Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes
10.1186/s40246-018-0175-1
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sg-nus-scholar.10635-1762102024-04-24T06:52:13Z Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes Jin, Y Wang, J Bachtiar, M Chong, S.S Lee, C.G.L DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) BIOCHEMISTRY PAEDIATRICS ABC transporter cytochrome P450 histone microRNA RNA splicing factor transcription factor microRNA allele amino acid sequence Article conserved sequence drug response drug transporter gene frameshift mutation gene gene deletion gene expression regulation gene frequency gene structure gene targeting genetic code genetic conservation genetic variability genotype environment interaction human human genome immune response immunogenetics indel mutation major histocompatibility complex natural selection population differentiation positive selection protein function protein structure purifying selection regulator gene single nucleotide polymorphism amino acid substitution genetic selection genetics human genome innate immunity regulatory sequence RNA splicing single nucleotide polymorphism Alleles Amino Acid Substitution Genome, Human Humans Immunity, Innate INDEL Mutation MicroRNAs Polymorphism, Single Nucleotide Regulatory Sequences, Nucleic Acid RNA Splicing Selection, Genetic 10.1186/s40246-018-0175-1 Human Genomics 12 1 43 2020-09-14T08:30:22Z 2020-09-14T08:30:22Z 2018 Article Jin, Y, Wang, J, Bachtiar, M, Chong, S.S, Lee, C.G.L (2018). Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes. Human Genomics 12 (1) : 43. ScholarBank@NUS Repository. https://doi.org/10.1186/s40246-018-0175-1 1473-9542 https://scholarbank.nus.edu.sg/handle/10635/176210 Unpaywall 20200831 |
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ABC transporter cytochrome P450 histone microRNA RNA splicing factor transcription factor microRNA allele amino acid sequence Article conserved sequence drug response drug transporter gene frameshift mutation gene gene deletion gene expression regulation gene frequency gene structure gene targeting genetic code genetic conservation genetic variability genotype environment interaction human human genome immune response immunogenetics indel mutation major histocompatibility complex natural selection population differentiation positive selection protein function protein structure purifying selection regulator gene single nucleotide polymorphism amino acid substitution genetic selection genetics human genome innate immunity regulatory sequence RNA splicing single nucleotide polymorphism Alleles Amino Acid Substitution Genome, Human Humans Immunity, Innate INDEL Mutation MicroRNAs Polymorphism, Single Nucleotide Regulatory Sequences, Nucleic Acid RNA Splicing Selection, Genetic |
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ABC transporter cytochrome P450 histone microRNA RNA splicing factor transcription factor microRNA allele amino acid sequence Article conserved sequence drug response drug transporter gene frameshift mutation gene gene deletion gene expression regulation gene frequency gene structure gene targeting genetic code genetic conservation genetic variability genotype environment interaction human human genome immune response immunogenetics indel mutation major histocompatibility complex natural selection population differentiation positive selection protein function protein structure purifying selection regulator gene single nucleotide polymorphism amino acid substitution genetic selection genetics human genome innate immunity regulatory sequence RNA splicing single nucleotide polymorphism Alleles Amino Acid Substitution Genome, Human Humans Immunity, Innate INDEL Mutation MicroRNAs Polymorphism, Single Nucleotide Regulatory Sequences, Nucleic Acid RNA Splicing Selection, Genetic Jin, Y Wang, J Bachtiar, M Chong, S.S Lee, C.G.L Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
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10.1186/s40246-018-0175-1 |
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DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) |
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DEAN'S OFFICE (DUKE-NUS MEDICAL SCHOOL) Jin, Y Wang, J Bachtiar, M Chong, S.S Lee, C.G.L |
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Article |
author |
Jin, Y Wang, J Bachtiar, M Chong, S.S Lee, C.G.L |
author_sort |
Jin, Y |
title |
Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
title_short |
Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
title_full |
Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
title_fullStr |
Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
title_full_unstemmed |
Architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
title_sort |
architecture of polymorphisms in the human genome reveals functionally important and positively selected variants in immune response and drug transporter genes |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/176210 |
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1800914421473607680 |