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MCDB: A comprehensive curated mitotic catastrophe database for retrieval, protein sequence alignment, and target prediction 被引量:4
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作者 Le Zhang Lei Zhang +5 位作者 Yue Guo Ming Xiao Lu Feng Chengcan Yang Guan Wang Liang Ouyang 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2021年第10期3092-3104,共13页
Mitotic catastrophe(MC)is a form of programmed cell death induced by mitotic process disorders,which is very important in tumor prevention,development,and drug resistance.Because rapidly increased data for MC is vigor... Mitotic catastrophe(MC)is a form of programmed cell death induced by mitotic process disorders,which is very important in tumor prevention,development,and drug resistance.Because rapidly increased data for MC is vigorously promoting the tumor-related biomedical and clinical study,it is urgent for us to develop a professional and comprehensive database to curate MC-related data.Mitotic Catastrophe Database(MCDB)consists of 1214 genes/proteins and 5014 compounds collected and organized from more than 8000 research articles.Also,MCDB defines the confidence level,classification criteria,and uniform naming rules for MC-related data,which greatly improves data reliability and retrieval convenience.Moreover,MCDB develops protein sequence alignment and target prediction functions.The former can be used to predict new potential MC-related genes and proteins,and the latter can facilitate the identification of potential target proteins of unknown MC-related compounds.In short,MCDB is such a proprietary,standard,and comprehensive database for MC-relate data that will facilitate the exploration of MC from chemists to biologists in the fields of medicinal chemistry,molecular biology,bioinformatics,oncology and so on.The MCDB is distributed on http://www.combio-lezhang.online/MCDB/indexhtml/. 展开更多
关键词 Mitotic catastrophe DATABASE protein sequence analysis Target prediction Data mining
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Machine intelligence,rough sets and rough-fuzzy granular computing:uncertainty handling in bio-informatics and Web intelligence
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作者 Sankar K Pal 《重庆邮电大学学报(自然科学版)》 北大核心 2010年第6期720-723,760,共5页
Machine intelligence,is out of the system by the artificial intelligence shown.It is usually achieved by the average computer intelligence.Rough sets and Information Granules in uncertainty management and soft computi... Machine intelligence,is out of the system by the artificial intelligence shown.It is usually achieved by the average computer intelligence.Rough sets and Information Granules in uncertainty management and soft computing and granular computing is widely used in many fields,such as in protein sequence analysis and biobasis determination,TSM and Web service classification Etc. 展开更多
关键词 machine intelligence rough sets information granules rough-fuzzy case generation protein sequence analysis and biobasis determination TSM web service classification
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Recombinant scorpion insectotoxin AaIT kills specifically insect cells but not human cells 被引量:5
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作者 SHENG JIAN JI, FENG LIU, ER Qiu LI, Yu XIAN ZHUThe National Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing 100871, China 《Cell Research》 SCIE CAS CSCD 2002年第2期143-150,共8页
The nucleotide sequence deduced from the amino acid sequence of the scorpion insectotoxin AaIT was chemically synthesized and was expressed in Escherichia coli. The authenticity of this in vitro expressed peptide was ... The nucleotide sequence deduced from the amino acid sequence of the scorpion insectotoxin AaIT was chemically synthesized and was expressed in Escherichia coli. The authenticity of this in vitro expressed peptide was confirmed by N-terminal peptide sequencing. Two groups of bioassays, artificial diet incorporation assay and contact insecticidal effect assay, were carried out separately to verify the toxicity of this recombinant toxin. At the end of a 24 h experimental period, more than 60% of the testing diamondback moth (Plutella xylostella) larvae were killed in both groups with LC50 value of 18.4 microM and 0.70 microM respectively. Cytotoxicity assay using cultured Sf9 insect cells and MCF-7 human cells demonstrated that the toxin AaIT had specific toxicity against insect cells but not human cells. Only 0.13 microM recombinant toxin was needed to kill 50% of cultured insect cells while as much as 1.3 microM toxin had absolutely no effect on human cells. Insect cells produced obvious intrusions from their plasma membrane before broken up. We infer that toxin AaIT bind to a putative sodium channel in these insect cells and open the channel persistently, which would result in Na+ influx and finally cause destruction of insect cells. 展开更多
关键词 Amino Acid sequence Animals Base sequence Biological Assay Cell Line Cloning Molecular Dose-Response Relationship Drug Electrophoresis Polyacrylamide Gel Escherichia coli Humans Inhibitory Concentration 50 Insects Molecular sequence Data Peptides protein Structure Tertiary Recombinant proteins Research Support Non-U.S. Gov't Scorpion Venoms sequence analysis protein Sodium Time Factors Tumor Cells Cultured
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Overexpression of a novel gene , Cms1, can rescue the growth arrest of a Saccharomyces cerevisiae mcm10 suppressor 被引量:1
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作者 WangJW WuJR 《Cell Research》 SCIE CAS CSCD 2001年第4期285-291,共7页
MCM10 protein is an essential replication factor involved in the initiation of DNA replication. A mcm10 mutant (mcm10-1) of budding yeast shows a growth arrest at 37 degrees C. In the present work, we have isolated a ... MCM10 protein is an essential replication factor involved in the initiation of DNA replication. A mcm10 mutant (mcm10-1) of budding yeast shows a growth arrest at 37 degrees C. In the present work, we have isolated a mcm10-1 suppressor strain, which grows at 37 degrees C. Interestingly, this mcm10-1 suppressor undergoes cell cycle arrest at 14 degrees C. A novel gene, YLR003c, is identified by high-copy complementation of this suppressor. We called it as Cms1 (Complementation of Mcm 10 Suppressor). Furthermore, the experiments of transformation show that cells of mcm10-1 suppressor with high-copy plasmid but not low-copy plasmid grow at 14 degrees C, indicating that overexpression of Cms1 can rescue the growth arrest of this mcm10 suppressor at non-permissive temperature. These results suggest that CMS1 protein may functionally interact with MCM10 protein and play a role in the regulation of DNA replication and cell cycle control. 展开更多
关键词 Genes Suppressor Amino Acid sequence Cell Cycle proteins Cell Division Cloning Molecular Genes Fungal Molecular sequence Data Research Support Non-U.S. Gov't Saccharomyces cerevisiae Saccharomyces cerevisiae proteins sequence Alignment sequence analysis protein
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