首页> 外文期刊>Journal of Structural Biology >Structural basis for recognition and ring-cleavage of the Pseudomonas quinolone signal (PQS) by AqdC, a mycobacterial dioxygenase of the alpha/beta-hydrolase fold family
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Structural basis for recognition and ring-cleavage of the Pseudomonas quinolone signal (PQS) by AqdC, a mycobacterial dioxygenase of the alpha/beta-hydrolase fold family

机译:通过AQDC,AQDC,AQDC,α/β水解酶折叠家族的分枝杆菌二氧化根酶的识别和环形裂解的结构基础

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摘要

The cofactor-less dioxygenase AqdC of Mycobacteroides abscessus catalyzes the cleavage and thus inactivation of the Pseudomonas quinolone signal (PQS, 2-heptyl-3-hydroxy-4(1H)-quinolone), which plays a central role in the regulation of virulence factor production by Pseudomonas aeruginosa. We present here the crystal structures of AqdC in its native state and in complex with the PQS cleavage product N-octanoylanthranilic acid, and of mutant AqdC proteins in complex with PQS. AqdC possesses an alpha/beta-hydrolase fold core domain with additional helices forming a cap domain. The protein is traversed by a bipartite tunnel, with a funnel-like entry section leading to an elliptical substrate cavity where PQS positioning is mediated by a combination of hydrophobic interactions and hydrogen bonds, with the substrate's C4 carbonyl and C3 hydroxyl groups tethered by His97 and the catalytic His246, respectively. The side chain of the AqdC-bound product extends deeper into the "alkyl tail section" of the tunnel than PQS, tentatively suggesting product exit via this part of the tunnel. AqdC prefers PQS over congeners with shorter alkyl substituents at C2. Kinetic data confirmed the strict requirement of the active-site base His246 for catalysis, and suggested that evolution of the canonical nucleophile/His/Asp catalytic triad of the hydrolases to an Ala/His/Asp triad is favorable for catalyzing dioxygenolytic PQS ring cleavage.
机译:Cofoctor-较少的二氧化二恶英脓毒症脓肿症缺乏裂解,从而灭活假单胞菌喹诺酮信号(PQS,2-庚基-3-羟基-4(1H)-Quinolone),其在毒力因子的调节中起着核心作用Pseudomonas Aeruginosa生产。我们在此呈现AQDC在其天然状态的晶体结构和与PQS切割产物正辛酸甲苯酸和突变体AQDC蛋白与PQS复合物的晶体结构。 AQDC具有α/β-水解酶折叠核心结构域,其具有形成帽结构域的额外螺旋。通过双链隧道穿过蛋白质,其具有漏斗状进入部分,其通向椭圆形基板腔,其中PQS定位通过疏水相互作用和氢键的组合介导,基板的C4羰基和C3羟基由HIS97和C3羟基介导催化HIS246分别。 AQDC绑定产品的侧链延伸到隧道的“烷基尾部”的比PQs延伸到隧道的“烷基尾部”,暂时暗示产品出口通过该部分隧道。 AQDC在C2的烷基取代基的同伴中更喜欢PQs。动力学数据证实了对催化的主题基础HIS246的严格要求,并提出了典型的亲核试剂/他/ ASP催化三合会的水解酶与ALA / HI / ASP三合会的演变是有利的,催化DiOxyGenolytic PQS环切割是有利的。

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