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Unwinding of primer-templates by archaeal family-B DNA polymerases in response to template-strand uracil

机译:响应模板链尿嘧啶的古细菌B族DNA聚合酶解开引物模板

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摘要

Archaeal family-B DNA polymerases bind tightly to deaminated bases and stall replication on encountering uracil in template strands, four bases ahead of the primer-template junction. Should the polymerase progress further towards the uracil, for example, to position uracil only two bases in front of the junction, 3′–5′ proof-reading exonuclease activity becomes stimulated, trimming the primer and re-setting uracil to the +4 position. Uracil sensing prevents copying of the deaminated base and permanent mutation in 50% of the progeny. This publication uses both steady-state and time-resolved 2-aminopurine fluorescence to show pronounced unwinding of primer-templates with Pyrococcus furiosus (Pfu) polymerase–DNA complexes containing uracil at +2; much less strand separation is seen with uracil at +4. DNA unwinding has long been recognized as necessary for proof-reading exonuclease activity. The roles of M247 and Y261, amino acids suggested by structural studies to play a role in primer-template unwinding, have been probed. M247 appears to be unimportant, but 2-aminopurine fluorescence measurements show that Y261 plays a role in primer-template strand separation. Y261 is also required for full exonuclease activity and contributes to the fidelity of the polymerase.
机译:古细菌B族DNA聚合酶与脱氨基碱基紧密结合,并在遇到模板链中的尿嘧啶时停止复制,即在引物-模板连接处的四个碱基处。如果聚合酶进一步向尿嘧啶发展,例如,将尿嘧啶仅在连接的两个碱基前定位,则会刺激3'–5'校对核酸外切酶活性,从而修饰引物并将尿嘧啶重新设置为+4位置。尿嘧啶感测可防止50%的子代复制脱氨基碱基和永久突变。该出版物同时使用了稳态和时间分辨的2-氨基嘌呤荧光,显示了激烈火球菌(Pfu)聚合酶-DNA复合物(含+2尿嘧啶)的引物模板的展开。尿嘧啶为+4时,可见的链分离少得多。长期以来,人们一直认为DNA展开对于校对核酸外切酶活性是必需的。已探究了结构研究表明的氨基酸M247和Y261在引物模板展开中的作用。 M247似乎并不重要,但是2-氨基嘌呤荧光测量显示Y261在引物-模板链分离中起作用。 Y261对于完整的核酸外切酶活性也是必需的,并且有助于聚合酶的保真度。

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