Functional roles of metal binding domains of the Archaeoglobus fulgidus Cu+-ATPase CopA

被引:90
作者
Mandal, AK [1 ]
Argüello, JM [1 ]
机构
[1] Worcester Polytech Inst, Dept Chem & Biochem, Worcester, MA 01609 USA
关键词
D O I
10.1021/bi034806y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
CopA, a thermophilic membrane ATPase from Archaeoglobus fulgidus, drives the outward movement of Cu+ or Ag+ [Mandal et al. (2002) J. Biol. Chem. 277, 7201-7208]. This, as other P-IB-ATPases, is characterized by a putative metal binding sequence ((CPC382)-P-380) in its sixth transmembrane fragment and cytoplasmic metal binding sequences in its NH2- and COOH-terminal ends (C(27)AMC(30) and (CHHC754)-H-751). Using isolated CopA, we have studied the functional role of these three putative metal binding domains. Replacement of transmembrane Cys residues by Ala results in nonfunctional enzymes that are unable to hydrolyze ATP. However, the CPC --> APA substituted enzyme binds ATP, indicating its correct folding and suggesting that enzyme turnover is prevented by the lack of metal binding to the transmembrane site. Replacement of C-terminal Cys by Ala (C(751,754)A) has no significant effect on ATPase activity, enzyme phosphorylation, apparent binding affinities of ligands, or E1-E2 equilibrium. In contrast, replacement of Cys in the N-terminal metal binding domain (N-MBD) (C(27,30)A) leads to 40% reduction in enzyme turnover. The C(27,30)A enzyme binds Cu+, Ag+, and ATP with the same high apparent affinities as the wild-type CopA. Evidence that N-MBD disruption has no effect on the E1-E2 equilibrium is provided by the normal interaction of ATP acting with low affinity and the unaffected IC50 for vanadate inhibition observed in the C(27,30)A-substituted enzyme. However, replacement C(27,30)A slowed the dephosphorylation of the E2P(metal) form of the enzyme, suggesting a reduction in the rate of metal release. Other investigators have shown the Cu-dependent interaction of isolated N-MBDs from the Wilson disease Cu-ATPase with the ATP binding cytoplasmic domain [Tsivkovskii et al. (2001) J. Biol. Chem. 276, 2234-2242]. Therefore, the data suggest a regulatory mechanism in which the Cu-dependent N-MBD/ATP binding domain interaction would accelerate cation release, the enzyme rate-limiting step, and consequently Cu+ transport.
引用
收藏
页码:11040 / 11047
页数:8
相关论文
共 60 条
[1]   STRUCTURE-FUNCTION-RELATIONSHIPS OF CATION TRANSLOCATION BY CA2+-ATPASE AND NA+,K+-ATPASE STUDIED BY SITE-DIRECTED MUTAGENESIS [J].
ANDERSEN, JP ;
VILSEN, B .
FEBS LETTERS, 1995, 359 (2-3) :101-106
[2]  
ANDERSON SH, 1986, LANCET, V2, P85
[3]  
ARGUELLO JM, 1991, J BIOL CHEM, V266, P14627
[4]   SUBSTITUTIONS OF SERINE-775 IN THE ALPHA-SUBUNIT OF THE NA,K-ATPASE SELECTIVELY DISRUPT K+ HIGH-AFFINITY ACTIVATION WITHOUT AFFECTING NA+ INTERACTION [J].
ARGUELLO, JM ;
LINGREL, JB .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (39) :22764-22771
[5]   Metallochaperones and metal-transporting ATPases: A comparative analysis of sequences and structures [J].
Arnesano, F ;
Banci, L ;
Bertini, I ;
Ciofi-Baffoni, S ;
Molteni, E ;
Huffman, DL ;
O'Halloran, TV .
GENOME RESEARCH, 2002, 12 (02) :255-271
[6]   Inventory of the superfamily of P-type ion pumps in Arabidopsis [J].
Axelsen, KB ;
Palmgren, MG .
PLANT PHYSIOLOGY, 2001, 126 (02) :696-706
[7]   Evolution of substrate specificities in the P-type ATPase superfamily [J].
Axelsen, KB ;
Palmgren, MG .
JOURNAL OF MOLECULAR EVOLUTION, 1998, 46 (01) :84-101
[8]   A possible regulatory role for the metal-binding domain of CadA, the Listeria monocytogenes Cd2+-ATPase [J].
Bal, N ;
Mintz, E ;
Guillain, F ;
Catty, P .
FEBS LETTERS, 2001, 506 (03) :249-252
[9]   Structure-function analysis of purified Enterococcus hirae CopB copper ATPase:: effect of Menkes/Wilson disease mutation homologues [J].
Bissig, KD ;
Wunderli-Ye, H ;
Duda, PW ;
Solioz, M .
BIOCHEMICAL JOURNAL, 2001, 357 (01) :217-223
[10]   Changes in steady-state conformational equilibrium resulting from cytoplasmic mutations of the Na,K-ATPase α-subunit [J].
Boxenbaum, N ;
Daly, SE ;
Javaid, ZZ ;
Lane, LK ;
Blostein, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (36) :23086-23092