Petersen B L, Kannangara C G, Henningsen K W
Department of Ecology and Molecular Biology, Royal Veterinary and Agricultural University, Frederksberg, Denmark.
Arch Microbiol. 1999 Feb;171(3):146-50. doi: 10.1007/s002030050692.
Insertion of magnesium into protoporphyrin IX is a complex ATP-dependent reaction catalysed by the enzyme Mg-chelatase. Three separate proteins (Mg-chelatase subunits), designated as D, H and I, are involved in the chelation reaction. The genes encoding the Mg-chelatase subunits of the green sulfur bacterium Chlorobium vibrioforme and of the cyanobacterium Synechocystis strain PCC6803 were expressed in Escherichia coli. The recombinant proteins were purified, tested for ATPase and phosphate exchange activities, and compared with the activities of the corresponding subunits of Rhodobacter sphaeroides. The Synechocystis strain PCC6803 I subunit and the C. vibrioforme H and I subunits hydrolysed ATP at the rates of 2.0, 1.8 and 0.16 nmol (mg protein)-1 min-1, respectively. The ATPase activity of the C. vibrioforme H subunit was similar to that reported for the R. sphaeroides H subunit. The Synechocystis strain PCC6803 H subunit failed to hydrolyse ATP. The I subunit of Synechocystis strain PCC6803 and C. vibrioforme catalysed a transfer of PO4 from ATP to ADP (exchange activity) at the rate of 1.75 +/- 0.15 nmol (mg protein)-1 min-1. This exchange rate was 300-fold lower than that reported for the R. sphaeroides I subunit. The PO4 exchange activities were correlated with the presence of the sequence GXRGTGKSTXVRALA in the primary structure of the three I subunits. Mg-chelatase activity was reconstituted by combining the three subunits of the same bacterium [rates of 41-89 pmol Mg-deuteroporphyrin (mg protein)-1 min-1]. Heterologous subunit combinations resulted in low or no Mg-chelatase activity.
镁插入原卟啉IX是一个由镁螯合酶催化的复杂的ATP依赖反应。三种不同的蛋白质(镁螯合酶亚基),分别命名为D、H和I,参与螯合反应。编码绿色硫细菌绿弯菌和蓝藻集胞藻PCC6803镁螯合酶亚基的基因在大肠杆菌中表达。重组蛋白被纯化,检测其ATP酶和磷酸交换活性,并与球形红杆菌相应亚基的活性进行比较。集胞藻PCC6803的I亚基以及绿弯菌的H和I亚基水解ATP的速率分别为2.0、1.8和0.16 nmol(mg蛋白)-1 min-1。绿弯菌H亚基的ATP酶活性与报道的球形红杆菌H亚基相似。集胞藻PCC6803的H亚基不能水解ATP。集胞藻PCC6803和绿弯菌的I亚基催化PO4从ATP转移到ADP(交换活性)的速率为1.75±0.15 nmol(mg蛋白)-1 min-1。这个交换速率比报道的球形红杆菌I亚基低300倍。三种I亚基一级结构中GXRGTGKSTXVRALA序列的存在与磷酸交换活性相关。通过组合同一细菌的三个亚基可重建镁螯合酶活性[速率为41-89 pmol Mg-原卟啉(mg蛋白)-1 min-1]。异源亚基组合导致低镁螯合酶活性或无镁螯合酶活性。