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谷氨酰胺19侧链对木瓜蛋白酶氧负离子孔中过渡态稳定的贡献。

Contribution of the glutamine 19 side chain to transition-state stabilization in the oxyanion hole of papain.

作者信息

Ménard R, Carrière J, Laflamme P, Plouffe C, Khouri H E, Vernet T, Tessier D C, Thomas D Y, Storer A C

机构信息

Biotechnology Reserach Institute, National Research Council of Canada, Montréal, Québec.

出版信息

Biochemistry. 1991 Sep 17;30(37):8924-8. doi: 10.1021/bi00101a002.

DOI:10.1021/bi00101a002
PMID:1892809
Abstract

The existence of an oxyanion hole in cysteine proteases able to stabilize a transition-state complex in a manner analogous to that found with serine proteases has been the object of controversy for many years. In papain, the side chain of Gln19 forms one of the hydrogen-bond donors in the putative oxyanion hole, and its contribution to transition-state stabilization has been evaluated by site-directed mutagenesis. Mutation of Gln19 to Ala caused a decrease in kcat/KM for hydrolysis of CBZ-Phe-Arg-MCA, which is 7700 M-1 s-1 in the mutant enzyme as compared to 464,000 M-1 s-1 in wild-type papain. With a Gln19Ser variant, the activity is even lower, with a kcat/KM value of 760 M-1 s-1. The 60- and 600-fold decreases in kcat/KM correspond to changes in free energy of catalysis of 2.4 and 3.8 kcal/mol for Gln19Ala and Gln19Ser, respectively. In both cases, the decrease in activity is in large part attributable to a decrease in kcat, while KM values are only slightly affected. These results indicate that the oxyanion hole is operational in the papain-catalyzed hydrolysis of CBZ-Phe-Arg-MCA and constitute the first direct evidence of a mechanistic requirement for oxyanion stabilization in the transition state of reactions catalyzed by cysteine proteases. The equilibrium constants Ki for inhibition of the papain mutants by the aldehyde Ac-Phe-Gly-CHO have also been determined. Contrary to the results with the substrate, mutation at position 19 of papain has a very small effect on binding of the inhibitor.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

多年来,半胱氨酸蛋白酶中是否存在一个氧阴离子洞,能够以类似于丝氨酸蛋白酶的方式稳定过渡态复合物,一直存在争议。在木瓜蛋白酶中,Gln19的侧链构成了假定的氧阴离子洞中的一个氢键供体,并且已经通过定点诱变评估了其对过渡态稳定的贡献。将Gln19突变为Ala导致CBZ-Phe-Arg-MCA水解的kcat/KM降低,突变酶中的该值为7700 M-1 s-1,而野生型木瓜蛋白酶中为464,000 M-1 s-1。对于Gln19Ser变体,活性甚至更低,kcat/KM值为760 M-1 s-1。kcat/KM分别降低60倍和600倍,对应于Gln19Ala和Gln19Ser催化自由能变化2.4和3.8 kcal/mol。在这两种情况下,活性降低很大程度上归因于kcat的降低,而KM值仅受到轻微影响。这些结果表明,氧阴离子洞在木瓜蛋白酶催化的CBZ-Phe-Arg-MCA水解中起作用,并构成了半胱氨酸蛋白酶催化反应过渡态中氧阴离子稳定化机制要求的首个直接证据。还测定了醛Ac-Phe-Gly-CHO对木瓜蛋白酶突变体抑制的平衡常数Ki。与底物的结果相反,木瓜蛋白酶19位的突变对抑制剂的结合影响非常小。(摘要截断于250字)

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