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Iα型环磷酸腺苷依赖性蛋白激酶B结构域与环核苷酸相互作用的共振镜生物传感器分析

Resonant mirror biosensor analysis of type Ialpha cAMP-dependent protein kinase B domain--cyclic nucleotide interactions.

作者信息

Muhonen W W, Shabb J B

机构信息

Department of Biochemistry and Molecular Biology, University of North Dakota School of Medicine, Grand Forks 58202-9037, USA.

出版信息

Protein Sci. 2000 Dec;9(12):2446-56. doi: 10.1110/ps.9.12.2446.

Abstract

A resonant mirror biosensor was used to study cyclic nucleotide-receptor interactions. In particular, a novel method was developed to determine inhibition constants (Ki) from initial rates of ligate association to immobilized ligand. This approach was applied to the comparison of cyclic nucleotide-binding properties of the wild-type isolated B domain of the cAMP-dependent protein kinase type Ialpha regulatory subunit and its Ala-334-Thr (A334T) variant that has altered cyclic nucleotide specificity. A cUMP-saturated form of the B domain was used for all measurements. Under the conditions used, cUMP did not affect the kinetics of B domain association to immobilized cAMP. Triton X-100 was required to stabilize the protein at nanomolar concentrations. The association and dissociation rate constants for wild-type and A334T B domains yielded equilibrium dissociation constants of 11 and 16 nM. Heterogeneity of ligate and immobilized ligand, mass transport effects, and other factors were evaluated for their influence on biosensor-determined kinetic constants. Biosensor-determined relative inhibition constants (Ki' = Ki(cAMP)/Ki(analog)) for 16 cyclic nucleotide analogs correlated well with those determined by a [3H]cAMP binding assay. Previously published Ki' values for the B domain in the intact regulatory subunit were similar to those of the isolated B domain. The Ki' values for the wild-type and A334T B domains were essentially unchanged except for dramatic enhancements in affinity of cGMP analogs for the A334T B domain. These observations validate the isolated B domain as a simple model system for studying cyclic nucleotide-receptor interactions.

摘要

使用共振镜生物传感器研究环核苷酸 - 受体相互作用。具体而言,开发了一种新方法,可根据连接物与固定化配体结合的初始速率来确定抑制常数(Ki)。该方法应用于比较Iα型cAMP依赖性蛋白激酶调节亚基野生型分离的B结构域及其具有改变的环核苷酸特异性的Ala - 334 - Thr(A334T)变体的环核苷酸结合特性。所有测量均使用B结构域的cUMP饱和形式。在所使用的条件下,cUMP不影响B结构域与固定化cAMP结合的动力学。需要Triton X - 100将蛋白质稳定在纳摩尔浓度。野生型和A334T B结构域的结合和解离速率常数产生的平衡解离常数分别为11和16 nM。评估了连接物和固定化配体的异质性、传质效应及其他因素对生物传感器测定的动力学常数的影响。生物传感器测定的16种环核苷酸类似物的相对抑制常数(Ki' = Ki(cAMP)/ Ki(类似物))与通过[3H] cAMP结合测定法测定的结果相关性良好。完整调节亚基中B结构域先前公布的Ki'值与分离的B结构域相似。除了cGMP类似物对A334T B结构域的亲和力显著增强外,野生型和A334T B结构域的Ki'值基本不变。这些观察结果验证了分离的B结构域作为研究环核苷酸 - 受体相互作用的简单模型系统。

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