Zhang F L, Casey P J
Department of Molecular Cancer Biology, Duke University Medical Center, Durham, NC 27710-3686, USA.
Biochem J. 1996 Dec 15;320 ( Pt 3)(Pt 3):925-32. doi: 10.1042/bj3200925.
Protein geranylgeranyltransferase type-I (GGTase-I) transfers a geranylgeranyl group from the prenyl donor geranylgeranyl diphosphate (GGPP) to the cysteine residue of substrate proteins containing a C-terminal CaaX-motif (a sequence motif of proteins consisting of an invariant Cys residue fourth from the C-terminus). The GGTase-I heterodimer contains one atom of zinc, and this metal is required for enzyme activity. In this regard, GGTase-I is similar to the related enzyme protein farnesyltransferase (FTase); the latter enzyme also requires Mg2+ for activity. The current studies were undertaken in an attempt to explore further the role of bivalent metal ions in the activity of GGTase-I. Surprisingly, we found that GGTase-I and FTase have different metal requirements. Specifically, in marked contrast to FTase, GGTase-I does not require Mg2+ for activity. Direct binding assays, including a novel fluorescence-based technique, were employed to obtain quantitative information on the interaction of substrates with GGTase-I. Using these assays, we demonstrate that the Zn2+ in GGTase-I is required for peptide, but not for isoprenoid, substrate binding. Moreover, binding of GGPP protects GGTase-I from inactivation by zinc-chelating reagents; this protective effect is not seen with binding of peptide substrates. Metal substitution studies show that the Zn2+ in GGTase-I can be replaced by Cd2+, and that the Cd form of GGTase-I has altered specificity with regard to utilization of both peptide and isoprenoid substrates. The significance of these findings in relation to proposed mechanisms for the GGTase-I reaction is discussed.
I型蛋白质香叶基香叶基转移酶(GGTase-I)将来自异戊二烯基供体香叶基香叶基二磷酸(GGPP)的香叶基香叶基基团转移至含有C末端CaaX基序(一种由C末端起第四个位置为不变半胱氨酸残基的蛋白质序列基序)的底物蛋白的半胱氨酸残基上。GGTase-I异二聚体含有一个锌原子,这种金属是酶活性所必需的。在这方面,GGTase-I与相关酶蛋白法尼基转移酶(FTase)相似;后一种酶的活性也需要Mg2+。目前的研究旨在进一步探索二价金属离子在GGTase-I活性中的作用。令人惊讶的是,我们发现GGTase-I和FTase有不同的金属需求。具体而言,与FTase形成鲜明对比的是,GGTase-I的活性不需要Mg2+。采用包括一种基于荧光的新技术在内的直接结合测定法来获取有关底物与GGTase-I相互作用的定量信息。使用这些测定法,我们证明GGTase-I中的Zn2+是肽底物结合所必需的,但不是类异戊二烯底物结合所必需的。此外,GGPP的结合可保护GGTase-I不被锌螯合剂灭活;肽底物结合则不会出现这种保护作用。金属替代研究表明,GGTase-I中的Zn2+可被Cd2+取代,并且GGTase-I的Cd形式在肽和类异戊二烯底物的利用方面具有改变的特异性。讨论了这些发现与GGTase-I反应的拟议机制相关的意义。