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不同纤毛虫的端粒酶RNA具有共同的二级结构和重排模板。

Telomerase RNAs of different ciliates have a common secondary structure and a permuted template.

作者信息

Lingner J, Hendrick L L, Cech T R

机构信息

Howard Hughes Medical Institute, Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.

出版信息

Genes Dev. 1994 Aug 15;8(16):1984-98. doi: 10.1101/gad.8.16.1984.

Abstract

Telomerase is composed of protein and RNA. The RNA serves as a template for telomere DNA synthesis and may also be important for enzyme structure or catalysis. We have used the presence of conserved sequence elements in the promoter and template regions to amplify by PCR the telomerase RNA genes from six different hypotrichous ciliates: Oxytricha nova, Oxytricha trifallax, Stylonychia mytilis, Stylonychia lemnae, Euplotes aediculatus, and Euplotes eurystomus. RNaseH cleavage of the O. nova RNA in extracts by use of a complementary oligonucleotide leads to loss of telomerase activity, supporting the identification. Primary sequence and biochemical experiments suggest that the templates of Oxytricha and Stylonychia are circularly permuted relative to that of E. aediculatus. On the basis of the pause sites, the former two add G4T4 during a single primer elongation cycle, whereas E. aediculatus adds G3T4G. The only primary sequence element outside the template that is conserved between these phylogenetically distant telomerase RNAs is the sequence 5'-(C)UGUCA-3', which precedes the template regions by exactly two bases. We propose a common secondary structure model that is based on nucleotide covariations, a model which resembles that proposed previously for tetrahymenine telomerase RNAs.

摘要

端粒酶由蛋白质和RNA组成。RNA作为端粒DNA合成的模板,对酶的结构或催化作用可能也很重要。我们利用启动子和模板区域中保守序列元件的存在,通过聚合酶链反应(PCR)从六种不同的下毛目纤毛虫中扩增端粒酶RNA基因,这六种纤毛虫分别是:新奥xytricha nova、三裂oxytricha trifallax、贻贝状急纤虫Stylonychia mytilis、浮萍急纤虫Stylonychia lemnae、艾氏真核生物Euplotes aediculatus和宽口真核生物Euplotes eurystomus。利用互补寡核苷酸对提取物中的新奥xytricha nova RNA进行核糖核酸酶H切割,导致端粒酶活性丧失,支持了这一鉴定。一级序列和生化实验表明,oxytricha和Stylonychia的模板相对于艾氏真核生物Euplotes aediculatus的模板是环状排列的。基于暂停位点,前两者在单个引物延伸循环中添加G4T4,而艾氏真核生物Euplotes aediculatus添加G3T4G。在这些系统发育距离较远的端粒酶RNA之间,模板外唯一保守的一级序列元件是5'-(C)UGUCA-3'序列,它在模板区域之前正好两个碱基处。我们提出了一个基于核苷酸共变的共同二级结构模型,该模型类似于先前为四膜虫端粒酶RNA提出的模型。

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