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Heterologous Expression,Purification and Enzymatic Characterization of Xylitol Dehydrogenase from the Thermophilic Fungus Talaromyces emersonii
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作者 meng er QU Cong +8 位作者 YI Ke LI Hui-Min DUAN Xin-Yi ZHANG Zhe-Yuan HE Shao-Long LUO Yu-Tao WU Lei ZHANG Dong-Yi LIU Chang-Jun 《中国生物化学与分子生物学报》 北大核心 2025年第7期1007-1018,共12页
The xylitol dehydrogenase(XDH)is a crucial enzyme involved in the xylose utilization in pentose⁃catabolizing yeasts and fungi.In addition to producing xylulose,XDH can also be employed to develop a biosensor for monit... The xylitol dehydrogenase(XDH)is a crucial enzyme involved in the xylose utilization in pentose⁃catabolizing yeasts and fungi.In addition to producing xylulose,XDH can also be employed to develop a biosensor for monitoring xylitol concentration.In this study,the gene encoding the thermophilic fungus Talaromyces emersonii XDH(TeXDH)was heterologously expressed in Escherichia coli BL21(DE3)at 16℃in the soluble form.Recombinant TeXDH with high purity was purified by using a Ni⁃NTA affinity column.Size⁃exclusion chromatography and SDS⁃PAGE analysis demonstrated that the puri⁃fied recombinant TeXDH exists as a native trimer with a molecular mass of approximately 116 kD,and is composed of three identical subunits,each with a molecular weight of around 39 kD.The TeXDH strictly preferred NAD^(+)as a coenzyme to NADP^(+).The optimal temperature and pH of the TeXDH were 40℃and 10.0,respectively.After EDTA treatment,the enzyme activity of TeXDH decreased to 43.26%of the initial enzyme activity,while the divalent metal ions Mg^(2+)or Ca^(2+)could recover the enzyme activity of TeXDH,reaching 103.32%and 110.69%of the initial enzyme activity,respectively,making them the optimal divalent metal ion cofactors for TeXDH enzyme.However,the divalent metal ions of Mn^(2+),Ni^(2+),Cu^(2+),Zn^(2+),Co^(2+),and Cd^(2+)significantly inhibited the activity of TeXDH.ICP⁃MS and molecular doc⁃king studies revealed that 1 mol/L of TeXDH bound 2 mol/L Zn^(2+)ions and 1 mol/L Mg^(2+)ion.Further⁃more,TeXDH exhibited a high specificity for xylitol,laying the foundation for the development of future xylitol biosensors. 展开更多
关键词 xylitol dehydrogenase(XDH) Talaromyces emersonii heterologous expression enzymatic characterization
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蜈蚣毒液中钾离子通道Kv4.1抑制剂SsTx-P2的分离和结构鉴定
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作者 杜灿伟 袁复楚 +3 位作者 段心怡 容明强 孟尔 刘长军 《浙江大学学报(医学版)》 CAS CSCD 北大核心 2024年第2期194-200,共7页
目的:挖掘蜈蚣毒液中的电压门控钾离子通道Kv4.1多肽抑制剂,确定其一级结构,并对其空间结构进行建模分析。方法:利用离子交换层析和反相高效液相色谱对蜈蚣毒液的多肽组分进行分离纯化,通过全细胞膜片钳技术鉴定能够抑制Kv4.1通道的多肽... 目的:挖掘蜈蚣毒液中的电压门控钾离子通道Kv4.1多肽抑制剂,确定其一级结构,并对其空间结构进行建模分析。方法:利用离子交换层析和反相高效液相色谱对蜈蚣毒液的多肽组分进行分离纯化,通过全细胞膜片钳技术鉴定能够抑制Kv4.1通道的多肽;运用基质辅助激光解析电离-飞行时间质谱鉴定多肽的分子量,借助Edman降解测序和二维质谱测序确定多肽的一级结构;基于迭代线程装配细化在线分析建立多肽空间结构模型。结果:从蜈蚣毒液中分离纯化得到一条能够抑制Kv4.1通道的多肽SsTx-P2,分子量为6122.8,氨基酸序列为NH2-ELTWDFVRTCCKLFPDKSECTKACATEFTGGDESRLKDVWPRKLRSGDSRLKD-OH,其在1.0µmol/L浓度下能够抑制Kv4.1通道超过95%的电流。空间结构模型显示,多肽SsTx-P2拥有一个保守的螺旋结构。结论:本文通过分离纯化从蜈蚣毒液中得到一条多肽SsTx-P2,能够强效抑制钾离子通道Kv4.1,其空间结构具有一定的保守性。 展开更多
关键词 蜈蚣 多肽 钾离子通道 Kv4.1通道抑制剂 结构
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