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RNA套索去分支与Ty1元件逆转录转座之间的关系。

Relationship between RNA lariat debranching and Ty1 element retrotransposition.

作者信息

Salem Laura A, Boucher Christopher L, Menees Thomas M

机构信息

School of Biological Sciences, University of Missouri-Kansas City, Kansas City, Missouri 64110, USA.

出版信息

J Virol. 2003 Dec;77(23):12795-806. doi: 10.1128/jvi.77.23.12795-12806.2003.

Abstract

The Saccharomyces cerevisiae DBR1 gene encodes a 2'-5' phosphodiesterase that debranches intron RNA lariats following splicing. Yeast dbr1 mutants accumulate intron lariats and are also defective for mobility of the retrotransposons Ty1 and Ty3. We used a mutagenic PCR method to generate a collection of dbr1 mutant alleles to explore the relationship between the roles of DBR1 in transposition and debranching. Eight mutants defective for Ty1 transposition contained single amino acid changes in Dbr1p. Two mutations, G84A and N85D, are in a conserved phosphoesterase motif that is believed to be part of the active site of the enzyme, supporting a connection between enzymatic activity and Ty1 transposition. Two other mutations, Y68F and Y68D, occur at a potential phosphorylation site, and we have shown that Dbr1p is phosphorylated on tyrosine. We have developed an RNase protection assay to quantitate intron RNA accumulation in cells. The assay uses RNA probes that hybridize to ACT1 intron RNA. Protection patterns confirm that sequences from the 5' end of the intron to the lariat branch point accumulate in dbr1 mutants in a branched (lariat) conformation. RNase protection assays indicate that all of the newly generated dbr1 mutant alleles are also deficient for debranching, further supporting a role for 2'-5' phosphodiesterase activity in Ty1 transposition. A Ty1 element lacking most of its internal sequences transposes independently of DBR1. The existence of Dbr1p-dependent Ty1 sequences raises the possibility that Dbr1p acts on Ty1 RNA.

摘要

酿酒酵母DBR1基因编码一种2'-5'磷酸二酯酶,该酶在剪接后去除内含子RNA套索。酵母dbr1突变体积累内含子套索,并且在逆转座子Ty1和Ty3的移动性方面也存在缺陷。我们使用诱变PCR方法生成了一系列dbr1突变等位基因,以探索DBR1在转座和去分支作用之间的关系。八个对Ty1转座有缺陷的突变体在Dbr1p中含有单个氨基酸变化。两个突变,G84A和N85D,位于一个保守的磷酸酯酶基序中,该基序被认为是酶活性位点的一部分,支持了酶活性与Ty1转座之间的联系。另外两个突变,Y68F和Y68D,发生在一个潜在的磷酸化位点,并且我们已经表明Dbr1p在酪氨酸上被磷酸化。我们开发了一种核糖核酸酶保护分析方法来定量细胞内内含子RNA的积累。该分析使用与ACT1内含子RNA杂交的RNA探针。保护模式证实,从内含子5'端到套索分支点的序列在dbr1突变体中以分支(套索)构象积累。核糖核酸酶保护分析表明,所有新产生的dbr1突变等位基因在去分支方面也存在缺陷,进一步支持了2'-5'磷酸二酯酶活性在Ty1转座中的作用。一个缺少大部分内部序列的Ty1元件独立于DBR1进行转座。依赖Dbr1p的Ty1序列的存在增加了Dbr1p作用于Ty1 RNA的可能性。

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