University of Missouri - Kansas City, 64110, USA.
Arch Biochem Biophys. 2011 Jan 15;505(2):131-43. doi: 10.1016/j.abb.2010.09.028. Epub 2010 Oct 7.
The mevalonate pathway accounts for conversion of acetyl-CoA to isopentenyl 5-diphosphate, the versatile precursor of polyisoprenoid metabolites and natural products. The pathway functions in most eukaryotes, archaea, and some eubacteria. Only recently has much of the functional and structural basis for this metabolism been reported. The biosynthetic acetoacetyl-CoA thiolase and HMG-CoA synthase reactions rely on key amino acids that are different but are situated in active sites that are similar throughout the family of initial condensation enzymes. Both bacterial and animal HMG-CoA reductases have been extensively studied and the contrasts between these proteins and their interactions with statin inhibitors defined. The conversion of mevalonic acid to isopentenyl 5-diphosphate involves three ATP-dependent phosphorylation reactions. While bacterial enzymes responsible for these three reactions share a common protein fold, animal enzymes differ in this respect as the recently reported structure of human phosphomevalonate kinase demonstrates. There are significant contrasts between observations on metabolite inhibition of mevalonate phosphorylation in bacteria and animals. The structural basis for these contrasts has also recently been reported. Alternatives to the phosphomevalonate kinase and mevalonate diphosphate decarboxylase reactions may exist in archaea. Thus, new details regarding isopentenyl diphosphate synthesis from acetyl-CoA continue to emerge.
甲羟戊酸途径负责将乙酰辅酶 A 转化为异戊烯 5-二磷酸,这是多异戊二烯代谢物和天然产物的多功能前体。该途径在大多数真核生物、古菌和一些细菌中发挥作用。直到最近,这种代谢的功能和结构基础才被广泛报道。生物合成的乙酰乙酰辅酶 A 硫解酶和 HMG-CoA 合酶反应依赖于关键的氨基酸,这些氨基酸虽然不同,但位于整个初始缩合酶家族的相似活性位点。细菌和动物的 HMG-CoA 还原酶都得到了广泛的研究,这些蛋白质之间的差异及其与他汀类抑制剂的相互作用已经确定。从甲羟戊酸到异戊烯 5-二磷酸的转化涉及三个依赖于 ATP 的磷酸化反应。虽然负责这三个反应的细菌酶具有共同的蛋白质折叠,但在这方面动物酶有所不同,正如最近报道的人磷酸甲羟戊酸激酶的结构所证明的那样。在细菌和动物中甲羟戊酸磷酸化的代谢物抑制观察结果之间存在显著差异。这些差异的结构基础最近也有报道。在古菌中,可能存在替代磷酸甲羟戊酸激酶和甲羟戊酸二磷酸脱羧酶反应的途径。因此,关于乙酰辅酶 A 合成异戊烯二磷酸的新细节不断涌现。
Arch Biochem Biophys. 2010-10-7
Biotechnol Bioeng. 2004-8-20
Proc Natl Acad Sci U S A. 2010-6-7
Proc Natl Acad Sci U S A. 2018-9-17
Biochem Biophys Res Commun. 2017-6-3
Protein Sci. 2004-6
Front Plant Sci. 2025-8-20
Plants (Basel). 2025-5-10
Proc Natl Acad Sci U S A. 2010-6-7
ACS Chem Biol. 2010-5-21
Biochemistry. 2010-1-12
Biochemistry. 2009-7-14