高等学校化学学报
高等學校化學學報
고등학교화학학보
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES
2014年
12期
2605-2611
,共7页
吴云剑%崔颖璐%郑清川%张红星
吳雲劍%崔穎璐%鄭清川%張紅星
오운검%최영로%정청천%장홍성
分子对接%分子动力学模拟%细胞色素P450%结合自由能分析%CYP2C9酶和S-Warfarin复合物
分子對接%分子動力學模擬%細胞色素P450%結閤自由能分析%CYP2C9酶和S-Warfarin複閤物
분자대접%분자동역학모의%세포색소P450%결합자유능분석%CYP2C9매화S-Warfarin복합물
Molecular docking%Molecular dynamics simulation%Cytochrome P450%MM-GB/SA%CYP2 C9 and Warfarin complex
对CYP2C9酶与S-Warfarin复合物的晶体结构进行分子对接、分子动力学模拟、通道分析及结合自由能计算,发现原晶体结构中的结合模式为“亚稳态”,提出了CYP2C9与S-Warfarin结合的可催化模式;比较了CYP2C9与S-和R-Warfarin结合的异同,确定了在结合过程中起重要作用的锚定氨基酸残基,尤其是位于活性位点区域的苯丙氨酸簇。在结合过程中这些残基通过芳香环的移动对稳定底物的结合模式起到至关重要的作用,阐明了该酶呈现相关底物选择性的原因。对于CYP2C9与底物对接模式及立体选择性的研究有助于在分子层面上理解特异性底物与酶的结合特点,为潜在的药物设计提供了合理可信的理论依据。
對CYP2C9酶與S-Warfarin複閤物的晶體結構進行分子對接、分子動力學模擬、通道分析及結閤自由能計算,髮現原晶體結構中的結閤模式為“亞穩態”,提齣瞭CYP2C9與S-Warfarin結閤的可催化模式;比較瞭CYP2C9與S-和R-Warfarin結閤的異同,確定瞭在結閤過程中起重要作用的錨定氨基痠殘基,尤其是位于活性位點區域的苯丙氨痠簇。在結閤過程中這些殘基通過芳香環的移動對穩定底物的結閤模式起到至關重要的作用,闡明瞭該酶呈現相關底物選擇性的原因。對于CYP2C9與底物對接模式及立體選擇性的研究有助于在分子層麵上理解特異性底物與酶的結閤特點,為潛在的藥物設計提供瞭閤理可信的理論依據。
대CYP2C9매여S-Warfarin복합물적정체결구진행분자대접、분자동역학모의、통도분석급결합자유능계산,발현원정체결구중적결합모식위“아은태”,제출료CYP2C9여S-Warfarin결합적가최화모식;비교료CYP2C9여S-화R-Warfarin결합적이동,학정료재결합과정중기중요작용적묘정안기산잔기,우기시위우활성위점구역적분병안산족。재결합과정중저사잔기통과방향배적이동대은정저물적결합모식기도지관중요적작용,천명료해매정현상관저물선택성적원인。대우CYP2C9여저물대접모식급입체선택성적연구유조우재분자층면상리해특이성저물여매적결합특점,위잠재적약물설계제공료합리가신적이론의거。
Cytochrome P450(CYP)2C9, a member of the 2C subfamily of CYPs, plays important role in the oxidative metabolism of amount of current clinical drugs. CYP2C9 shows the substrate regioselectivity toward Warfarin. The currently available X-ray structure of CYP2C9-S-Warfarin complex(PDB ID:1OG5) shows a non-productive orientation of the S-Warfarin bound in the active site of CYP2 C9. A series of investigations including automatic docking, molecular dynamics(MD) simulation, combined with tunnel analysis and the MM-GB/SA calculation, identified a 6-, 7-hydroxylation state of the substrate binding mode in the re-dock complex structure, as well as the “metastable state” in the crystal structure. In addition, the comparison of the CYP2 C9 binding to S-and R-Warfarin shows the structural features relevant to the substrate regioselectivity of CYP2C9. According to 100 ns MD simulations, the key residues that, in the active binding site, particular-ly Phe cluster residues, are proposed to play indispensable role in the stabilization of substrates. The investiga-tion of CYP2 C9-substrate binding modes provides detailed insights into the structural features of human CYP2C9 toward Warfarin at the atomic level, and will be valuable information for drug development.