Three-Dimensional Structure of Mannosyl-3-phosphoglycerate Phosphatase from Thermus thermophilus HB27: A New Member of the Haloalcanoic Acid Dehalogenase Superfamily

被引:8
作者
Goncalves, Susana [1 ]
Esteves, Ana M. [1 ]
Santos, Helena [1 ]
Borges, Nuno [1 ]
Matias, Pedro M. [1 ]
机构
[1] Univ Nova Lisboa, ITQB, P-2781901 Oeiras, Portugal
关键词
TRANSITION-STATE ANALOG; PROTEIN-STRUCTURE; SECONDARY-STRUCTURE; COMPATIBLE SOLUTES; DIFFRACTION DATA; ACTIVE-SITE; MANNOSYLGLYCERATE; INTERMEDIATE; PHOSPHORYL; ROTATION;
D O I
10.1021/bi201171h
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mannosyl-3-phosphoglycerate phosphatase (MpgP) is a key mediator in the physiological response to thermal and osmotic stresses, catalyzing the hydrolysis of mannosyl-3-phosphoglycerate (MPG) to the final product, a-mannosylglycerate. MpgP is a metal-dependent haloalcanoic acid dehalogenase-like (HAD-like) phosphatase, preserving the catalytic motifs I TV of the HAD core domain, and classified as a Cof-type MPGP (HAD-IIB-MPGP family; SCOP [117505]) on the basis of its C2B cap insertion module. Herein, the crystallographic structures of Therms thermophilus HB27 MpgP in its apo form and in complex with substrates, substrate analogues, and inhibitors are reported. Two distinct enzyme conformations, open and closed, are catalytically relevant. Apo-MpgP is primarily found in the open state, while holo-MpgP, in complex with the reaction products, is found in the dosed state. Enzyme activation entails a structural rearrangement of motifs I and IV with concomitant binding of the cocatalytic Mg2+ ion. The closure motion of the C2B domain is subsequently triggered by the anchoring of the phosphoryl group to the cocatalytic metal center, and by Arg167 fixing the mannosyl moiety inside the catalytic pocket. The results led to the proposal that in T. thermophilus HB27 MpgP the phosphoryl transfer employs a concerted DNSN mechanism with assistance of proton transfer from the general acid Asp8, forming a short-lived PO3- intermediate that is attacked by a nucleophilic water molecule. These results provide new insights into a possible continuum of phosphoryl transfer mechanisms, ranging between those purely associative and dissociative, as well as a picture of the main mechanistic aspects of phosphoryl monoester transfer catalysis, common to other members of the HAD superfamily.
引用
收藏
页码:9551 / 9567
页数:17
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