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克氏锥虫中微小环编码的引导RNA的组织与复杂性

Organization and complexity of minicircle-encoded guide RNAs in Trypanosoma cruzi.

作者信息

Avila H A, Simpson L

机构信息

Department of Biology, University of California at Los Angeles 90095-1662, USA.

出版信息

RNA. 1995 Nov;1(9):939-47.

Abstract

The previously observed extensive sequence heterogeneity of the kinetoplast minicircle DNA in Trypanosoma cruzi, both intra- and interstrain, has raised the question as to how the minicircle DNA in this species can have any guide RNA (gRNA)-coding capacity at all, because there do not appear to be any variable-region sequences conserved between different strains. To address this question, we obtained the complete edited sequence of maxicircle unidentified reading frame 4 mRNA and identified 25 cognate gRNAs from gRNA libraries constructed from two clonal strains of T. cruzi--Sylvio X10/CL1 and CAN III/CL1. Libraries of PCR-amplified minicircle-variable regions were also constructed for both strains. A single gene for each gRNA was identified in the same polarity within specific minicircle-variable regions from both strains, 60-100 nt downstream from the conserved 12mer sequence. GTP-capped total gRNA from one strain failed to cross-hybridize with minicircle DNA from the other strain. The explanation for this proved to be the number of polymorphisms, mainly transitions, within the homologous gRNAs in the two strains. In most cases, these transitions did not destroy the edited mRNA/gRNA base pairing, as a result of the allowed G-U wobble base pairing. The sequences of the variable regions containing homologous gRNAs in the two strains probably derived from an ancestral sequence, and each has accumulated sufficient polymorphisms so as not to allow hybridization. Within a strain, multiple redundant gRNAs were identified that encode identical editing information but have different sequences.

摘要

此前观察到,克氏锥虫动质体小环DNA在菌株内和菌株间均存在广泛的序列异质性,这就引发了一个问题:该物种的小环DNA究竟如何具备任何指导RNA(gRNA)编码能力,因为不同菌株之间似乎不存在保守的可变区序列。为了解决这个问题,我们获得了大环未识别阅读框4 mRNA的完整编辑序列,并从由克氏锥虫的两个克隆菌株——西尔维奥X10/CL1和CAN III/CL1构建的gRNA文库中鉴定出25种同源gRNA。还为这两个菌株构建了PCR扩增的小环可变区文库。在两个菌株特定的小环可变区内,在保守的12聚体序列下游60 - 100 nt处,以相同极性鉴定出了每个gRNA的单个基因。来自一个菌株的GTP加帽的总gRNA未能与另一个菌株的小环DNA交叉杂交。事实证明,原因是两个菌株同源gRNA内的多态性数量,主要是转换。在大多数情况下,由于允许的G - U摆动碱基配对,这些转换并未破坏编辑后的mRNA/gRNA碱基配对。两个菌株中包含同源gRNA的可变区序列可能源自一个祖先序列,并且每个序列都积累了足够的多态性,以至于不允许杂交。在一个菌株内,鉴定出了多个冗余的gRNA,它们编码相同的编辑信息,但序列不同。

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