A molecular electronegativity distance vector(M)based on 13 atomic types has been used to describe the structures of 19 conjugates(LHCc)of levofloxacin-thiadiazole HDAC inhibitor(HDACi)and related inhibitory activitie...A molecular electronegativity distance vector(M)based on 13 atomic types has been used to describe the structures of 19 conjugates(LHCc)of levofloxacin-thiadiazole HDAC inhibitor(HDACi)and related inhibitory activities(pH,i=1,2,6)of LHCc against histone deacetylases(HDACs,such as HDAC1,HDAC2 and HDAC6).The quantitative structure-activity relationships(QSAR)were established by using leaps-and-bounds regression analysis for the inhibitory activities(pH)of 19 above compounds to HDAC1,HDAC2 and HDAC6 along with M.The correlation coefficients(R~2)and the leave-one-out(LOO)cross validation Rfor the pH,pHand pHmodels were 0.976 and 0.949;0.985 and 0.977;0.976 and 0.932,respectively.The QSAR models had favorable correlations,as well as robustness and good prediction capability by R~2,F,R~2,A,Fand Vtests.Validated by using 3876 training sets,the models have good external prediction ability.The results indicate that the molecular structural units:–CH–(g=1,2),–NH,–OH,=O,–O–and–S–are the main factors which can affect the inhibitory activity of pH,pHas well as pHbioactivities of these compounds directly.Accordingly,the main interactions between HDACs inhibitor and HDACs are hydrophobic interaction,hydrogen bond,and coordination with Znto form compounds,which is consistent with the results in reports.展开更多
为设计出活性更高的组蛋白去乙酰化酶抑制剂,采用Topomer Co MFA方法对52个抑制剂分子进行了3D-QSAR研究,得到q^2=0.735,r^2=0.976的可靠模型。运用基于R基团搜索技术的Topomer Search手段在ZINC2015数据库中进行了虚拟筛选,筛选出八个...为设计出活性更高的组蛋白去乙酰化酶抑制剂,采用Topomer Co MFA方法对52个抑制剂分子进行了3D-QSAR研究,得到q^2=0.735,r^2=0.976的可靠模型。运用基于R基团搜索技术的Topomer Search手段在ZINC2015数据库中进行了虚拟筛选,筛选出八个新颖化合物。预测结果表明:筛选出的化合物活性均较好,其中化合物s-7活性高于化合物43的活性。分子对接技术揭示了化合物结构和靶酶之间的联系,为新型HDACIs的设计及结构优化提供了重要信息和理论指导。展开更多
放射治疗是很多类型的恶性实体肿瘤的标准治疗方法之一,但是放射治疗除了存在一些严重的副作用以外很多恶性肿瘤细胞还具有抵抗放射线的功能,这就导致放射线治疗的局限性以及疗效的减弱。组蛋白超乙酰化作用可以使紧缩的核小体变得松弛...放射治疗是很多类型的恶性实体肿瘤的标准治疗方法之一,但是放射治疗除了存在一些严重的副作用以外很多恶性肿瘤细胞还具有抵抗放射线的功能,这就导致放射线治疗的局限性以及疗效的减弱。组蛋白超乙酰化作用可以使紧缩的核小体变得松弛,调控细胞凋亡及分化相关基因(Bim and Bmf)的表达,诱导细胞凋亡及分化,增强恶性肿瘤细胞对于放射线的敏感性。组蛋白去乙酰化酶抑制剂可以诱导组蛋白超乙酰化,用于恶性肿瘤的治疗,同时组蛋白去乙酰化酶抑制剂作为放射增敏剂有明显的抗肿瘤作用,并减少放射线治疗的剂量级照射时间,明显减轻放射线引起的副作用。组蛋白去乙酰化酶抑制剂很有可能成为肿瘤分子治疗的新靶点。检索近年来的SCI文章,国内外的学者主要是在蛋白质层面阐述组蛋白去乙酰化酶抑制剂作为放射增敏剂抗肿瘤作用机制,本文首次提出组蛋白去乙酰化酶抑制剂增强放射线促进恶性肿瘤细胞凋亡的特定基因(Bim and Bmf)并结合最新的组蛋白去乙酰化酶抑制剂分类进行综述。展开更多
基金supported by the National Natural Science Foundation of China(21473081,21075138)special fund of State Key Laboratory of Structure Chemistry(20160028)
文摘A molecular electronegativity distance vector(M)based on 13 atomic types has been used to describe the structures of 19 conjugates(LHCc)of levofloxacin-thiadiazole HDAC inhibitor(HDACi)and related inhibitory activities(pH,i=1,2,6)of LHCc against histone deacetylases(HDACs,such as HDAC1,HDAC2 and HDAC6).The quantitative structure-activity relationships(QSAR)were established by using leaps-and-bounds regression analysis for the inhibitory activities(pH)of 19 above compounds to HDAC1,HDAC2 and HDAC6 along with M.The correlation coefficients(R~2)and the leave-one-out(LOO)cross validation Rfor the pH,pHand pHmodels were 0.976 and 0.949;0.985 and 0.977;0.976 and 0.932,respectively.The QSAR models had favorable correlations,as well as robustness and good prediction capability by R~2,F,R~2,A,Fand Vtests.Validated by using 3876 training sets,the models have good external prediction ability.The results indicate that the molecular structural units:–CH–(g=1,2),–NH,–OH,=O,–O–and–S–are the main factors which can affect the inhibitory activity of pH,pHas well as pHbioactivities of these compounds directly.Accordingly,the main interactions between HDACs inhibitor and HDACs are hydrophobic interaction,hydrogen bond,and coordination with Znto form compounds,which is consistent with the results in reports.
文摘为设计出活性更高的组蛋白去乙酰化酶抑制剂,采用Topomer Co MFA方法对52个抑制剂分子进行了3D-QSAR研究,得到q^2=0.735,r^2=0.976的可靠模型。运用基于R基团搜索技术的Topomer Search手段在ZINC2015数据库中进行了虚拟筛选,筛选出八个新颖化合物。预测结果表明:筛选出的化合物活性均较好,其中化合物s-7活性高于化合物43的活性。分子对接技术揭示了化合物结构和靶酶之间的联系,为新型HDACIs的设计及结构优化提供了重要信息和理论指导。
文摘放射治疗是很多类型的恶性实体肿瘤的标准治疗方法之一,但是放射治疗除了存在一些严重的副作用以外很多恶性肿瘤细胞还具有抵抗放射线的功能,这就导致放射线治疗的局限性以及疗效的减弱。组蛋白超乙酰化作用可以使紧缩的核小体变得松弛,调控细胞凋亡及分化相关基因(Bim and Bmf)的表达,诱导细胞凋亡及分化,增强恶性肿瘤细胞对于放射线的敏感性。组蛋白去乙酰化酶抑制剂可以诱导组蛋白超乙酰化,用于恶性肿瘤的治疗,同时组蛋白去乙酰化酶抑制剂作为放射增敏剂有明显的抗肿瘤作用,并减少放射线治疗的剂量级照射时间,明显减轻放射线引起的副作用。组蛋白去乙酰化酶抑制剂很有可能成为肿瘤分子治疗的新靶点。检索近年来的SCI文章,国内外的学者主要是在蛋白质层面阐述组蛋白去乙酰化酶抑制剂作为放射增敏剂抗肿瘤作用机制,本文首次提出组蛋白去乙酰化酶抑制剂增强放射线促进恶性肿瘤细胞凋亡的特定基因(Bim and Bmf)并结合最新的组蛋白去乙酰化酶抑制剂分类进行综述。