp14p selectively recognizes only scR1 RNA, revealing substantial changes in RNA-protein recognition as well as in the overall structure of the complex. The alignment of the three yeast SRP RNAs known to date suggests a common structure for the putative elongation arrest domain of all three organisms.

摘要

信号识别颗粒(SRP)的哺乳动物Alu结构域由异源二聚体蛋白SRP9/14和7SL RNA的Alu部分组成,并包含该颗粒的延伸阻滞功能。为了确定酿酒酵母SRP中与哺乳动物Alu结构域同源的结构域[酵母中的Alu结构域同源物(Adhy)],我们研究了与哺乳动物SRP14(Srp14p)同源的酵母蛋白和scR1 RNA的组装。Srp14p以同源二聚体复合物的形式与scR1 RNA的5'序列结合。其最小结合位点由99个核苷酸(Adhy RNA)组成,包括一个短发夹结构,后面跟着一个延伸的茎。与哺乳动物SRP9/14一样,大多数SRP RNA中存在的UGUAAU基序是Srp14p结合位点的一部分,足迹和诱变研究表明了这一点。此外,哺乳动物SRP14和Srp14p之间保守的某些碱性氨基酸残基对于这两种蛋白质的RNA结合至关重要。这些发现证实了酵母和哺乳动物成分的共同祖先,并表明Srp14p与Adhy RNA一起代表酵母SRP中的Alu结构域同源物,可能包含其延伸阻滞功能。尽管存在相似性,但Srp14p仅选择性识别scR1 RNA,这揭示了RNA-蛋白质识别以及复合物整体结构的实质性变化。迄今为止已知的三种酵母SRP RNA的比对表明,所有三种生物体的推定延伸阻滞结构域具有共同结构。

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