Porfiri E, Evans T, Chardin P, Hancock J F
ONYX Pharmaceuticals, Richmond, California 94806.
J Biol Chem. 1994 Sep 9;269(36):22672-7.
We have studied whether hSOS1, a mammalian guanine nucleotide exchange factors responsible for activating Ras in response to growth factor stimulation, requires post-translational processing of Ras proteins to promote guanine nucleotide exchange. Our results showed that full-length hSOS1 catalyzed guanine nucleotide exchange on prenylated K-Ras(4B) but with a much lower efficiency on unprocessed K-Ras(4B). The apparent Km of hSOS1 for prenylated K-Ras(4B) was 225 (+/- 25) nM with a Vmax of 0.7 (+/- 0.1) mmol/min/mmol. The activity of hSOS1 against unprocessed K-Ras(4B) was too low to measure Km and Vmax. Consistent with these observations, full-length hSOS1 formed a complex with nucleotide-depleted prenylated K-Ras(4B) but not with unprocessed K-Ras(4B). A geranylgeranylated mutant of K-Ras(4B) was an equally good substrate for hSOS1 as wild-type farnesylated K-Ras. Similarly hSOS1 promoted guanine nucleotide exchange on prenylated Ha-Ras but showed minimal activity toward unprocessed Ha-Ras. Neither the polybasic domain of K-Ras (4B) or palmitoylation of Ha-Ras were required for hSOS1-promoted guanine nucleotide exchange. We attempted to identify a minimal region of hSOS1 capable of promoting guanine nucleotide exchange on both prenylated and unprocessed K-Ras. However, a truncated form of hSOS1 comprising only the CDC25 homology domain retained preferential catalytic activity against prenylated K-Ras, whereas the cognate domain from CDC25 was more active against unprocessed K-Ras.
我们研究了hSOS1(一种负责在生长因子刺激下激活Ras的哺乳动物鸟嘌呤核苷酸交换因子)是否需要Ras蛋白的翻译后加工来促进鸟嘌呤核苷酸交换。我们的结果表明,全长hSOS1催化异戊二烯化的K-Ras(4B)上的鸟嘌呤核苷酸交换,但对未加工的K-Ras(4B)的催化效率要低得多。hSOS1对异戊二烯化的K-Ras(4B)的表观Km为225(±25)nM,Vmax为0.7(±0.1)mmol/min/mmol。hSOS1对未加工的K-Ras(4B)的活性太低,无法测量Km和Vmax。与这些观察结果一致,全长hSOS1与核苷酸耗尽的异戊二烯化K-Ras(4B)形成复合物,但不与未加工的K-Ras(4B)形成复合物。K-Ras(4B)的香叶基香叶基化突变体与野生型法尼基化K-Ras一样,是hSOS1的良好底物。同样,hSOS1促进异戊二烯化Ha-Ras上的鸟嘌呤核苷酸交换,但对未加工的Ha-Ras的活性最小。hSOS1促进的鸟嘌呤核苷酸交换既不需要K-Ras(4B)的多碱性结构域,也不需要Ha-Ras的棕榈酰化。我们试图确定hSOS1的一个最小区域,该区域能够促进异戊二烯化和未加工的K-Ras上的鸟嘌呤核苷酸交换。然而,仅包含CDC25同源结构域的hSOS1截短形式对异戊二烯化K-Ras仍保留优先催化活性,而来自CDC25的同源结构域对未加工的K-Ras更具活性。