Holdgate G A, Ward W H J, McTaggart F
AstraZeneca, Mereside, Alderley Park, Macclesfield, Cheshire SK10 4TG, UK.
Biochem Soc Trans. 2003 Jun;31(Pt 3):528-31. doi: 10.1042/bst0310528.
The statins are inhibitors of 3-hydroxy-3-methylglutaryl CoA (HMG-CoA) reductase (HMG-CoAR), and are utilized to decrease levels of atherogenic lipoproteins in patients with, or who are at high risk of, cardiovascular disease. This study describes the inhibition of a recombinant, catalytic fragment of human HMG-CoAR by a new statin, rosuvastatin (CRESTOR(R)). Binding is reversible and involves an initial complex [inhibition constant involving the enzyme-inhibitor complex (E.I), K (i), approximately 1 nM], which undergoes a slow transition ( t ((1/2)) to reach steady state is 33-360 s) to give tighter association [steady-state inhibition constant involving E.I and the second E.I complex in a two-step mechanism (E.I*), K (i)*, approximately 0.1 nM]. At steady state, rosuvastatin is at least as potent as atorvastatin, cerivastatin and simvastatin. It is more potent than fluvastatin and pravastatin. For rosuvastatin, inhibition kinetics are competitive with respect to HMG-CoA and non-competitive when NADPH is varied. At 37 degrees C, binding is linked to a large favourable enthalpy change [Delta H degrees =-69.0 kJ/mol (-16.5 kcal/mol)] and a small entropic penalty [ T Delta S degrees =-9.6 kJ/mol (-2.3 kcal/mol)]. These characteristics, and the high affinity relative to that of 3 S -HMG-CoA ( K (d) approximately 6.6 microM), are discussed in relation to the crystal structures of complexes with HMG-CoAR.
他汀类药物是3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶(HMG-CoAR)的抑制剂,用于降低患有心血管疾病或有心血管疾病高风险患者的致动脉粥样硬化脂蛋白水平。本研究描述了一种新型他汀类药物瑞舒伐他汀(可定®)对重组人HMG-CoAR催化片段的抑制作用。结合是可逆的,涉及一个初始复合物[酶-抑制剂复合物(E.I)的抑制常数,K(i),约为1 nM],该复合物经历缓慢转变(达到稳态的半衰期t(1/2)为33 - 360秒),以形成更紧密的结合[两步机制中涉及E.I和第二个E.I复合物(E.I*)的稳态抑制常数,K(i)*,约为0.1 nM]。在稳态下,瑞舒伐他汀的效力至少与阿托伐他汀、西立伐他汀和辛伐他汀相当。它比氟伐他汀和普伐他汀更有效。对于瑞舒伐他汀,抑制动力学相对于HMG-CoA是竞争性的,而当NADPH变化时是非竞争性的。在37℃时,结合与一个大的有利焓变[ΔH° = -69.0 kJ/mol(-16.5 kcal/mol)]和一个小的熵罚[ TΔS° = -9.6 kJ/mol(-2.3 kcal/mol)]相关。相对于3S-HMG-CoA的高亲和力(K(d)约为6.6 μM),这些特性将结合HMG-CoAR复合物的晶体结构进行讨论。