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Heat Capacity Changes for Transition-State Analogue Binding and Catalysis with Human 5′-Methylthioadenosine Phosphorylase

机译:热容量变化的过渡态类似物结合和人类5-甲基硫代腺苷磷酸化酶的催化。

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摘要

Human 5′-methylthioadenosine phosphorylase (MTAP) catalyzes the phosphorolysis of 5′-methylthioadenosine (MTA). Its action regulates cellular MTA and links polyamine synthesis to S-adenosylmethionine (AdoMet) salvage. Transition state analogues with picomolar dissociation constants bind to MTAP in an entropically driven process at physiological temperatures, suggesting increased hydrophobic character or dynamic structure for the complexes. Inhibitor binding exhibits a negative heat capacity change (−ΔCp), and thus the changes in enthalpy and entropy upon binding are strongly temperature-dependent. The ΔCp of inhibitor binding by isothermal titration calorimetry does not follow conventional trends and is contrary to that expected from the hydrophobic effect. Thus, ligands of increasing hydrophobicity bind with increasing values of ΔCp. Crystal structures of MTAP complexed to transition-state analogues MT-DADMe-ImmA, BT-DADMe-ImmA, PrT-ImmA, and a substrate analogue, MT-tubercidin, reveal similar active site contacts and overall protein structural parameters, despite large differences in ΔCp for binding. In addition, ΔCp values are not correlated with Kd values. Temperature dependence of presteady state kinetics revealed the chemical step for the MTAP reaction to have a negative heat capacity for transition state formation (−ΔCp). A comparison of the ΔCp for MTAP presteady state chemistry and ΔCp for inhibitor binding revealed those transition-state analogues most structurally and thermodynamically similar to the transition state. Molecular dynamics simulations of MTAP apoenzyme and complexes with MT-DADMe-ImmA and MT-tubercidin show small, but increased dynamic motion in the inhibited complexes. Variable temperature CD spectroscopy studies for MTAP–inhibitor complexes indicate remarkable protein thermal stability (to Tm = 99 °C) in complexes with transition-state analogues.
机译:人5'-甲基硫代腺苷磷酸化酶(MTAP)催化5'-甲基硫代腺苷(MTA)的磷酸解。它的作用调节细胞MTA,并将多胺合成与S-腺苷甲硫氨酸(AdoMet)挽救联系起来。具有皮摩尔解离常数的过渡态类似物在生理温度下的熵驱动过程中与MTAP结合,表明复合物的疏水特性或动态结构增加。抑制剂结合表现出负的热容变化(-ΔCp),因此结合时的焓和熵的变化与温度密切相关。通过等温滴定热法测定的抑制剂结合的ΔCp不遵循常规趋势,并且与疏水作用所预期的相反。因此,增加疏水性的配体与增加的ΔCp值结合。与过渡态类似物MT-DADMe-ImmA,BT-DADMe-ImmA,PrT-ImmA以及底物类似物MT-结核菌素复合的MTAP的晶体结构显示出相似的活性位点接触和整体蛋白质结构参数,尽管结合的ΔCp。另外,ΔCp值与Kd值不相关。稳态动力学的温度依赖性揭示了MTAP反应的化学步骤具有负热容以形成过渡态(-ΔCp)。 MTAP稳态化学分析的ΔCp和抑制剂结合的ΔCp的比较显示,这些过渡态类似物在结构和热力学上与过渡态最相似。 MTAP辅酶和MT-DADMe-ImmA和MT-tubercidin配合物的分子动力学模拟显示很小,但受抑制的配合物的动态运动增加。对MTAP-抑制剂配合物的可变温度CD光谱研究表明,在与过渡态类似物配合物中,蛋白质具有显着的热稳定性(至Tm = 99°C)。

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