Van Cleve M D, Gumport R I
Department of Chemistry, University of Virginia, Charlottesville 22901.
Biochemistry. 1992 Jan 21;31(2):334-9. doi: 10.1021/bi00117a004.
A complete understanding of the sequence-specific interaction between the EcoRI restriction endonuclease and its DNA substrate requires identification of all contacts between the enzyme and substrate, and evaluation of their significance. We have searched for possible contacts adjacent to the recognition site, GAATTC, by using a series of substrates with differing lengths of flanking sequence. Each substrate is a duplex of non-self-complementary oligodeoxyribonucleotides in which the recognition site is flanked by six base pairs on one side and from zero to three base pairs on the other. Steady-state kinetic values were determined for the cleavage of each strand of these duplexes. A series of substrates in which the length of flanking sequence was varied on both sides of the hexamer was also examined. The enzyme cleaved both strands of each of the substrates. Decreasing the flanking sequence to fewer than three base pairs on one side of the recognition site induced an asymmetry in the rates of cleavage of the two strands. The scissile bond nearest the shortening sequence was hydrolyzed with increasing rapidity as base pairs were successively removed. Taken together, the KM and kcat values obtained may be interpreted to indicate the relative importance of several likely enzyme-substrate contacts located outside the canonical hexameric recognition site.
要全面理解EcoRI限制性内切核酸酶与其DNA底物之间的序列特异性相互作用,需要确定该酶与底物之间的所有接触点,并评估它们的重要性。我们通过使用一系列侧翼序列长度不同的底物,寻找识别位点GAATTC附近可能的接触点。每个底物都是非自我互补寡脱氧核糖核苷酸的双链体,其中识别位点一侧侧翼有六个碱基对,另一侧有零至三个碱基对。测定了这些双链体每条链切割的稳态动力学值。还研究了一系列在六聚体两侧侧翼序列长度均不同的底物。该酶切割了每个底物的两条链。将识别位点一侧的侧翼序列减少到少于三个碱基对会导致两条链切割速率出现不对称。随着碱基对相继去除,最靠近缩短序列的可切割键水解速度越来越快。综合来看,所获得的KM和kcat值可以解释为表明位于典型六聚体识别位点之外的几个可能的酶-底物接触点的相对重要性。