首页> 美国卫生研究院文献>Nucleic Acids Research >Deinococcus radiodurans RNA ligase exemplifies a novel ligase clade with a distinctive N-terminal module that is important for 5′-PO4 nick sealing and ligase adenylylation but dispensable for phosphodiester formation at an adenylylated nick
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Deinococcus radiodurans RNA ligase exemplifies a novel ligase clade with a distinctive N-terminal module that is important for 5′-PO4 nick sealing and ligase adenylylation but dispensable for phosphodiester formation at an adenylylated nick

机译:放射球菌RNA连接酶以具有独特的N-末端模块的新型连接酶进化枝为例该模块对5-PO4切口密封和连接酶腺苷化很重要但对于在腺苷酸化切口处形成磷酸二酯却是必需的

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摘要

Deinococcus radiodurans RNA ligase (DraRnl) is a template-directed ligase that seals nicked duplexes in which the 3′-OH strand is RNA. DraRnl is a 342 amino acid polypeptide composed of a C-terminal adenylyltransferase domain fused to a distinctive 126 amino acid N-terminal module (a putative OB-fold). An alanine scan of the C domain identified 9 amino acids essential for nick ligation, which are located within nucleotidyltransferase motifs I, Ia, III, IIIa, IV and V. Seven mutants were dysfunctional by virtue of defects in ligase adenylylation: T163A, H167A, G168A, K186A, E230A, F281A and E305A. Four of these were also defective in phosphodiester formation at a preadenylylated nick: G168A, E230A, F281A and E305A. Two nick sealing-defective mutants were active in ligase adenylylation and sealing a preadenylylated nick, thereby implicating Ser185 and Lys326 in transfer of AMP from the enzyme to the nick 5′-PO4. Whereas deletion of the N-terminal domain suppressed overall nick ligation and ligase adenylylation, it did not compromise sealing at a preadenylylated nick. Mutational analysis of 15 residues of the N domain identified Lys26, Gln31 and Arg79 as key constituents. Structure–activity relationships at the essential residues were determined via conservative substitutions. We propose that DraRnl typifies a new clade of polynucleotide ligases. DraRnl homologs are detected in several eukaryal proteomes.
机译:放射球菌(Deinococcus radiodurans)RNA连接酶(DraRnl)是模板导向的连接酶,可密封有切口的双链体,其中3'-OH链为RNA。 DraRn1是一种342个氨基酸的多肽,由与独特的126个氨基酸的N末端模块(假定的OB折叠)融合的C末端腺苷酸转移酶结构域组成。 C域的丙氨酸扫描确定了9个缺口连接所必需的氨基酸,它们位于核苷酸转移酶基序I,Ia,III,IIIa,IV和V中。由于连接酶腺苷酸化的缺陷,七个突变体功能失调:T163A,H167A, G168A,K186A,E230A,F281A和E305A。其中四个在腺苷酸化前切口的磷酸二酯形成方面也存在缺陷:G168A,E230A,F281A和E305A。两个缺口密封缺陷的突变体在连接酶腺苷酸化和封闭前腺苷酸化的缺口中具有活性,从而暗示Ser185和Lys326参与了AMP从酶向缺口5'-PO4的转移。尽管N末端结构域的缺失抑制了整体切口连接和连接酶腺苷酸化,但它不损害前腺苷酸化切口处的密封。 N域的15个残基的突变分析确定Lys26,Gln31和Arg79为关键成分。通过保守取代确定基本残基的结构活性关系。我们建议DraRnl代表多核苷酸连接酶的新进化枝。在几个真核蛋白质组中检测到DraRnl同源物。

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