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Domain structure and three-dimensional model of a group II intron-encoded reverse transcriptase.

机译:II组内含子编码逆转录酶的域结构和三维模型。

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Group II intron-encoded proteins (IEPs) have both reverse transcriptase (RT) activity, which functions in intron mobility, and maturase activity, which promotes RNA splicing by stabilizing the catalytically active RNA structure. The LtrA protein encoded by the Lactococcus lactis Ll.LtrB group II intron contains an N-terminal RT domain, with conserved sequence motifs RT1 to 7 found in the fingers and palm of retroviral RTs; domain X, associated with maturase activity; and C-terminal DNA-binding and DNA endonuclease domains. Here, partial proteolysis of LtrA with trypsin and Arg-C shows major cleavage sites in RT1, and between the RT and X domains. Group II intron and related non-LTR retroelement RTs contain an N-terminal extension and several insertions relative to retroviral RTs, some with conserved features implying functional importance. Sequence alignments, secondary-structure predictions, and hydrophobicity profiles suggest that domain X is related structurally to the thumb of retroviral RTs. Three-dimensional models of LtrA constructed by "threading" the aligned sequence on X-ray crystal structures of HIV-1 RT (1) account for the proteolytic cleavage sites; (2) suggest a template-primer binding track analogous to that of HIV-1 RT; and (3) show that conserved regions in splicing-competent LtrA variants include regions of the RT and X (thumb) domains in and around the template-primer binding track, distal regions of the fingers, and patches on the protein's back surface. These regions potentially comprise an extended RNA-binding surface that interacts with different regions of the intron for RNA splicing and reverse transcription.
机译:II组内含子编码蛋白(IEP)具有内含子迁移功能的逆转录酶(RT)活性和通过稳定催化活性RNA结构促进RNA剪接的成熟酶活性。乳酸乳球菌L.LtrB II组内含子编码的LtrA蛋白含有一个N末端RT结构域,在逆转录病毒RTs的手指和手掌中具有保守的序列基序RT1至7。域X,与成熟酶活性有关;和C端DNA结合和DNA核酸内切酶结构域。在这里,LtrA用胰蛋白酶和Arg-C的部分蛋白水解显示RT1中以及RT和X结构域之间的主要切割位点。 II组内含子和相关的非LTR逆转录元件RTs包含一个N末端延伸和相对于逆转录病毒RTs的多个插入片段,其中一些具有保守的功能意味着功能上的重要性。序列比对,二级结构预测和疏水性分析表明,结构域X与逆转录病毒RT的结构相关。通过将HIV-1 RT的X射线晶体结构上的比对序列“穿线”构建的LtrA三维模型(1)解释了蛋白水解的裂解位点; (2)提出类似于HIV-1RT的模板-引物结合轨道; (3)显示具有剪接功能的LtrA变体中的保守区包括模板引物结合轨道内和周围的RT和X(拇指)结构域区域,手指的远侧区域以及蛋白质背面的补丁。这些区域可能包含一个延伸的RNA结合表面,该表面与内含子的不同区域相互作用以进行RNA剪接和逆转录。

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