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Functional analysis of Gln-237 mutants of HhaI methyltransferase.

机译:HhaI甲基转移酶Gln-237突变体的功能分析。

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When the HhaI (cytosine-5) methyltransferase (M.HhaI) binds DNA it causes the target cytosine to be flipped 180 degrees out of the helix. The space becomes occupied by two amino acids, Ser-87 and Gln-237, which enter the helix from opposite sides and form a hydrogen bond to each other. Gln-237 may be involved in specific sequence recognition since it forms three hydrogen bonds to the orphan guanosine, which is the partner of the target cytosine. We have prepared all 19 mutants of Gln-237 and tested their biochemical properties. We find that mutations of this residue greatly affect the stability of the M.HhaI-DNA complex without affecting the enzyme's specificity for the target sequence. Surprisingly, all mutants retain detectable levels of enzymatic activity.
机译:当HhaI(胞嘧啶5)甲基转移酶(M.HhaI)与DNA结合时,会导致目标胞嘧啶从螺旋中翻转180度。该空间被两个氨基酸Ser-87和Gln-237占据,这两个氨基酸从相反侧进入螺旋并彼此形成氢键。 Gln-237可能参与特定的序列识别,因为它与作为目标胞嘧啶伴侣的孤鸟鸟苷形成三个氢键。我们已经准备了19个Gln-237突变体,并测试了它们的生化特性。我们发现该残基的突变极大地影响了M.HhaI-DNA复合物的稳定性,而没有影响酶对靶序列的特异性。出人意料的是,所有突变体均保留了可检测水平的酶活性。

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