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白细胞介素-4/白细胞介素-4受体α链相互作用动力学的全球和局部决定因素。一项使用重组白细胞介素-4结合蛋白的生物传感器研究。

Global and local determinants for the kinetics of interleukin-4/interleukin-4 receptor alpha chain interaction. A biosensor study employing recombinant interleukin-4-binding protein.

作者信息

Shen B J, Hage T, Sebald W

机构信息

Theodor-Boveri-Institut für Biowissenschaften (Biozentrum) Universität Physiologische Chemie II, Würzburg, Germany.

出版信息

Eur J Biochem. 1996 Aug 15;240(1):252-61. doi: 10.1111/j.1432-1033.1996.0252h.x.

Abstract

An engineered interleukin-4-binding protein (IL4-BP) representing the extracellular domain of the human interleukin-4 (IL-4) receptor alpha chain was expressed in Sf9 cells. The purified IL4-BP was immobilized via a single biotinylated SH group near the carboxyl end to a biosensor matrix and analysed in real time for interaction with IL-4 and IL-4 variants. IL-4 was bound to IL4-BP at a molar ratio of approximately 1:1. The association and dissociation at pH 7.4 and 150 mM NaCl had rate constants of 1.9 +/- 0.3 x 10(7) M-1 s-1 and 2 +/- 1 x 10(-3) s-1, respectively. Glycosylation and engineered amino acid substitutions of IL4-BP did not alter the kinetic constants as shown by a parallel analysis of IL4-BP variants produced in Escherichia coli or Chinese hamster ovary cells. The rate of association was only slightly affected in binding-deficient variants [E9Q]IL-4 and [R88Q]IL-4 and by acidic pH down to values of 4.5, but it was reduced up to fivefold at higher ionic strength. The rate of dissociation was increased 70-fold and 150-fold with the IL-4 variants and fivefold at an acidic pH of 4.5, but it was not affected by high ionic strength. Temperatures between 6 degrees C and 37 degrees C yielded similar rates of IL-4 dissociation and only a marginally reduced rate of IL-4 association at 6 degrees C. These results indicate that the high-affinity binding of IL-4 to its receptor (Kd approximately 100 pM) is mainly the result of an unusually high association rate. The IL-4/IL4-BP interaction appears to be dominated by charge effects. The exceedingly high rate of IL-4/IL4-BP association is augmented by the overall electrostatic potentials of both proteins (electrostatic steering). Localized charges and the formation of ion pairs may control the rate of complex dissociation.

摘要

一种代表人类白细胞介素-4(IL-4)受体α链胞外域的工程化白细胞介素-4结合蛋白(IL4-BP)在Sf9细胞中表达。纯化后的IL4-BP通过靠近羧基末端的单个生物素化SH基团固定在生物传感器基质上,并实时分析其与IL-4及IL-4变体的相互作用。IL-4与IL4-BP以大约1:1的摩尔比结合。在pH 7.4和150 mM NaCl条件下,其结合和解离的速率常数分别为1.9±0.3×10⁷ M⁻¹ s⁻¹和2±1×10⁻³ s⁻¹。如对在大肠杆菌或中国仓鼠卵巢细胞中产生的IL4-BP变体进行的平行分析所示,IL4-BP的糖基化和工程化氨基酸取代并未改变动力学常数。在结合缺陷型变体[E9Q]IL-4和[R88Q]IL-4以及酸性pH降至4.5时,结合速率仅受到轻微影响,但在较高离子强度下会降低至五倍。IL-4变体使解离速率增加了70倍和150倍,在酸性pH 4.5时增加了五倍,但不受高离子强度影响。6℃至37℃之间的温度产生相似的IL-4解离速率,在6℃时IL-4结合速率仅略有降低。这些结果表明,IL-4与其受体的高亲和力结合(Kd约为100 pM)主要是异常高结合速率的结果。IL-4/IL4-BP相互作用似乎主要由电荷效应主导。两种蛋白质的整体静电势增强了IL-4/IL4-BP极高的结合速率(静电引导)。局部电荷和离子对的形成可能控制复合物解离的速率。

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