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The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
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The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
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The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals

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The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals
Journal Article

The clinically relevant CYP2C83 and CYP2C92 haplotype is inherited from Neandertals

2022
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Overview
Genetic variation in genes encoding cytochrome P450 enzymes influences the metabolism of drugs and endogenous compounds. The locus containing the cytochrome genes CYP2C8 and CYP2C9 on chromosome 10 exhibits linkage disequilibrium between the CYP2C8*3 and CYP2C9*2 alleles, forming a haplotype of ~300 kilobases. This haplotype is associated with altered metabolism of several drugs, most notably reduced metabolism of warfarin and phenytoin, leading to toxicity at otherwise therapeutic doses. Here we show that this haplotype is inherited from Neandertals.