Jakus J, Wolff E C, Park M H, Folk J E
Laboratory of Cellular Development and Oncology, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 1993 Jun 25;268(18):13151-9.
Several types of basic compounds structurally related to spermidine, one of the substrates for deoxyhypusine synthase, were tested as inhibitors of this enzyme. The results indicate that inhibitory compounds associate with the enzyme at the site of spermidine binding and must possess two charged primary amino or guanidino groups, or one of each. The efficiency of inhibition is related to the maximum possible distance between the primary amino groups and is adversely affected by substitutions on the secondary amino group or in the carbon chains of polyamines. The mono-guanyl derivatives are much more effective inhibitors than the parent amines or their bis-guanylated counterparts, N1-guanyl-1,7-diaminoheptane being the most effective compound with a Ki value of about 10 nM. Based on these observations we have proposed a model for the spermidine-binding site of deoxyhypusine synthase. Studies with Chinese hamster ovary cells reveal a direct correlation between prevention of hypusine formation by several guanyldiamines and their in vitro inhibition of deoxyhypusine synthase. This evidence for disruption of the initial step in the post-translational maturation of eukaryotic initiation factor 5A provides a basis for the potential control of protein biosynthesis and cell proliferation.
对几种与脱氧hypusine合酶的底物之一亚精胺结构相关的碱性化合物作为该酶的抑制剂进行了测试。结果表明,抑制性化合物在亚精胺结合位点与该酶结合,且必须具有两个带电荷的伯氨基或胍基,或二者各一个。抑制效率与伯氨基之间的最大可能距离有关,并受到仲氨基或多胺碳链上取代基的不利影响。单胍基衍生物是比母体胺或其二胍基化对应物更有效的抑制剂,N1-胍基-1,7-二氨基庚烷是最有效的化合物,其Ki值约为10 nM。基于这些观察结果,我们提出了脱氧hypusine合酶亚精胺结合位点的模型。对中国仓鼠卵巢细胞的研究表明,几种胍基二胺预防hypusine形成与其体外抑制脱氧hypusine合酶之间存在直接相关性。这种破坏真核起始因子5A翻译后成熟第一步的证据为潜在控制蛋白质生物合成和细胞增殖提供了基础。