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THE ROLE OF RNA STRUCTURE IN DETERMINING RNASE E-DEPENDENT CLEAVAGE SITES IN THE MESSENGER-RNA FOR RIBOSOMAL-PROTEIN S20 IN-VITRO
被引:57
|
作者
:
MACKIE, GA
论文数:
0
引用数:
0
h-index:
0
机构:
Department of Biochemistry, University of Western Ontario, London
MACKIE, GA
GENEREAUX, JL
论文数:
0
引用数:
0
h-index:
0
机构:
Department of Biochemistry, University of Western Ontario, London
GENEREAUX, JL
机构
:
[1]
Department of Biochemistry, University of Western Ontario, London
来源
:
JOURNAL OF MOLECULAR BIOLOGY
|
1993年
/ 234卷
/ 04期
关键词
:
RNASE-E;
RNA SECONDARY STRUCTURE;
RIBOSOMAL PROTEIN S20;
MESSENGER RNA STABILITY;
D O I
:
10.1006/jmbi.1993.1654
中图分类号
:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号
:
071010 ;
081704 ;
摘要
:
An RNA encompassing the 3′ 147 residues of the mRNA for ribosomal protein S20 in Escherichia coli constitutes a naturally occurring degradative intermediate whose formation depends on RNase E. We have investigated the role of internal stem-loop structures in the RNase E-dependent cleavage which generaes this product from S20 mRNA in a partially fractionated processing system in vitro. Individual stem-loops have been removed by deletion or destabilized by point mutations. No single hairpin structure is absolutely required for RNase E-dependent cleavage at the site 147 residues from the 3′ end of the RNA. Primary sequences or secondary structures 5′ or 3′ to this site exert only a modest influence on the specificity of cleavage but can strongly modify its rate. Moreover, mutations in the S20 mRNA which destabilize stems 5′ or 3′ to the prominent cleavage site also reveal several strong cryptic RNase E cleavage sites. These data greatly strengthen the hypothesis that RNase E is a single-strand specific endoribonuclease. Our data further demonstrate that stem-loop structures adjacent to the prominent cleavage site are unlikely to provide a site of recognition for RNase E. Rather, they appear to stabilize (or “anchor”) the local secondary structure so that the cleavage site is single-stranded and to occlude alternative sites so that the initial products of cleavage resist further attack. © 1993 Academic Press Limited.
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页码:998 / 1012
页数:15
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