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Extensive mutagenesis experiments corroborate a structural model for the DNA deaminase domain of APOBEC3G.


ABSTRACT: APOBEC3G is a single-strand DNA cytosine deaminase capable of blocking retrovirus and retrotransposon replication. APOBEC3G has two conserved zinc-coordinating motifs but only one is required for catalysis. Here, deletion analyses revealed that the minimal catalytic domain consists of residues 198-384. Size exclusion assays indicated that this protein is monomeric. Many (31/69) alanine substitution derivatives of APOBEC3G198-384 retained significant to full levels of activity. These data corroborated an APOBEC2-based structural model for the catalytic domain of APOBEC3G indicating that most non-essential residues are solvent accessible and most essential residues cluster within the protein core.

SUBMITTER: Chen KM 

PROVIDER: S-EPMC2014798 | biostudies-literature | 2007 Oct

REPOSITORIES: biostudies-literature

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Extensive mutagenesis experiments corroborate a structural model for the DNA deaminase domain of APOBEC3G.

Chen Kuan-Ming KM   Martemyanova Natalia N   Lu Yongjian Y   Shindo Keisuke K   Matsuo Hiroshi H   Harris Reuben S RS  

FEBS letters 20070907 24


APOBEC3G is a single-strand DNA cytosine deaminase capable of blocking retrovirus and retrotransposon replication. APOBEC3G has two conserved zinc-coordinating motifs but only one is required for catalysis. Here, deletion analyses revealed that the minimal catalytic domain consists of residues 198-384. Size exclusion assays indicated that this protein is monomeric. Many (31/69) alanine substitution derivatives of APOBEC3G198-384 retained significant to full levels of activity. These data corrobo  ...[more]

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