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E5转化蛋白对表皮生长因子结合及代谢动力学参数的影响分析

Analysis of the influences of the E5 transforming protein on kinetic parameters of epidermal growth factor binding and metabolism.

作者信息

Waters C M, Overholser K A, Sorkin A, Carpenter G

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee 37232-0146.

出版信息

J Cell Physiol. 1992 Aug;152(2):253-63. doi: 10.1002/jcp.1041520206.

Abstract

The E5 protein of the bovine papillomavirus induces cellular transformation when transfected into NIH 3T3 cells, and the extent of focal transformation is enhanced by cotransfection with the epidermal growth factor (EGF) receptor (Martin et al., Cell 59:21-32, 1989). To determine whether E5 affects EGF:receptor interactions we analyzed the kinetics of 125I-EGF processing using a mathematical model that enabled us to evaluate rate constants for ligand association (ka), dissociation (kd), internalization (ke), recycling (kr), and degradation (kh). These rate constants were measured in NIH 3T3 cells transfected with the human EGF receptor (ER cells) and in cells transfected with both the EGF receptor and E5 (E5/ER cells). We found that the rate constant for 125I-EGF association ka was significantly decreased in E5/ER cells, but was apparently occupancy-independent in both cell lines. The 125I-EGF dissociation rate constant kd was significantly lower in E5 transformed cells, and increased with occupancy in both cell lines. This suggests that E5 alters the receptor before or during EGF binding so that ligand association is slower; however, once complexes are formed, EGF is bound more tightly to the receptor. Rate constants for internalization ke were also found to be occupancy-dependent, although at a given level of occupancy ke was similar for both cell lines. Also, there was no apparent effect of E5 on the recycling rate constant kr. The 125I-EGF degradation rate constant kh was 30% lower in E5 transformed cells, and was occupancy-independent. The overall effect of E5 is to stabilize intact EGF:receptor complexes which may alter mitogenic signaling of the receptor.

摘要

将牛乳头瘤病毒的E5蛋白转染到NIH 3T3细胞中可诱导细胞转化,与表皮生长因子(EGF)受体共转染可增强灶性转化的程度(Martin等人,《细胞》59:21 - 32,1989)。为了确定E5是否影响EGF与受体的相互作用,我们使用一个数学模型分析了¹²⁵I - EGF的处理动力学,该模型使我们能够评估配体结合(ka)、解离(kd)、内化(ke)、再循环(kr)和降解(kh)的速率常数。这些速率常数在转染了人EGF受体的NIH 3T3细胞(ER细胞)以及同时转染了EGF受体和E5的细胞(E5/ER细胞)中进行了测量。我们发现,¹²⁵I - EGF结合的速率常数ka在E5/ER细胞中显著降低,但在两种细胞系中显然与占据情况无关。¹²⁵I - EGF解离速率常数kd在E5转化细胞中显著更低,并且在两种细胞系中均随占据情况增加。这表明E5在EGF结合之前或期间改变了受体,使得配体结合更慢;然而,一旦复合物形成,EGF与受体的结合更紧密。内化速率常数ke也被发现与占据情况有关,尽管在给定的占据水平下,两种细胞系的ke相似。此外,E5对再循环速率常数kr没有明显影响。¹²⁵I - EGF降解速率常数kh在E5转化细胞中低30%,并且与占据情况无关。E5的总体作用是稳定完整的EGF - 受体复合物,这可能会改变受体的有丝分裂信号传导。

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