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首页> 外文期刊>Biochemistry >Crystal Structure of a Hyperthermophilic Archaeal Acylphosphatase from Pyrococcus horikoshii-Structural Insights into Enzymatic Catalysis,Thermostability,and Dimerization
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Crystal Structure of a Hyperthermophilic Archaeal Acylphosphatase from Pyrococcus horikoshii-Structural Insights into Enzymatic Catalysis,Thermostability,and Dimerization

机译:嗜热热球菌的高温嗜热古细菌酰基磷酸酶的晶体结构-酶催化,热稳定性和二聚化的结构见解

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Acylphosphatases catalyze the hydrolysis of the carboxyl-phosphate bond in acyl phosphates.Although acylphosphatase-like sequences are found in all three domains of life,no structure of acylphosphatase has been reported for bacteria and archaea so far.Here,we report the characterization of enzymatic activities and crystal structure of an archaeal acylphosphatase.A putative acylphosphatase gene(PhAcP) was cloned from the genomic DNA of Pyrococcus horikoshii and was expressed in Escherichia coli.Enzymatic parameters of the recombinant PhAcP were measured using benzoyl phosphate as the substrate.Our data suggest that,while PhAcP is less efficient than other mammalian homologues at 25 deg C,the thermophilic enzyme is fully active at the optimal growth temperature(98 deg C) of P.horikoshii.PhAcP is extremely stable;its apparent melting temperature was 111.5 deg C and free energy of unfolding at 25 deg C was 54 kJ mol~(-1).The 1.5 A crystal structure of PhAcP adopts an alpha/beta sandwich fold that is common to other acylphosphatases.PhAcP forms a dimer in the crystal structure via antiparallel association of strand 4.Structural comparison to mesophilic acylphosphatases reveals significant differences in the conformation of the L5 loop connecting strands 4 and 5.The extreme thermostability of PhAcP can be attributed to an extensive ion-pair network consisting of 13 charge residues on the beta sheet of the protein.The reduced catalytic efficiency of PhAcP at 25 deg C may be due to a less flexible active-site residue,Arg20,which forms a salt bridge to the C-terminal carboxyl group.New insights into catalysis were gained by docking acetyl phosphate to the active site of PhAcP.
机译:酰基磷酸酶催化酰基磷酸酯中羧基磷酸酯键的水解。尽管在生活的所有三个域中都发现了类似酰基磷酸酶的序列,但迄今为止,尚未报道细菌和古细菌的酰基磷酸酶的结构。在此,我们报道了酶的表征从古生热球菌基因组DNA中克隆了一个假定的酰基磷酸酶基因(PhAcP),并在大肠杆菌中表达,并以磷酸苯甲酰为底物,测定了重组PhAcP的酶学参数。虽然在25摄氏度时PhAcP的效率不如其他哺乳动物同系物,但嗜热酶在假单胞菌的最佳生长温度(98摄氏度)下具有充分的活性.PhAcP非常稳定;其表观融解温度为111.5摄氏度在25℃下展开的自由能为54 kJ mol〜(-1)。PhAcP的1.5 A晶体结构采用α/β夹心结构与其他酰基磷酸酶相同的ld.PhAcP通过链4的反平行缔合在晶体结构中形成二聚体。与中温酰基磷酸酶的结构比较显示,连接链4和5的L5环的构象存在显着差异。归因于广泛的离子对网络,该网络由蛋白质的β片层上的13个电荷残基组成。PhAcP在25℃时降低的催化效率可能是由于活性位点残基Arg20的柔性较弱而形成盐通过将乙酰磷酸对接至PhAcP的活性位点获得了对催化的新见解。

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