表皮生长因子和转化生长因子:配体-受体复合物的细胞内通路和加工的差异。

R Ebner, R Derynck
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引用次数: 224

摘要

表皮生长因子(epidermal growth factor, EGF)和转化生长因子- α (transforming growth factor- α, tgf - α)是两种结构相关但不同的多肽生长因子,它们通过与一个共同的细胞表面EGF/ tgf - α受体相互作用而发挥活性。两种配体作用的比较研究表明,tgf - α在多种生物系统中比EGF更有效。这种观察结果不能用配体对受体的亲和力差异来解释,因为这两种因素的亲和力常数非常相似。我们比较了在两种不同的细胞系统中使用EGF或tgf - α的配体受体复合物的细胞内加工。我们发现tgf - α在比EGF高得多的pH下与EGF/ tgf - α受体解离,这可能反映了计算出的等电点的巨大差异。内化后,细胞内的tgf - α比EGF被更快地清除,并且释放的tgf - α中有很大一部分代表未降解的tgf - α,而不是大部分降解的EGF。此外,tgf - α并没有诱导细胞表面受体的完全下调,正如在EGF中观察到的那样,这至少在一定程度上解释了tgf - α下调后配体结合能力恢复得更快的原因。这些在配体-受体复合物处理上的差异可以解释为什么tgf - α在数量上比EGF具有更高的活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epidermal growth factor and transforming growth factor-alpha: differential intracellular routing and processing of ligand-receptor complexes.

Two structurally related but different polypeptide growth factors, epidermal growth factor (EGF) and transforming growth factor-alpha (TGF-alpha), exert their activities after interaction with a common cell-surface EGF/TGF-alpha-receptor. Comparative studies of the effects of both ligands have established that TGF-alpha is more potent than EGF in a variety of biological systems. This observation is not explained by differences in affinities of the ligands for the receptor, because the affinity-constants of both factors are very similar. We have compared the intracellular processing of ligand-receptor complexes using either EGF or TGF-alpha in two different cell systems. We found that TGF-alpha dissociates from the EGF/TGF-alpha-receptor at much higher pH than EGF, which may reflect the substantial difference in the calculated isoelectric points. After internalization, the intracellular TGF-alpha is more rapidly cleared than EGF, and a substantial portion of the released TGF-alpha represents undegraded TGF-alpha in contrast to the mostly degraded EGF. In addition, TGF-alpha did not induce a complete down-regulation of cell surface receptors, as observed with EGF, which is at least in part responsible for a much sooner recovery of the ligand-binding ability after down-regulation, in the case of TGF-alpha. These differences in processing of the ligand-receptor complexes may explain why TGF-alpha exerts quantitatively higher activities than EGF.

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