Shintani Kana, Ebisu Haruna, Mukaiyama Minagi, Hatanaka Taisei, Chinen Takumi, Takao Daisuke, Nagumo Yoko, Sakakura Akira, Hayakawa Ichiro, Usui Takeo
Graduate School and Faculty of Life and Environmental Sciences, Microbiology Research Center for Sustainability, University of Tsukuba, 1-1-1 Tennodai, Tsukuba 305-8571, Japan.
Division of Applied Chemistry, Graduate School of Natural Science and Technology, Okayama University, 3-1-1 Tsushima-naka, Kita-ku, Okayama 700-8530, Japan.
ACS Med Chem Lett. 2020 Mar 30;11(6):1125-1129. doi: 10.1021/acsmedchemlett.9b00526. eCollection 2020 Jun 11.
Gatastatin ( -benzyl glaziovianin A) is a γ-tubulin-specific inhibitor that is used to investigate γ-tubulin function in cells. We have previously reported that the unsubstituted phenyl ring of the -benzyl group in gatastatin is important for γ-tubulin inhibition. To obtain further structural information regarding γ-tubulin inhibition, we synthesized several gatastatin derivatives containing a fixed -benzyl moiety. Modifications of the B-ring resulted in drastic decrease in cytotoxicity, abnormal spindle formation activity, and inhibition of microtubule (MT) nucleation. In contrast, various -alkylated gatastatin derivatives showed potent cytotoxicity, induced abnormal spindle formation, and inhibited MT nucleation. We had previously reported that -benzyl glaziovianin A is a potent α/β-tubulin inhibitor; thus, these new results suggest that the -position restricts affinity for α/β- and γ-tubulin. Considering that an -benzyl group increases specificity for γ-tubulin, more potent and specific γ-tubulin inhibitors can be generated through -modifications of gatastatin.
加他他汀(-苄基格拉齐奥文宁A)是一种γ-微管蛋白特异性抑制剂,用于研究细胞中γ-微管蛋白的功能。我们之前报道过,加他他汀中-苄基的未取代苯环对γ-微管蛋白抑制作用很重要。为了获得有关γ-微管蛋白抑制作用的更多结构信息,我们合成了几种含有固定-苄基部分的加他他汀衍生物。B环的修饰导致细胞毒性、异常纺锤体形成活性以及微管(MT)成核抑制作用急剧下降。相比之下,各种-烷基化的加他他汀衍生物表现出强大的细胞毒性,诱导异常纺锤体形成,并抑制MT成核。我们之前报道过-苄基格拉齐奥文宁A是一种有效的α/β-微管蛋白抑制剂;因此,这些新结果表明-位限制了对α/β-和γ-微管蛋白的亲和力。考虑到-苄基增加了对γ-微管蛋白的特异性,通过加他他汀的-修饰可以产生更有效和特异的γ-微管蛋白抑制剂。