Title of article :
An Atomic-level Investigation of the Disease-causing A629P Mutant of the Menkes Protein, ATP7A
Author/Authors :
Lucia Banci، نويسنده , , Ivano Bertini، نويسنده , , Francesca Cantini and Simone Ciofi-Baffoni، نويسنده , , Manuele Migliardi، نويسنده , , Antonio Rosato، نويسنده , , Manuele Martinelli and Shenlin Wang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Menkes disease is a fatal disease that can be induced by various mutations in the ATP7A gene, leading to unpaired uptake of dietary copper. The ATP7A gene encodes a copper(I)-translocating ATPase. Here the disease-causing A629P mutation, which occurs in the last of the six copper(I)-binding soluble domains of the ATPase (hereafter MNK6), was investigated. To understand why this apparently minor amino acid replacement is pathogenic, the solution structures and dynamics on various time-scales of wild-type and A629P-MNK6 were determined both in the apo- and copper(I)-loaded forms. The interaction in vitro with the physiological ATP7A copper(I)-donor (HAH1) was additionally studied. The A629P mutation makes the protein β-sheet more solvent accessible, possibly resulting in an enhanced susceptibility of ATP7A to proteolytic cleavage and/or in reduced capability of copper(I)-translocation. A small reduction of the affinity for copper(I) is also observed. Both effects could concur to pathogenicity.
Keywords :
Copper , Menkes disease , Hydrogen exchange , metal homeostasis , ATP7A
Journal title :
Journal of Molecular Biology
Journal title :
Journal of Molecular Biology