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Characterization of the interaction of lambda exonuclease with the ends of DNA.

机译:λ核酸外切酶与DNA末端相互作用的表征。

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Lambda exonuclease processively degrades one strand of double-stranded DNA (dsDNA) in the 5"-3" direction. To understand the mechanism through which this enzyme generates high processivity we are analyzing the first step in the reaction, namely the interaction of lambda exonuclease with the ends of substrate DNA. Endonuclease mapping of lambda exonuclease bound to DNA has shown that the enzyme protects approximately 13-14 bp on dsDNA, and no nucleo-tides on the single-stranded tail of the DNA product. We have developed a rapid fluorescence-based assay using 2-aminopurine and measured the steady-state rate constants for different end-structures of DNA. The relative k(cat)for 5" ends decreases in the order 5" recessed > blunt 5" overhang. However, k(cat)/K(m)remains relatively constant for these different structures suggesting they are all used equally efficiently as substrates. From these data we propose that a single-stranded 5" overhang end can bind non-productively to the enzyme and the non-hydrolyzed strand is required to aid in the proper alignment of the 5" end. We have also measured the length-dependence of the steady-state rate para-meters and find that they are consistent with a high degree of processivity.
机译:Lambda核酸外切酶在5“ -3”方向上逐步降解一串双链DNA(dsDNA)。为了了解这种酶产生高生产力的机制,我们正在分析反应的第一步,即λ核酸外切酶与底物DNA末端的相互作用。与DNA结合的λ核酸外切酶的核酸内切酶图谱显示,该酶在dsDNA上保护大约13-14 bp,并且在DNA产物的单链尾部上没有核苷酸。我们已经开发出一种使用2-氨基嘌呤的基于荧光的快速测定方法,并测量了DNA不同末端结构的稳态速率常数。 5“端的相对k(cat)以5”凹陷>钝 5“悬垂的顺序减小。但是,对于这些不同的结构,k(cat)/ K(m)保持相对恒定,这表明它们均被有效地使用根据这些数据,我们建议单链5“突出端可以非生产性地与酶结合,并且需要非水解链来帮助5”端正确对齐。我们还测量了稳态速率参数的长度相关性,发现它们与高度的连续性是一致的。

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