Daniell H, Zheng D, Nielsen B L
Department of Botany and Microbiology, Auburn University, AL 36849-5407.
Biochem Biophys Res Commun. 1995 Mar 8;208(1):287-94. doi: 10.1006/bbrc.1995.1336.
An in vitro DNA replication system from maize mitochondria has been isolated and characterized. Maize mtDNA polymerase activity was purified about 1100-fold through DEAE cellulose and Heparin-Sepharose columns. In addition to the DNA polymerase activity, this in vitro replication system also contained topoisomerase I, DNA primase and RNA polymerase activities. Optimal conditions for enzyme activity, preferred templates and inhibitors were determined in order to further characterize this in vitro replication system; this system was devoid of any detectable extramitochondrial activity as determined by: a) the mt origin of the DNA polymerase activity as evidenced by studies using different templates and inhibitors, b) absence of chloroplast or nuclear DNA, glucose -6-P-dehydrogenase (known to be present only in the cytosol and chloroplasts) and photosynthetic pigments in the mitochondrial fraction and c) the ability of maize mt topoisomerase I to relax positively supercoiled DNA.
已分离并鉴定了来自玉米线粒体的体外DNA复制系统。通过DEAE纤维素柱和肝素-琼脂糖柱,玉米线粒体DNA聚合酶活性被纯化了约1100倍。除了DNA聚合酶活性外,该体外复制系统还含有拓扑异构酶I、DNA引发酶和RNA聚合酶活性。为了进一步表征该体外复制系统,确定了酶活性的最佳条件、优选模板和抑制剂;通过以下方式确定该系统没有任何可检测到的线粒体外活性:a)使用不同模板和抑制剂的研究证明DNA聚合酶活性的线粒体来源,b)线粒体部分中不存在叶绿体或核DNA、葡萄糖-6-磷酸脱氢酶(已知仅存在于细胞质和叶绿体中)和光合色素,以及c)玉米线粒体拓扑异构酶I使正超螺旋DNA松弛的能力。