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苦瓜籽MAP30酶活性试验研究 被引量:1
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作者 冷波 吴宇 谭诗珂 《药物生物技术》 CAS 2016年第1期52-54,共3页
建立一种快速、高效检测MAP30酶活性的方法,并初步研究其部分生物活性。利用MAP30能以PET28a DNA为底物并脱去一些腺嘌呤碱基使超螺旋DNA解旋的特点,建立了测定MAP30酶活性的一种新方法,检测MAP30的酸碱和温度酶活性。MAP30灵敏度1μg,... 建立一种快速、高效检测MAP30酶活性的方法,并初步研究其部分生物活性。利用MAP30能以PET28a DNA为底物并脱去一些腺嘌呤碱基使超螺旋DNA解旋的特点,建立了测定MAP30酶活性的一种新方法,检测MAP30的酸碱和温度酶活性。MAP30灵敏度1μg,酶催化反应的时间是30 min。最适温度和p H值是37℃和8.0。不同p H值环境对MAP30特性的影响是不同的,酸性越强或碱性越强对MAP30的影响越大。不同温度值环境对MAP30特性的影响是不同的,温度越高MAP30活性损失。因此,合适的酸碱和温度为广泛和深入地研究MAP30酶活性提供了有利的条件。 展开更多
关键词 MAP30 不同保温时间 超螺旋质粒DNA P H 酶活性灵敏度 温度
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Homogeneous label-free fluorescent assay of small molecule-protein interactions using protein binding-inhibited transcription nanomachine 被引量:4
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作者 ZHOU DianMing, WU YiDan, LIU Pei, BAI HaoTian, TANG LiJuan, YU RuQin & JIANG JianHui State Key Laboratory of Chemo/Bio-Sensing and Chemometrics College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, China 《Science China Chemistry》 SCIE EI CAS 2011年第8期1277-1283,共7页
Quantitative analysis of interactions between small molecules and proteins is a central challenge in chemical genetics, molecular diagnostics and drug developments. Here, we developed a RNA transcription nanomachine b... Quantitative analysis of interactions between small molecules and proteins is a central challenge in chemical genetics, molecular diagnostics and drug developments. Here, we developed a RNA transcription nanomachine by assembling T7 RNA polymerase on a small molecule-labeled DNA heteroduplex. The nanomachine, of which the RNA transcription activity can be quantitatively inhibited by protein binding, showed a great potential for small molecule-protein interaction assay. This finding enabled us to develop a novel homogeneous label-free strategy for assays of interactions between small molecules and their protein receptors. Three small molecule compounds and their protein receptors have been used to demonstrate the developed strategy. The results revealed that the protein-small molecule interaction assay strategy shows dynamic responses in the concentration range from 0.5 to 64 nM with a detection limit of 0.2 nM. Due to its label-free, homogeneous, and fluorescence-based detection format, besides its desirable sensitivity this technique could be greatly robust, cost-efficient and readily automated, implying that the developed small molecule-protein interaction assay strategy might create a new methodology for developing intrinsically robust, sensitive and selective platforms for homogeneous protein detection. 展开更多
关键词 nanomachine small molecule-linked DNA T7 RNA polymerase RNA transcription small molecule-protein interaction malachite green aptamer
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