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肾二肽酶的单阴离子抑制作用及³⁵Cl核磁共振研究

Monoanion inhibition and 35Cl nuclear magnetic resonance studies of renal dipeptidase.

作者信息

Ferren L G, Ward R L, Campbell B J

出版信息

Biochemistry. 1975 Dec 2;14(24):5280-5. doi: 10.1021/bi00695a008.

Abstract

Kinetic analyses of monoanion inhibition and 15Cl nuclear magnetic resonance at 5.88 MHz were employed to study monoanion interactions with the zinc metalloenzyme, renal dipeptidase. The enzyme-catalyzed hydrolysis of glycyldehydrophenylalanine exhibited competitive inhibition when the reaction rate was determined in the presence of the monovalent anions fluoride, chloride, bromide, iodide, azide, nitrate, or thiocyanate or upon the addition of the divalent anion, sulfate. Competitive inhibition was produced by these anions. One anion was bound per enzyme molecule, and except in the case of fluoride all of the anions appeared to bind at the same site. Cyanide ion produced a much more effective inhibition of renal dipeptidase than the other monoanions, and it was shown that two cyanide ions were bound per enzyme molecule. An investigation of the effect of pH upon monoanion inhibition suggested that the anion inhibitors bind to the group with a pK of approximately 7.8. Complete dissociation of this group (approximately pH 8.4) eliminates the inhibitory effect of anions. The 35Cl line broadening produced by renal dipeptidase in 0.5 M NaCl solutions was 100 times more effective than that produced by equivalent concentrations of aquozinc(II). The line broadening was dependent upon the concentration of the metalloenzyme and independent of the frequency of the exciting radiation. When zinc ion was removed from the metalloenzyme by dialysis or when chloride was titrated from the metalloenzyme by cyanide, line broadening was decreased. Treatment of renal dipeptidase with saturating concentrations of the competitive inhibitor, guanosine triphosphate, in the presence of 0.5 M NaCl also produced a significant decrease in the 35Cl line width. The 35Cl line broadening produced by renal dipeptidase was shown to decrease with increasing pH through the range pH 5.8-10.8. This line-width variation with pH appeared to result from the titration of a site on the metalloprotein with an approximate pK of 7.4. Temperature studies of 35Cl line broadening by the metalloenzyme in the presence of chloride and cyanide inhibitors suggest that the fast exchange process pertains and that the dominant relaxation mechanism is quadrupolar in nature.

摘要

采用单阴离子抑制动力学分析和5.88 MHz的¹⁵Cl核磁共振技术研究单阴离子与锌金属酶——肾二肽酶的相互作用。当在一价阴离子氟化物、氯化物、溴化物、碘化物、叠氮化物、硝酸盐或硫氰酸盐存在下测定反应速率时,或加入二价阴离子硫酸盐时,该酶催化的甘氨酰脱氢苯丙氨酸水解表现出竞争性抑制。这些阴离子产生了竞争性抑制作用。每个酶分子结合一个阴离子,除了氟化物外,所有阴离子似乎都结合在同一部位。氰离子对肾二肽酶的抑制作用比其他单阴离子更有效,且表明每个酶分子结合两个氰离子。对pH对单阴离子抑制作用影响的研究表明,阴离子抑制剂与pK约为7.8的基团结合。该基团完全解离(约pH 8.4)会消除阴离子的抑制作用。肾二肽酶在0.5 M NaCl溶液中产生的³⁵Cl谱线展宽比等浓度的水合锌(II)产生的谱线展宽有效100倍。谱线展宽取决于金属酶的浓度,与激发辐射的频率无关。当通过透析从金属酶中去除锌离子或用氰化物从金属酶中滴定氯离子时,谱线展宽减小。在0.5 M NaCl存在下,用饱和浓度的竞争性抑制剂鸟苷三磷酸处理肾二肽酶也会使³⁵Cl线宽显著减小。肾二肽酶产生的³⁵Cl谱线展宽在pH 5.8 - 10.8范围内随pH升高而减小。这种线宽随pH的变化似乎是由于金属蛋白上一个pK约为7.4的位点被滴定所致。在氯化物和氰化物抑制剂存在下,对金属酶产生的³⁵Cl谱线展宽进行温度研究表明,存在快速交换过程,且主要的弛豫机制本质上是四极的。

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