3' exonuclease activity in the N-terminal region. Adeletion mutant lacking 231 N-terminal amino acid residues, made in a baculovirus system, did notha'/> Werner syndrome helicase contains a 5'-->3' exonuclease activity that digests DNA and RNA strands in DNA/DNA and RNA/DNA duplexes dependent on unwinding.
首页> 外文期刊>Nucleic Acids Research >Werner syndrome helicase contains a 5'-->3' exonuclease activity that digests DNA and RNA strands in DNA/DNA and RNA/DNA duplexes dependent on unwinding.
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Werner syndrome helicase contains a 5'-->3' exonuclease activity that digests DNA and RNA strands in DNA/DNA and RNA/DNA duplexes dependent on unwinding.

机译:Werner综合征解旋酶含有5'-> 3'核酸外切酶活性,可根据展开方式消化DNA / DNA和RNA / DNA双链体中的DNA和RNA链。

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    摘要

    We show that WRN helicase contains a unique 5'-->3' exonuclease activity in the N-terminal region. Adeletion mutant lacking 231 N-terminal amino acid residues, made in a baculovirus system, did nothave this activity, while it showed ATPase and DNA helicase activities. This exonuclease activity was co-precipitated with the helicase activity using monoclonal antibodies specific to WRN helicase, indicating that it is an integral component with WRN helicase. The exonuclease in WRN helicase does not digest free single-stranded DNA or RNA, but it digests a strand in the duplex DNA or an RNA strand in a RNA/DNA heteroduplex in a 5'-->3' direction dependent on duplex unwinding. The digestion products were identified as 5'-mononucleotides. Our data show that WRN helicase needs a single-stranded 3' overhang region for efficient binding and unwinding of duplex molecules, while blunt-ended or 5' overhang duplex molecules were hardly unwound. These findings suggest that the WRN helicase and integral 5'-->3' exonuclease activities are involved in preventing a hyper-recombination by resolving entangled structures of DNA and RNA/DNA heteroduplexes that may be generated during rep-lication, repair and/or transcription.
    机译:我们显示WRN解旋酶在N端区域包含独特的5'-> 3'核酸外切酶活性。在杆状病毒系统中制造的缺少231个N端氨基酸残基的Adeletion突变体不具有该活性,而具有ATPase和DNA解旋酶的活性。使用对WRN解旋酶特异的单克隆抗体,该核酸外切酶活性与解旋酶活性共沉淀,表明它是WRN解旋酶不可或缺的组成部分。 WRN解旋酶中的核酸外切酶不消化游离的单链DNA或RNA,但会根据双链解绕的5'-> 3'方向消化双链DNA中的链或RNA / DNA异源双链中的RNA链。消化产物被鉴定为5'-单核苷酸。我们的数据表明,WRN解旋酶需要一个单链3'突出端区域才能有效结合和解链双链体分子,而平末端或5'突出端双链体分子几乎不会解链。这些发现表明,WRN解旋酶和完整的5'-> 3'核酸外切酶活性可通过解决在复制,修复和/或复制过程中可能产生的DNA和RNA / DNA异源双链体的纠缠结构来防止超重组。转录。

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