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细菌荧光素酶醛基位点的亲和标记

Affinity labeling of the aldehyde site of bacterial luciferase.

作者信息

Fried A, Tu S C

出版信息

J Biol Chem. 1984 Sep 10;259(17):10754-9.

PMID:6547953
Abstract

2-Bromo[1-14C]1-decanal was synthesized as an affinity labeling probe for the aliphatic aldehyde site of Vibrio harveyi luciferase. In the presence of excess amounts of this probe, the inactivation of bacterial luciferase occurred following apparent first order kinetics. This inactivation was markedly retarded in the presence of decanal but neither butanal (a very poor aldehyde substrate) nor FMN (a reaction product derived from reduced FMN) showed any significant protective effect. Upon mixing luciferase with the affinity labeling probe, a noncovalent complex was formed prior to the covalent attachment. At pH 6 and 23 degrees C, the dissociation constant for the binding step and the rate constant for the covalent modification step were determined to be 23 microM and 1 min-1, respectively. The displacement of a bound aldehyde substrate by this probe added secondarily was also demonstrated. The inactivation of luciferase was correlated with both the incorporation of about 1.2 molecules of the probe and the loss of 0.8 to 1.1 cysteinyl residues/luciferase alpha beta dimer. The presence of an essential sulfhydryl group at the aldehyde site of luciferase has thus been demonstrated. This sulfhydryl group was a constituent residue of the alpha subunit and was near the alpha beta subunit interface. This residue appears to be the same essential cysteinyl group previously identified by chemical modification (Nicoli, M.Z., Meighen, E.A., and Hastings, J.W. (1974) J. Biol. Chem. 249, 2385-2392). The labeled luciferase did not exhibit any significant binding for the reduced FMN substrate.

摘要

合成了2-溴[1-¹⁴C]1-癸醛作为哈维弧菌荧光素酶脂肪醛位点的亲和标记探针。在过量该探针存在的情况下,细菌荧光素酶的失活遵循明显的一级动力学。在癸醛存在下,这种失活明显延迟,但丁醛(一种非常差的醛底物)和FMN(还原型FMN衍生的反应产物)均未显示出任何显著的保护作用。将荧光素酶与亲和标记探针混合后,在共价连接之前形成了非共价复合物。在pH 6和23℃下,结合步骤的解离常数和共价修饰步骤的速率常数分别测定为23 μM和1 min⁻¹。还证明了随后添加的该探针能取代结合的醛底物。荧光素酶的失活与约1.2个探针分子的掺入以及每荧光素酶αβ二聚体0.8至1.1个半胱氨酰残基的损失相关。因此,已证明荧光素酶醛位点存在一个必需的巯基。该巯基是α亚基的组成残基,且靠近αβ亚基界面。该残基似乎与先前通过化学修饰鉴定的必需半胱氨酰基团相同(尼科利,M.Z.,梅根,E.A.,和黑斯廷斯,J.W.(1974年)《生物化学杂志》249,2385 - 2392)。标记的荧光素酶对还原型FMN底物未表现出任何显著结合。

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