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蒙古黄芪异黄酮合成酶基因密码子偏好性分析 被引量:4
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作者 冯瑞云 田翔 +4 位作者 程宏 王慧杰 梅超 左敏 雷梦林 《山西农业科学》 2019年第3期297-303,共7页
异黄酮是只局限于豆科蝶形花亚科等极少数植物中的一种植物性雌激素,异黄酮合成酶(IFS)是苯丙氨酸分支代谢途径——异黄酮代谢途径的关键酶。为了解蒙古黄芪IFS基因密码子的使用特性,采用CodonW,SPSS软件及EMBOSS在线程序分析蒙古黄芪IF... 异黄酮是只局限于豆科蝶形花亚科等极少数植物中的一种植物性雌激素,异黄酮合成酶(IFS)是苯丙氨酸分支代谢途径——异黄酮代谢途径的关键酶。为了解蒙古黄芪IFS基因密码子的使用特性,采用CodonW,SPSS软件及EMBOSS在线程序分析蒙古黄芪IFS基因密码子的偏好性,并分别与14个物种的IFS以及模式生物基因组进行比较。结果显示,蒙古黄芪IFS基因的密码子选择偏性较弱且较偏好以A/T结尾,而物种间IFS密码子选择偏性则存在一定差异;进化树分析表明,基于IFS编码序列聚类结果比密码子使用偏性分类结果能更准确地反映物种间的亲缘关系;密码子使用频率比较结果发现,酵母真核表达系统更适用于蒙古黄芪IFS基因异源表达系统建立,而蒙古黄芪IFS基因与模式植物基因组之间密码子使用偏性差异较小,尤其拟南芥可能为该基因转基因研究最为理想的受体。 展开更多
关键词 蒙古 密码子偏好性 异黄酮合成酶 聚类分析
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Novel Structural Features of Isoflavone Synthase from Medicago truncatula Shed Light on Its Unique Enzymatic Mechanism
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作者 SHI Chao YE Zhao-Yang +12 位作者 XU Fei DU Xiang-Ning CHEN Zhang-Xin GU Ming-Yue DENG Jie WANG Wei LIU Liang-Yu WANG Mei-Ying SU Xiao-Dong LIU He-Li SHANG Ming-Ying HUANG Li-Xin CHANG Zhen-Zhan 《中国生物化学与分子生物学报》 2025年第8期1204-1213,I0003-I0008,共16页
Isoflavones which mainly distributed in leguminous plants have plenty of health benefits.Isoflavone synthase(IFS)is a membrane-associated cytochrome P450 enzyme(CYP450)which carries out the unique aryl-ring migration ... Isoflavones which mainly distributed in leguminous plants have plenty of health benefits.Isoflavone synthase(IFS)is a membrane-associated cytochrome P450 enzyme(CYP450)which carries out the unique aryl-ring migration and hydroxylation.So far,few crystal structures of plant P450s have been obtained.We determined the crystal structure of IFS from Medicago truncatula at 1.9 by MAD method using a selenomethionine substituted crystal and conducted molecular docking and mutagenesis study.The structure of IFS complexed with imidazole exhibits the helix Iα-loop-helix Iβmotif which corresponds to helix I of other P 450s.Compared with structures of common P450s,IFS/imidazole structure contains an extra domain,i.e.,theγ-domain.The structure reveals a homodimer in which theγ-domain of one molecule interacts with theβ-domain of another.The plane of heme group makes an angle of approximately 40°with the helix Iα-loop-helix Iβmotif.Molecular docking combined with mutagenesis study suggested that Trp-128 and Asp-300 might play important roles in substrate binding and recognition.Phe-301,Ser-303 and Gly-305 from the helix Iα-loop-helix Iβmotif may play important roles in the aryl-ring migration.These novel structural features reveal insights into the unique reaction mechanism of IFS and provide a basis for engineering IFS in leguminous crops for health purpose. 展开更多
关键词 cytochrome P450 enzyme(CYP450) isoflavone synthase(IFS) crystal structure homodimer
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