Methylation Dependent Functional Switch Mechanism of the Escherichia coli Ada Protein.
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概要
- 論文の詳細を見る
NMR studies have revealed the mechanism of a functional switch in the Escherichia coli Ada protein, which converts the DNA methyltransferase to a transcriptional regulator. The Ada protein acquires its ability to bind specific DNA sequences after an irreversible methyl transfer to its own cysteine residue (Cys69) from methyl-phosphotriesters within the alkylated DNA. NMR analysis have revealed that the segment from residues 102 to 123 forms a helix-turn-helix structure, and a site-directed mutagenesis study has identified the second helix to play a crucial role in specific recognition of DNA. NMR experiments on the methylated protein-DNA complex showed that although the major contacts are made by residues within the recognition helix, the S-methyl group at Cys69 come into direct contact with the cognate DNA. Therefore, the direct contact of this region after methylation is the "switch" which converts the Ada protein from a nonspecific DNA binding form to a transcription factor.
- 日本学士院の論文
著者
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Sekiguchi Mutsuo
Medical Institute Of Bioregulation Kyushu University
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SAKASHITA HITOSHI
Protein Engineering Research Institute
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MORIKAWA KOSUKE
Protein Engineering Research Institute
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SAKUMA Takahiko
Tokyo Metropolitan University
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AKITOMO Yoshiko
Protein Engineering Research Institute
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KAINOSHO Masatsune
Tokyo Metropolitan University
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Sekiguchi Mutsuo
Medical Institute of Bioregulation, Kyushu University
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OHKUBO Tadayasu
Japan Advanced Institute of Science and Technology
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- Methylation Dependent Functional Switch Mechanism of the Escherichia coli Ada Protein.