Silletta M G, Di Girolamo M, Fiucci G, Weigert R, Mironov A, De Matteis M A, Luini A, Corda D
Department of Cell Biology and Oncology, Istituto di Ricerche Farmacologiche Mario Negri, Santa Maria Imbaro (Chieti), Italy.
Adv Exp Med Biol. 1997;419:321-30. doi: 10.1007/978-1-4419-8632-0_42.
Brefeldin A (BFA), a fungal metabolite that inhibits membrane transport, potently stimulates an endogenous ADP-ribosylation reaction that selectively modifies two cytosolic proteins of 38 and 50 kDa on an amino acid residue different from those used by all known mADPRTs. The 38-kDa substrate was identified as the glycolytic enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH), whereas the 50-kDa substrate (BARS-50) was characterized as a novel guanine nucleotide binding protein. Thus, BARS-50 is able to bind GTP and its ADP-ribosylation is inhibited by the beta gamma subunit of GTP-binding (G) proteins. Moreover, BARS-50 was demonstrated to be a group of closely related proteins that appear to be different from all the known G proteins. A partially purified BARS-50 was obtained from rat brain cytosol, which was then used for microsequencing and in functional studies. A similar procedure led to the purification of native (non-ADP-ribosylated) BARS-50. The possible role of the BFA-dependent ADP-ribosylation and of BARS-50 in the maintenance of Golgi structure and function was addressed by examining which of the effects of BFA may be modified by inhibiting this reaction. We find that the BFA-dependent transformation of the Golgi stacks into a tubular reticular network is prevented when the BFA-dependent ADP-ribosylation activity was blocked by specific inhibitors thus indicating that BFA-dependent ADP-ribosylation of cytosolic proteins participate in the dynamic regulation of intracellular transport.
布雷菲德菌素A(BFA)是一种抑制膜转运的真菌代谢产物,它能有效刺激一种内源性ADP核糖基化反应,该反应可在一个与所有已知单(ADP-核糖)转移酶所作用的氨基酸残基不同的位点上,选择性地修饰两种分子量分别为38 kDa和50 kDa的胞质蛋白。38 kDa的底物被鉴定为糖酵解酶甘油醛-3-磷酸脱氢酶(GAPDH),而50 kDa的底物(BARS-50)被表征为一种新型鸟嘌呤核苷酸结合蛋白。因此,BARS-50能够结合GTP,其ADP核糖基化受到GTP结合(G)蛋白的βγ亚基的抑制。此外,BARS-50被证明是一组密切相关的蛋白质,似乎与所有已知的G蛋白都不同。从大鼠脑胞质溶胶中获得了部分纯化的BARS-50,随后将其用于微量测序和功能研究。类似的方法导致了天然(未ADP核糖基化)BARS-50的纯化。通过研究BFA的哪些作用可能会因抑制该反应而被改变,探讨了BFA依赖性ADP核糖基化和BARS-50在维持高尔基体结构和功能中的可能作用。我们发现,当BFA依赖性ADP核糖基化活性被特异性抑制剂阻断时,BFA诱导的高尔基体堆叠向管状网状网络的转变被阻止,这表明胞质蛋白的BFA依赖性ADP核糖基化参与了细胞内运输的动态调节。