The crystal structure of Escherichia coli maltodextrin phosphorylase provides an explanation for the activity without control in this basic archetype of a phosphorylase

被引:68
作者
Watson, KA [1 ]
Schinzel, R [1 ]
Palm, D [1 ]
Johnson, LN [1 ]
机构
[1] UNIV WURZBURG, THEODOR BOVERI INST BIOWISSENSCH, BIOZENTRUM, D-97074 WURZBURG, GERMANY
关键词
bacteria; maltodextrin; phosphorylase; regulation; X-ray structure;
D O I
10.1093/emboj/16.1.1
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
In animals, glycogen phosphorylase (GP) exists in an inactive (T state) and an active (R state) equilibrium that can be altered by allosteric effecters or covalent modification. In Escherichia coli, the activity of maltodextrin phosphorylase (MalP) is controlled by induction at the level of gene expression, and the enzyme exhibits no regulatory properties. We report the crystal structure of E.coli maltodextrin phosphorylase refined to 2.4 Angstrom resolution. The molecule consists of a dimer with 796 amino acids per monomer, with 46% sequence identity to the mammalian enzyme. The overall structure of MalP shows a similar fold to GP and the catalytic sites are highly conserved. However, the relative orientation of the two subunits in E.coli MalP is different from both the T and R state GP structures, and there are significant changes at the subunit-subunit interfaces. The sequence changes result in loss of each of the control sites present in rabbit muscle GP. As a result of the changes at the subunit interface, the 280s loop, which in T state GP acts as a gate to control access to the catalytic site, is held in an open conformation in MalP. The open access to the conserved catalytic site provides an explanation for the activity without control in this basic archetype of a phosphorylase.
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页码:1 / 14
页数:14
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