Glaven J A, Whitehead I P, Nomanbhoy T, Kay R, Cerione R A
Department of Pharmacology, Cornell University, Ithaca, New York 14853, USA.
J Biol Chem. 1996 Nov 1;271(44):27374-81. doi: 10.1074/jbc.271.44.27374.
Lfc and Lsc are two recently identified oncoproteins that contain a Dbl homology domain in tandem with a pleckstrin homology domain and thus share sequence similarity with a number of other growth regulatory proteins including Dbl, Tiam-1, and Lbc. We show here that Lfc and Lsc, like their closest relative Lbc, are highly specific guanine nucleotide exchange factors (GEFs) for Rho, causing a >10-fold stimulation of [3H]GDP dissociation from Rho and a marked stimulation of GDP-[35S]GTPgammas (guanosine 5'-O-(3-thiotriphosphate) exchange. All three proteins (Lbc, Lfc, and Lsc) are able to act catalytically in stimulating the guanine nucleotide exchange activity, such that a single molecule of each of these oncoproteins can activate a number of molecules of Rho. Neither Lfc nor Lsc shows any ability to stimulate GDP dissociation from other related GTP-binding proteins such as Rac, Cdc42, or Ras. Thus Lbc, Lfc, and Lsc appear to represent a subgroup of Dbl-related proteins that function as highly specific GEFs toward Rho and can be distinguished from Dbl, Ost, and Dbs which are less specific and show GEF activity toward both Rho and Cdc42. Consistent with these results, Lbc, Lfc, and Lsc each form tight complexes with the guanine nucleotide-depleted form of Rho and bind weakly to the GDP- and GTPgammaS-bound states. None of these oncoproteins are able to form complexes with Cdc42 or Ras. However, Lfc (but not Lbc nor Lsc) can bind to Rac, and this binding occurs equally well when Rac is nucleotide-depleted or is in the GDP- or GTPgammaS-bound state. These findings raise the possibility that in addition to acting directly as a GEF for Rho, Lfc may play other roles that influence the signaling activities of Rac and/or coordinate the activities of the Rac and Rho proteins.
Lfc和Lsc是最近发现的两种癌蛋白,它们含有串联的Dbl同源结构域和普列克底物蛋白同源结构域,因此与包括Dbl、Tiam-1和Lbc在内的许多其他生长调节蛋白具有序列相似性。我们在此表明,Lfc和Lsc与其关系最密切的Lbc一样,是Rho的高度特异性鸟嘌呤核苷酸交换因子(GEF),可使[3H]GDP从Rho上的解离增加10倍以上,并显著刺激GDP-[35S]GTPγS(鸟苷5'-O-(3-硫代三磷酸))交换。所有这三种蛋白(Lbc、Lfc和Lsc)都能够催化性地刺激鸟嘌呤核苷酸交换活性,使得这些癌蛋白中的每一个分子都能激活多个Rho分子。Lfc和Lsc都没有显示出刺激其他相关GTP结合蛋白(如Rac、Cdc42或Ras)上GDP解离的能力。因此,Lbc、Lfc和Lsc似乎代表了Dbl相关蛋白的一个亚组,它们作为针对Rho的高度特异性GEF发挥作用,并且可以与特异性较低且对Rho和Cdc42均显示GEF活性的Dbl、Ost和Dbs区分开来。与这些结果一致,Lbc、Lfc和Lsc各自与鸟嘌呤核苷酸耗尽形式的Rho形成紧密复合物,并与GDP和GTPγS结合状态弱结合。这些癌蛋白中没有一种能够与Cdc42或Ras形成复合物。然而,Lfc(但不是Lbc和Lsc)可以与Rac结合,并且当Rac核苷酸耗尽或处于GDP或GTPγS结合状态时,这种结合同样良好。这些发现增加了一种可能性,即除了直接作为Rho的GEF起作用外,Lfc可能还发挥其他作用,影响Rac的信号传导活性和/或协调Rac和Rho蛋白的活性。