Jorgensen P L, Jorgensen J R, Pedersen P A
Biomembrane Research Center, August Krogh Institute, Copenhagen University, Denmark.
J Bioenerg Biomembr. 2001 Oct;33(5):367-77. doi: 10.1023/a:1010611322024.
In the P-domain, the 369-DKTGTLT and the 709-GDGVNDSPALKK segment are highly conserved during evolution of P-type E1-E2-ATPase pumps irrespective of their cation specificities. The focus of this article is on evaluation of the role of the amino acid residues in the P domain of the alpha subunit of Na,K-ATPase for the E1P[3Na]--> E2P[2Na] conversion, the K+-activated dephosphorylation, and the transmission of these changes to and from the cation binding sites. Mutations of residues in the TGDGVND loop show that Asp710 is essential, and Asn713 is important, for Mg2+ binding and formation of the high-energy MgE1P[3Na] intermediate. In contrast Asp710 and Asp713 do not contribute to Mg2+ binding in the E2P-ouabain complex. Transition to E2P thus involves a shift of Mg2+ coordination away from Asp710 and Asn713 and the two residues become more important for K+-activated hydrolysis of the acyl phosphate bond at Asp369. Transmission of structural changes between the P-domain and cation sites in the membrane domain is evaluated in light of the protein structure, and the information from proteolytic or metal-catalyzed cleavage and mutagenesis studies.
在P结构域中,369-DKTGTLT和709-GDGVNDSPALKK片段在P型E1-E2-ATP酶泵的进化过程中高度保守,无论其阳离子特异性如何。本文的重点是评估钠钾ATP酶α亚基P结构域中的氨基酸残基在E1P[3Na]→E2P[2Na]转化、钾离子激活的去磷酸化以及这些变化与阳离子结合位点之间的传递中所起的作用。TGDGVND环中残基的突变表明,Asp710对镁离子结合和高能MgE1P[3Na]中间体的形成至关重要,而Asn713也很重要。相比之下,Asp710和Asp713在E2P-哇巴因复合物中对镁离子结合没有贡献。因此,向E2P的转变涉及镁离子配位从Asp710和Asn713的转移,并且这两个残基对于天冬氨酸369处酰基磷酸键的钾离子激活水解变得更加重要。根据蛋白质结构以及来自蛋白水解或金属催化裂解和诱变研究的信息,评估了P结构域与膜结构域中阳离子位点之间结构变化的传递。