Mana-Capelli Sebasián, Mandal Atin K, Argüello José M
Department of Chemistry and Biochemistry, Worcester Polytechnic Institute, Worcester, Massachusetts 01609, USA.
J Biol Chem. 2003 Oct 17;278(42):40534-41. doi: 10.1074/jbc.M306907200. Epub 2003 Jul 22.
P1B-type ATPases transport heavy metal ions across cellular membranes. Archaeoglobus fulgidus CopB is a member of this subfamily. We have cloned, expressed in Escherichia coli, and functionally characterized this enzyme. CopB and its homologs are distinguished by a metal binding sequence Cys-Pro-His in their sixth transmembrane segment (H6) and a His-rich N-terminal metal binding domain (His-N-MBD). CopB is a thermophilic protein active at 75 degrees C and high ionic strength. It is activated by Cu2+ with high apparent affinity (K1/2 = 0.28 microm) and partially by Cu+ and Ag+ (22 and 55%, respectively). The higher turnover was associated with a faster phosphorylation rate in the presence of Cu2+. A truncated CopB lacking the first 54 amino acids was constructed to characterize the His-N-MBD. This enzyme showed reduced ATPase activity (50% of wild type) but no changes in metal selectivity, ATP dependence, or phosphorylation levels. However, a slower rate of dephosphorylation of the E2P(Cu2+) form was observed for truncated CopB. The data suggest that the presence of the His residue in the putative transmembrane metal binding site of CopB determines a selectivity for this enzyme that is different for that observed in Cu+/Ag+-ATPases carrying a Cys-Pro-Cys sequence. The His-NMBD appears to have a regulatory role affecting the metal transport rate by controlling the metal release/dephosphorylation rates.
P1B型ATP酶可跨细胞膜转运重金属离子。嗜热栖热菌CopB是该亚家族的成员之一。我们已对该酶进行克隆、在大肠杆菌中表达并对其功能进行了表征。CopB及其同源物的特征在于其第六个跨膜片段(H6)中的金属结合序列Cys-Pro-His以及富含组氨酸的N端金属结合结构域(His-N-MBD)。CopB是一种嗜热蛋白,在75摄氏度和高离子强度下具有活性。它被Cu2+以高表观亲和力(K1/2 = 0.28微摩尔)激活,并部分被Cu+和Ag+激活(分别为22%和55%)。在Cu2+存在的情况下,更高的周转率与更快的磷酸化速率相关。构建了一个缺失前54个氨基酸的截短CopB来表征His-N-MBD。该酶显示出ATP酶活性降低(为野生型的50%),但在金属选择性、ATP依赖性或磷酸化水平方面没有变化。然而,截短的CopB的E2P(Cu2+)形式的去磷酸化速率较慢。数据表明,CopB假定的跨膜金属结合位点中组氨酸的存在决定了该酶的选择性,这与携带Cys-Pro-Cys序列的Cu+/Ag+-ATP酶中观察到的选择性不同。His-NMBD似乎具有调节作用,通过控制金属释放/去磷酸化速率来影响金属转运速率。