Baselga J, Mendelsohn J, Kim Y M, Pandiella A
Receptor Biology Laboratory and Department of Medicine, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
J Biol Chem. 1996 Feb 9;271(6):3279-84. doi: 10.1074/jbc.271.6.3279.
Transforming growth factor alpha (TGF-alpha) is biosynthesized as a membrane-bound precursor protein, pro-TGF-alpha, that undergoes sequential endoproteolytic cleavages to release a soluble form of the factor. In the present study, we have analyzed the biosynthesis and regulation of TGF-alpha production in human tumor-derived cell lines that endogenously express pro-TGF-alpha and the epidermal growth factor (EGF) receptor. These cells biosynthesized membrane-anchored forms of the TGF-alpha that accumulated on the cell surface. Membrane-bound pro-TGF-alpha interacted with the EGF receptor, and complexes of receptor and pro-TGF-alpha contained tyrosine-phosphorylated receptor. Activation of the EGF receptor by soluble EGF or TGF-alpha had a dual effect on TGF-alpha production: an increase in pro-TGF-alpha mRNA levels and an increase in pro-TGF-alpha cleavage. These effects were largely prevented by preincubation with an anti-EGF receptor monoclonal antibody that blocked ligand binding. Growth factor autoinduction of cleavage could be stimulated by several second messenger pathways that are activated by the EGF receptor, including protein kinase C and intracellular calcium, and by other alternative mechanisms. EGF-stimulated cleavage of pro-TGF-alpha could be partially blocked by inhibition of these second messenger pathways. These results suggest that juxtacrine stimulation takes place in human tumor cells that coexpress both the EGF receptor and membrane-anchored TGF-alpha and that TGF-alpha is able to induce its own endoproteolytic cleavage by activating the EGF receptor.
转化生长因子α(TGF-α)作为一种膜结合前体蛋白——前TGF-α进行生物合成,该前体蛋白经过一系列内切蛋白水解切割以释放出可溶性形式的因子。在本研究中,我们分析了内源性表达前TGF-α和表皮生长因子(EGF)受体的人肿瘤衍生细胞系中TGF-α的生物合成及产生的调控。这些细胞生物合成了积聚在细胞表面的膜锚定形式的TGF-α。膜结合的前TGF-α与EGF受体相互作用,受体和前TGF-α的复合物含有酪氨酸磷酸化受体。可溶性EGF或TGF-α对EGF受体的激活对TGF-α的产生有双重作用:前TGF-α mRNA水平增加以及前TGF-α切割增加。预先用阻断配体结合的抗EGF受体单克隆抗体孵育可很大程度上阻止这些效应。切割的生长因子自诱导可被几种由EGF受体激活的第二信使途径刺激,包括蛋白激酶C和细胞内钙,以及其他替代机制。抑制这些第二信使途径可部分阻断EGF刺激的前TGF-α切割。这些结果表明,旁分泌刺激发生在同时共表达EGF受体和膜锚定TGF-α的人肿瘤细胞中,并且TGF-α能够通过激活EGF受体诱导其自身的内切蛋白水解切割。