首页> 外文期刊>Nucleic Acids Research >Crystal structure and mutational analysis of Mycobacterium smegmatis FenA highlight active site amino acids and three metal ions essential for flap endonuclease and 5' exonuclease activities
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Crystal structure and mutational analysis of Mycobacterium smegmatis FenA highlight active site amino acids and three metal ions essential for flap endonuclease and 5' exonuclease activities

机译:微晶结构和突变分析分枝杆菌Smogmatis Fena突出了活性位点氨基酸和三个金属离子对翼蛋白核酸酶和5'外切核酸酶活的必需品

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摘要

Mycobacterium smegmatis FenA is a nucleic acid phosphodiesterase with flap endonuclease and 5' exonuclease activities. The 1.8 angstrom crystal structure of FenA reported here highlights as its closest homologs bacterial FEN-family enzymes ExoIX, the Poll exonuclease domain and phage T5 Fen. Mycobacterial FenA assimilates three active site manganese ions (M1, M2, M3) that are coordinated, directly and via waters, to a constellation of eight carboxylate side chains. We find via mutagenesis that the carboxylate contacts to all three manganese ions are essential for FenA's activities. Structures of nuclease-dead FenA mutants D125N, D148N and D208N reveal how they fail to bind one of the three active site Mn2+ ions, in a distinctive fashion for each Asn change. The structure of FenA D208N with a phosphate anion engaged by M1 and M2 in a state mimetic of a product complex suggests a mechanism for metal-catalyzed phosphodiester hydrolysis similar to that proposed for human Exo1. A distinctive feature of FenA is that it does not have the helical arch module found in many other FEN/FEN-like enzymes. Instead, this segment of FenA adopts a unique structure comprising a short 3(10) helix and surface beta-loop that coordinates a fourth manganese ion (M4).
机译:分枝杆菌Smogmatis Fena是一种核酸磷酸二核苷酸酶,具有襟翼内切核酸酶和5'外核酸酶活性。 Fena的1.8埃晶晶结构据报道,这将亮点是其最近的同源物细菌芬芳酶Exoix,民意调查外核酸酶域和噬菌体T5 Fen。分枝杆菌FIA同化三种活性位点锰离子(M1,M2,M3),其直接和通过水协调为八个羧酸侧链的星座。我们通过诱变诱变,即对所有三个锰离子的羧酸盐接触对于Fena的活动至关重要。核酸酶 - 死费FEA突变体D125N,D148N和D208N的结构揭示了它们如何以每个ASN变化以独特的方式结合三个有源位点MN2 +离子之一。在产品复合物的态度模拟物中与M1和M2接合的磷酸盐阴离子的磷酸盐阴离子的结构表明了金属催化的磷酸二酯水解的机制与为人类EXO1提出的机制。 Fena的一个独特特征是它没有在许多其他FEN / FEN样酶中发现的螺旋拱模块。相反,该Fena的该段采用一种独特的结构,包括短3(10)螺旋和表面β环,其坐标,其协调第四锰离子(M4)。

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