Srivastava A, Modak M J
J Biol Chem. 1980 Mar 10;255(5):2000-4.
Reverse transcriptase isolated from avian myeloblastosis virus (AMV) and Rauscher murine leukemia virus (RLV) were examined for their ability to catalyze polymerization, ribonuclease H, pyrophosphate exchange, and pyrophosphorolysis reactions. A detailed characterization and a study of requirements for the expression of pyrophosphate exchange and pyrophosphorolysis reactions indicated that a variety of RNA and DNA template-primers supported these catalytic reactions. Furthermore, hydrogen bonding of template to primer was essential, although RNA:RNA template-primers, e.g. poly(rA) . (rU)9 or 70 S RNA . tRNA complex, were not utilized for these reactions. AMV enzyme required Mg2+, and RLV enzyme Mn2+, as the preferred divalent metal ion for the expression of these activities. Response of various catalytic reactions to site-specific inhibitors revealed that polymerization and pyrophosphate exchange reactions were susceptible to reagents that affected either the substrate or the template binding site, intrinsic zinc, or sulfhydryl groups. RNase H and pyrophosphorolysis activities, on the other hand, exhibited susceptibility only to the template site-specific reagent. We, therefore, conclude that RNase H and pyrophosphorolysis reactions are catalyzed through the template binding site while polymerization and pyrophosphate exchange reactions require additional participation of the substrate binding site, as well as that of intrinsic zinc and the presence of reactive sulfhydryl groups.
对从禽成髓细胞瘤病毒(AMV)和劳氏鼠白血病病毒(RLV)中分离出的逆转录酶进行了检测,以考察它们催化聚合反应、核糖核酸酶H、焦磷酸交换反应和焦磷酸解反应的能力。对焦磷酸交换反应和焦磷酸解反应的表达要求进行的详细表征和研究表明,多种RNA和DNA模板引物支持这些催化反应。此外,模板与引物之间的氢键至关重要,尽管RNA:RNA模板引物,如聚(rA)·(rU)9或70S RNA·tRNA复合物,未用于这些反应。AMV酶需要Mg2+,而RLV酶需要Mn2+,作为表达这些活性的首选二价金属离子。各种催化反应对位点特异性抑制剂的反应表明,聚合反应和焦磷酸交换反应易受影响底物或模板结合位点、内在锌或巯基的试剂的影响。另一方面,核糖核酸酶H和焦磷酸解活性仅对模板位点特异性试剂敏感。因此,我们得出结论,核糖核酸酶H和焦磷酸解反应是通过模板结合位点催化的,而聚合反应和焦磷酸交换反应需要底物结合位点以及内在锌和活性巯基的额外参与。