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首页> 外文期刊>Organic & biomolecular chemistry >Ab initio study of the binding of Trichostatin A (TSA) in the active site of Histone Deacetylase Like Protein (HDLP)
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Ab initio study of the binding of Trichostatin A (TSA) in the active site of Histone Deacetylase Like Protein (HDLP)

机译:从头开始研究Trichostatin A(TSA)在组蛋白去乙酰化酶样蛋白(HDLP)活性位点中的结合

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Histone deacetylase (HDAC) inhibitors have recently attracted considerable interest because of their therapeutic potential for the treatment of cell proliferative diseases. An X-ray structure of a very potent inhibitor, Trichostatin A (TSA), bound to HDLP (an HDAC analogue isolated from Aquifex aeolicus), is available. From this structure, an active site model (322 atoms), relevant for the binding of TSA and structural analogues, has been derived, and TSA has been minimized in this active site at HF 3-21G~* level. The resulting conformation is in excellent accordance with the X-ray structure, and indicates a deprotonation of the hydroxamic acid in TSA by His 131. Also, a water molecule was minimized in the active site. In addition to a similar deprotonation, in accordance with a possible catalytic mechanism of HDAC as proposed by Finnin et al. (M. S. Finnin, J. R. Donigian, A. Cohen, V. M. Richon, R. A. Rifkind and P. A. Marks, Nature, 1999, 401, 188-193), a displacement of the resulting OH~- ion in the active site was observed. Based on these results, the difference in energy of binding between TSA and water was calculated. The resulting value is realistic in respect to experimental binding affinities. Furthermore, the mechanism of action of the His 131-Asp 166 charge relay system was investigated. Although the Asp residue in this motif is known to substantially increase the basicity of the His residue, no proton transfer from His 131 to Asp 166 was observed on binding of TSA or water. However, in the empty protonated active site, this proton transfer does occur.
机译:组蛋白脱乙酰基酶(HDAC)抑制剂最近因其在治疗细胞增生性疾病中的治疗潜力而引起了人们的极大兴趣。有一种非常有效的抑制剂Trichostatin A(TSA)与HDLP(从Aquifex aeolicus分离出的HDAC类似物)结合的X射线结构。从该结构中,得到了与TSA和结构类似物的结合有关的活性位点模型(322个原子),并且在该活性位点中以HF 3-​​21G〜*水平使TSA最小化。所得到的构象与X射线结构非常一致,表明通过His 131使TSA中的异羟肟酸脱质子化。而且,在活性部位中水分子被最小化。除了类似的去质子作用外,按照Finnin等人提出的HDAC可能的催化机理。 (M. S. Finnin,J。R. Donigian,A。Cohen,V。M. Richon,R。A. Rifkind和P. A. Marks,Nature,1999,401,188-193),观察到活性位点中所产生的OH-离子被置换。基于这些结果,计算出TSA和水之间的结合能差。相对于实验结合亲和力,所得值是现实的。此外,还研究了His 131-Asp 166电荷中继系统的作用机理。尽管已知该基序中的Asp残基会大大增加His残基的碱性,但在结合TSA或水时,未观察到质子从His 131转移至Asp 166。但是,在空的质子化活性位点中,确实发生了质子转移。

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