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电荷极性反转可逆转中性内肽酶-24.11的特异性。

Charge polarity reversal inverses the specificity of neutral endopeptidase-24.11.

作者信息

Beaumont A, Barbe B, Le Moual H, Boileau G, Crine P, Fournié-Zaluski M C, Roques B P

机构信息

Département de Chimie Organique (U 266 Institut National de la Santé et de la Recherche Médicale, UA 498 Centre National de la Recherche Scientifique, Paris, France.

出版信息

J Biol Chem. 1992 Feb 5;267(4):2138-41.

PMID:1733922
Abstract

Attempts to change enzyme specificity by charge polarity reversal have so far met with little success, probably due to a destabilization of the resulting ion pair in an environment naturally optimized for the inverted pair. In the zinc metallopeptidase neutral endopeptidase-24.11 (EC 3.4.24.11), Arg102, involved in substrate binding, is probably located at the edge of the active site (Bateman, R.C., Jr., Kim, Y.-A., Slaughter, C., and Hersh, L.B. (1990) J. Biol. Chem. 265, 8365-8368; Beaumont, A., Le Moual, H., Boileau, G., Crine, P., and Roques, B.P. (1991) J. Biol. Chem. 266, 214-220). This environment may be favorable for polarity reversal, as in water the energies of reverse ion pairs would be identical. We show here that, while mutating Arg102 to Glu reduces the specificity of a C-terminally negatively charged substrate 16-fold, it increases that of a substrate with an optimally positioned positive charge 29-fold. The concept of charge polarity reversal can be extended to other zinc metallopeptidases, and the mutated enzyme could also have applications in the enantiomeric separation of unnatural amino acids.

摘要

迄今为止,通过电荷极性反转来改变酶特异性的尝试收效甚微,这可能是由于在自然优化的环境中,对于反转的离子对而言,所产生的离子对不稳定。在锌金属肽酶中性内肽酶 - 24.11(EC 3.4.24.11)中,参与底物结合的精氨酸102可能位于活性位点的边缘(Bateman, R.C., Jr., Kim, Y.-A., Slaughter, C., and Hersh, L.B. (1990) J. Biol. Chem. 265, 8365 - 8368; Beaumont, A., Le Moual, H., Boileau, G., Crine, P., and Roques, B.P. (1991) J. Biol. Chem. 266, 214 - 220)。这种环境可能有利于极性反转,因为在水中,反向离子对的能量是相同的。我们在此表明,虽然将精氨酸102突变为谷氨酸会使C末端带负电荷的底物特异性降低16倍,但它会使具有最佳定位正电荷的底物特异性提高29倍。电荷极性反转的概念可以扩展到其他锌金属肽酶,并且突变后的酶也可应用于非天然氨基酸的对映体分离。

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