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弗氏柠檬酸杆菌酪氨酸酚裂解酶与3-(4'-羟基苯基)丙酸复合的晶体结构,结合定点突变和动力学分析,表明精氨酸381是底物特异性所必需的。

The crystal structure of Citrobacter freundii tyrosine phenol-lyase complexed with 3-(4'-hydroxyphenyl)propionic acid, together with site-directed mutagenesis and kinetic analysis, demonstrates that arginine 381 is required for substrate specificity.

作者信息

Sundararaju B, Antson A A, Phillips R S, Demidkina T V, Barbolina M V, Gollnick P, Dodson G G, Wilson K S

机构信息

Department of Chemistry, Center for Metalloenzyme Studies, University of Georgia, Athens 30602, USA.

出版信息

Biochemistry. 1997 May 27;36(21):6502-10. doi: 10.1021/bi962917+.

Abstract

The X-ray structure of tyrosine phenol-lyase (TPL) complexed with a substrate analog, 3-(4'-hydroxyphenyl)propionic acid, shows that Arg 381 is located in the substrate binding site, with the side-chain NH1 4.1 A from the 4'-OH of the analog. The structure has been deduced at 2.5 A resolution using crystals that belong to the P2(1)2(1)2 space group with a = 135.07 A, b = 143.91 A, and c = 59.80 A. To evaluate the role of Arg 381 in TPL catalysis, we prepared mutant proteins replacing arginine with alanine (R381A), with isoleucine (R381I), and with valine (R381V). The beta-elimination activity of R381A TPL has been reduced by 10(-4)-fold compared to wild type, whereas R381I and R381V TPL exhibit no detectable beta-elimination activity with L-tyrosine as substrate. However, R381A, R381I, and R381V TPL react with S-(o-nitrophenyl)-L-cysteine, beta-chloro-L-alanine, O-benzoyl-L-serine, and S-methyl-L-cysteine and exhibit k(cat) and k(cat)/Km values comparable to those of wild-type TPL. Furthermore, the Ki values for competitive inhibition by L-tryptophan and L-phenylalanine are similar for wild-type, R381A, and R381I TPL. Rapid-scanning-stopped flow spectroscopic analyses also show that wild-type and mutant proteins can bind L-tyrosine and form quinonoid complexes with similar rate constants. The binding of 3-(4'-hydroxyphenyl)propionic acid to wild-type TPL decreases at high pH values with a pKa of 8.4 and is thus dependent on an acidic group, possibly Arg404, which forms an ion pair with the analog carboxylate, or the pyridoxal 5'-phosphate Schiff base. R381A TPL shows only a small decrease in k(cat)/Km for tyrosine at lower pH, in contrast to wild-type TPL, which shows two basic pKas with an average value of about 7.8. Thus, it is possible that Arg 381 is one of the catalytic bases previously observed in the pH dependence of k(cat)/Km of TPL with L-tyrosine [Kiick, D. M., & Phillips. R. S. (1988) Biochemistry 27, 7333-7338], and hence Arg 381 is at least partially responsible for the substrate specificity of TPL.

摘要

与底物类似物3-(4'-羟基苯基)丙酸复合的酪氨酸酚裂解酶(TPL)的X射线结构表明,精氨酸381位于底物结合位点,其侧链NH1距离类似物的4'-OH为4.1 Å。该结构是使用属于P2(1)2(1)2空间群(a = 135.07 Å,b = 143.91 Å,c = 59.80 Å)的晶体以2.5 Å分辨率推导出来的。为了评估精氨酸381在TPL催化中的作用,我们制备了用丙氨酸(R381A)、异亮氨酸(R381I)和缬氨酸(R381V)取代精氨酸的突变蛋白。与野生型相比,R381A TPL的β-消除活性降低了10^(-4)倍,而以L-酪氨酸为底物时,R381I和R381V TPL没有可检测到的β-消除活性。然而,R381A、R381I和R381V TPL与S-(邻硝基苯基)-L-半胱氨酸、β-氯-L-丙氨酸、O-苯甲酰-L-丝氨酸和S-甲基-L-半胱氨酸反应,并且表现出与野生型TPL相当的k(cat)和k(cat)/Km值。此外,野生型、R381A和R381I TPL对L-色氨酸和L-苯丙氨酸竞争性抑制的Ki值相似。快速扫描停流光谱分析还表明,野生型和突变蛋白可以结合L-酪氨酸并以相似的速率常数形成醌型复合物。3-(4'-羟基苯基)丙酸与野生型TPL的结合在高pH值下以8.4的pKa降低,因此依赖于一个酸性基团,可能是Arg404,它与类似物的羧酸盐或吡哆醛5'-磷酸席夫碱形成离子对。与野生型TPL相比,R381A TPL在较低pH下酪氨酸的k(cat)/Km仅略有下降,野生型TPL显示出两个碱性pKa,平均值约为7.8。因此,精氨酸381有可能是先前在TPL与L-酪氨酸的k(cat)/Km的pH依赖性中观察到的催化碱之一[基克,D. M.,& 菲利普斯。R. S.(1988年)《生物化学》27,7333 - 7338],因此精氨酸381至少部分负责TPL的底物特异性。

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