Leonard D, Hart M J, Platko J V, Eva A, Henzel W, Evans T, Cerione R A
Department of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, New York 14853.
J Biol Chem. 1992 Nov 15;267(32):22860-8.
The ras-related protein, CDC42Hs, is a 22-kDa GTP-binding protein which is the human homolog of a Saccharomyces cerevisiae yeast-cell-division cycle protein. In attempting to isolate and biochemically characterize mammalian proteins capable of regulating various activities of CDC42Hs, we have identified an activity in bovine brain cytosol which effectively inhibits the dissociation of [3H]GDP from the platelet- or the Spodoptera frugiperda-expressed CDC42Hs protein. The purification of this activity was achieved by a series of steps which included ammonium sulfate fractionation, DEAE-Sephacel, Mono-Q, and Mono-S chromatographies. The purified CDC42Hs regulatory protein has an apparent molecular weight of 28,000, and cyanogen bromide-generated peptide sequences of this protein were identical to sequences from the carboxyl-terminal portion of rho-GDP-dissociation inhibitor (rho-GDI) (Fukumoto, Y., Kaibuchi, K., Hori, Y., Fujioka, H., Araki, S., Ueda, T., Kikuchi, A., and Takai, Y. (1990) Oncogene 5, 1321-1328). In addition, an Escherichia coli-expressed, glutathione S-transferase-rho-GDI fusion protein fully substitutes for the GDI which we have purified from bovine brain in its ability to inhibit GDP dissociation from CDC42Hs. These findings suggest either that a common regulatory protein (GDI) is capable of inhibiting GDP dissociation from the rho and CDC42Hs proteins or that these two GTP-binding proteins interact with GDI proteins of very similar structure. The purified brain GDI protein shows little ability to inhibit GDP dissociation from the E. coli-expressed CDC42Hs and is capable of only a very weak inhibition of the dissociation of [35S]guanosine 5'-3-O-(thio)triphosphate (GTP gamma S) from the Spodoptera frugiperda-expressed CDC42. However, brain GDI very effectively inhibits the ability of the human dbl oncogene product to catalyze GDP dissociation from CDC42Hs. In addition to influencing guanine nucleotide association with CDC42Hs, the purified brain GDI protein also appears to catalyze the dissociation of CDC42Hs from the plasma membranes of human placenta and human epidermoid carcinoma (A431) cells. This effect by the GDI protein is observed whether the membrane-associated CDC42Hs is preincubated with GDP, GTP gamma S, or no guanine nucleotides, and occurs over a similar concentration range as that necessary for the inhibition of the intrinsic GDP dissociation.
ras相关蛋白CDC42Hs是一种22 kDa的GTP结合蛋白,是酿酒酵母细胞分裂周期蛋白的人类同源物。在试图分离和生化鉴定能够调节CDC42Hs各种活性的哺乳动物蛋白时,我们在牛脑细胞质中发现了一种活性,它能有效抑制[3H]GDP从血小板或草地贪夜蛾表达的CDC42Hs蛋白上解离。通过一系列步骤实现了这种活性的纯化,这些步骤包括硫酸铵分级分离、DEAE-琼脂糖凝胶、Mono-Q和Mono-S色谱法。纯化的CDC42Hs调节蛋白的表观分子量为28,000,该蛋白经溴化氰产生的肽序列与rho-GDP解离抑制剂(rho-GDI)羧基末端部分的序列相同(Fukumoto, Y., Kaibuchi, K., Hori, Y., Fujioka, H., Araki, S., Ueda, T., Kikuchi, A., and Takai, Y. (1990) Oncogene 5, 1321 - 1328)。此外,大肠杆菌表达的谷胱甘肽S-转移酶-rho-GDI融合蛋白在抑制GDP从CDC42Hs上解离的能力方面,完全可以替代我们从牛脑中纯化的GDI。这些发现表明,要么一种共同的调节蛋白(GDI)能够抑制GDP从rho和CDC42Hs蛋白上解离,要么这两种GTP结合蛋白与结构非常相似的GDI蛋白相互作用。纯化的脑GDI蛋白几乎没有抑制大肠杆菌表达的CDC42Hs上GDP解离的能力,并且只能非常微弱地抑制[35S]鸟苷5'-3-O-(硫代)三磷酸(GTPγS)从草地贪夜蛾表达的CDC42上解离。然而,脑GDI非常有效地抑制了人类dbl癌基因产物催化GDP从CDC42Hs上解离的能力。除了影响鸟嘌呤核苷酸与CDC42Hs的结合外,纯化的脑GDI蛋白似乎还催化CDC42Hs从人胎盘和人表皮样癌(A431)细胞的质膜上解离。无论膜相关的CDC42Hs是否预先与GDP、GTPγS或不与鸟嘌呤核苷酸一起孵育,都会观察到GDI蛋白的这种作用,并且其发生的浓度范围与抑制内在GDP解离所需的浓度范围相似。