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DNA bending induced by DNA (cytosine-5) methyltransferases

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PubMed Central2000-08-15 更新2026-05-16 收录
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DNA bending induced by six DNA (cytosine-5) methyltransferases was studied using circular permutation gel mobility shift assay. The following bend angles were obtained: M.BspRI (GG(m5)CC), 46–50°; M.HaeIII (GG(m5)CC), 40–43°; M.SinI (GGW(m5)CC), 34–37°; M.Sau96I (GGN(m5)CC), 52–57°; M.HpaII (C(m5)CGG), 30°; and M.HhaI (G(m5)CGC), 13°. M.HaeIII was also tested with fragments carrying a methylated binding site, and it was found to induce a 32° bend. A phase-sensitive gel mobility shift assay, using a set of DNA fragments with a sequence-directed bend and a single methyltransferase binding site, indicated that M.HaeIII and M.BspRI bend DNA toward the minor groove. The DNA curvature induced by M.HaeIII contrasts with the lack of DNA bend observed for a covalent M.HaeIII–DNA complex in an earlier X-ray study. Our results and data from other laboratories show a correlation between the bending properties and the recognition specificities of (cytosine-5) methyltransferases: enzymes recognizing a cytosine 3′ to the target cytosine tend to induce greater bends than enzymes with guanine in this position. We suggest that the observed differences indicate different mechanisms employed by (cytosine-5) methyltransferases to stabilize the helix after the target base has flipped out.

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2000-08-15
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