Hara M, Akasaka K, Akinaga S, Okabe M, Nakano H, Gomez R, Wood D, Uh M, Tamanoi F
Tokyo Research Laboratories, Kyowa Hakko Kogyo Co., Ltd., Japan.
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2281-5. doi: 10.1073/pnas.90.6.2281.
A microbial screen using a yeast strain with conditional deficiency in the GPA1 gene was carried out to search for inhibitors of protein farnesyltransferase (PFT). A strain of Streptomyces was found to produce active compounds named UCF1-A, UCF1-B, and UCF1-C. Structural determination of these compounds revealed that UCF1-C is identical to the known antibiotic, manumycin, whereas UCF1-A and UCF1-B are structurally related to manumycin. All three UCF1 compounds suppress the lethality of gpa1 disruption, with UCF1-C exhibiting the strongest activity. UCF1 inhibits yeast as well as rat brain PFT. Fifty percent inhibition of yeast PFT activity is observed with 5 microM UCF1-C. Kinetic analyses of the inhibition suggest that UCF1-C acts as a competitive inhibitor of PFT with respect to farnesyl pyrophosphate, exhibiting a Ki of 1.2 microM, whereas the same compound appears to act as a noncompetitive inhibitor of PFT with respect to the farnesyl acceptor, the Ras protein. UCF1-C shows significant activity to inhibit the growth of Ki-ras-transformed fibrosarcoma, raising the possibility of its use as an antitumor drug.
利用GPA1基因存在条件性缺陷的酵母菌株进行了微生物筛选,以寻找蛋白质法尼基转移酶(PFT)的抑制剂。发现一株链霉菌可产生名为UCF1 - A、UCF1 - B和UCF1 - C的活性化合物。这些化合物的结构测定表明,UCF1 - C与已知抗生素马尼霉素相同,而UCF1 - A和UCF1 - B在结构上与马尼霉素相关。所有三种UCF1化合物均能抑制gpa1缺失的致死性,其中UCF1 - C活性最强。UCF1可抑制酵母以及大鼠脑PFT。5 μM的UCF1 - C可使酵母PFT活性受到50%的抑制。对该抑制作用的动力学分析表明,UCF1 - C相对于法尼基焦磷酸而言是PFT的竞争性抑制剂,其抑制常数Ki为1.2 μM,而对于法尼基受体Ras蛋白而言,该化合物似乎是PFT的非竞争性抑制剂。UCF1 - C对抑制Ki - ras转化的纤维肉瘤生长具有显著活性,这增加了其作为抗肿瘤药物使用的可能性。