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酵母丙酮酸脱羧酶底物激活过程中的结构域间信息传递:半胱氨酸221与组氨酸92之间的相互作用

Interdomain information transfer during substrate activation of yeast pyruvate decarboxylase: the interaction between cysteine 221 and histidine 92.

作者信息

Baburina I, Li H, Bennion B, Furey W, Jordan F

机构信息

Department of Chemistry, Rutgers, State University of New Jersey, Newark 07102, USA.

出版信息

Biochemistry. 1998 Feb 3;37(5):1235-44. doi: 10.1021/bi970990+.

Abstract

Oligonucleotide-directed site-specific mutagenesis was carried out on pyruvate decarboxylase (EC 4.1.1.1) from Saccharomyces cerevisiae at two cysteines on the beta domain (221 and 222) and at H92 on the alpha domain, across the domain divide from C221. While C221 has been shown to provide the trigger for substrate activation [Baburina, I., et al. (1994) Biochemistry 33, 5630-5635], the information must be transmitted from the substrate bound at this site [Arjunan, D., et al. (1996) J. Mol. Biol. 256, 590-600] to the active center thiamin diphosphate located at the interface of the alpha and gamma domains. Substitution at H92 with G, A, or C leads to great reduction of the Hill coefficient (from 2.0 in the wild-type enzyme to 1.2-1.3), while substitution for Lys affords an active enzyme with a Hill coefficient of 1.5-1.6. Iodoacetate at 10 mM reduced the Hill coefficient from 2.0 to 1.1, while also causing significant inactivation of the enzyme, presumably by carboxymethylation of C221. 1,3-Dibromoacetone, a potential cross-linker when added to the H92C/C222S variant at 0.1 mM, abolished substrate activation while reducing the activity only by 30%. Therefore, 1,3-dibromoacetone may cross-link C92 and C221. It was concluded that H92 is on the information transfer pathway during the substrate activation process and the interaction between C221 on the beta domain and H92 on the alpha domain is required for substrate activation. Extensive pH studies of the steady-state kinetic constants provide support for the interaction of C221 and H92 and the transmission of regulatory information to the active center via this pathway and pKaS for the two groups. This important interaction between the C221-bound pyruvate and His92 probably has both electrostatic and steric components.

摘要

对酿酒酵母丙酮酸脱羧酶(EC 4.1.1.1)的β结构域上的两个半胱氨酸(221和222)以及α结构域上的H92(与C221跨结构域分隔)进行了寡核苷酸定向定点诱变。虽然已证明C221为底物激活提供触发信号[巴布林娜,I.等人(1994年)《生物化学》33卷,5630 - 5635页],但该信息必须从结合于此位点的底物传递[阿尔朱南,D.等人(1996年)《分子生物学杂志》256卷,590 - 600页]至位于α和γ结构域界面处的活性中心硫胺二磷酸。用G、A或C取代H92会导致希尔系数大幅降低(从野生型酶的2.0降至1.2 - 1.3),而用赖氨酸取代则得到希尔系数为1.5 - 1.6的活性酶。10 mM碘乙酸将希尔系数从2.0降至1.1,同时还导致酶显著失活,推测是通过C221的羧甲基化。1,3 - 二溴丙酮,一种潜在的交联剂,当以0.1 mM添加到H92C/C222S变体时,消除了底物激活,同时仅使活性降低30%。因此,1,3 - 二溴丙酮可能使C92和C221交联。得出的结论是,H92处于底物激活过程中的信息传递途径上,β结构域上的C221与α结构域上的H92之间的相互作用是底物激活所必需的。对稳态动力学常数进行的广泛pH研究为C221和H92的相互作用以及通过该途径将调节信息传递至活性中心以及这两个基团的pKa提供了支持。结合丙酮酸的C221与组氨酸92之间的这种重要相互作用可能同时具有静电和空间成分。

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