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In silico and in vivo studies of molecular structures and mechanisms of AtPCS1 protein involved in binding arsenite and/or cadmium in plant cells
Journal article   Peer reviewed

In silico and in vivo studies of molecular structures and mechanisms of AtPCS1 protein involved in binding arsenite and/or cadmium in plant cells

Noor Nahar, Aminur Rahman, Maria Moś, Tomasz Warzecha, Sibdas Ghosh, Khaled Hossain, Neelu N Nawani and Abul Mandal
Journal of molecular modeling, Vol.20(3), pp.2104-2104
01/03/2014
PMID: 24554125

Abstract

Amino Acid Sequence Aminoacyltransferases - chemistry Aminoacyltransferases - genetics Aminoacyltransferases - metabolism Arabidopsis - drug effects Arabidopsis - genetics Arabidopsis - metabolism Arabidopsis Proteins - chemistry Arabidopsis Proteins - genetics Arabidopsis Proteins - metabolism Arsenites - metabolism Arsenites - pharmacology Binding Sites - genetics Cadmium - metabolism Cadmium - pharmacology Computer Simulation Dipeptides - chemistry Dipeptides - metabolism Dose-Response Relationship, Drug Gene Expression Regulation, Enzymologic Gene Expression Regulation, Plant Models, Molecular Molecular Sequence Data Mutation Plant Leaves - drug effects Plant Leaves - genetics Plant Leaves - metabolism Protein Binding Protein Structure, Secondary Protein Structure, Tertiary Reverse Transcriptase Polymerase Chain Reaction

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