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Lysozyme contamination facilitates crystallization of a heterotrimeric cortactin-Arg-lysozyme complex.


ABSTRACT: Crystallization of contaminating proteins is a frequently encountered problem for macromolecular crystallographers. In this study, an attempt was made to obtain a binary cocrystal structure of the SH3 domain of cortactin and a 17-residue peptide from the Arg nonreceptor tyrosine kinase encompassing a PxxPxxPxxP (PxxP1) motif. However, cocrystals could only be obtained in the presence of trace amounts of a contaminating protein. A structure solution obtained by molecular replacement followed by ARP/wARP automatic model building allowed a 'sequence-by-crystallography' approach to discover that the contaminating protein was lysozyme. This 1.65 Å resolution crystal structure determination of a 1:1:1 heterotrimeric complex of Arg, cortactin and lysozyme thus provides an unusual `caveat emptor' warning of the dangers that underpurified proteins harbor for macromolecular crystallographers.

SUBMITTER: Liu W 

PROVIDER: S-EPMC3274391 | biostudies-literature | 2012 Feb

REPOSITORIES: biostudies-literature

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Lysozyme contamination facilitates crystallization of a heterotrimeric cortactin-Arg-lysozyme complex.

Liu Weizhi W   MacGrath Stacey M SM   Koleske Anthony J AJ   Boggon Titus J TJ  

Acta crystallographica. Section F, Structural biology and crystallization communications 20120125 Pt 2


Crystallization of contaminating proteins is a frequently encountered problem for macromolecular crystallographers. In this study, an attempt was made to obtain a binary cocrystal structure of the SH3 domain of cortactin and a 17-residue peptide from the Arg nonreceptor tyrosine kinase encompassing a PxxPxxPxxP (PxxP1) motif. However, cocrystals could only be obtained in the presence of trace amounts of a contaminating protein. A structure solution obtained by molecular replacement followed by A  ...[more]

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