Literature DB >> 26597990

Pulse EPR-enabled interpretation of scarce pseudocontact shifts induced by lanthanide binding tags.

Elwy H Abdelkader1, Xuejun Yao1, Akiva Feintuch2, Luke A Adams3, Luigi Aurelio3, Bim Graham3, Daniella Goldfarb2, Gottfried Otting4.   

Abstract

Pseudocontact shifts (PCS) induced by tags loaded with paramagnetic lanthanide ions provide powerful long-range structure information, provided the location of the metal ion relative to the target protein is known. Usually, the metal position is determined by fitting the magnetic susceptibility anisotropy (Δχ) tensor to the 3D structure of the protein in an 8-parameter fit, which requires a large set of PCSs to be reliable. In an alternative approach, we used multiple Gd(3+)-Gd(3+) distances measured by double electron-electron resonance (DEER) experiments to define the metal position, allowing Δχ-tensor determinations from more robust 5-parameter fits that can be performed with a relatively sparse set of PCSs. Using this approach with the 32 kDa E. coli aspartate/glutamate binding protein (DEBP), we demonstrate a structural transition between substrate-bound and substrate-free DEBP, supported by PCSs generated by C3-Tm(3+) and C3-Tb(3+) tags attached to a genetically encoded p-azidophenylalanine residue. The significance of small PCSs was magnified by considering the difference between the chemical shifts measured with Tb(3+) and Tm(3+) rather than involving a diamagnetic reference. The integrative sparse data approach developed in this work makes poorly soluble proteins of limited stability amenable to structural studies in solution, without having to rely on cysteine mutations for tag attachment.

Entities:  

Keywords:  Double electron–electron resonance; E. coli aspartate/glutamate binding protein; Integrative structural biology; Lanthanide tag; Pseudocontact shift

Mesh:

Substances:

Year:  2015        PMID: 26597990     DOI: 10.1007/s10858-015-0003-z

Source DB:  PubMed          Journal:  J Biomol NMR        ISSN: 0925-2738            Impact factor:   2.835


  52 in total

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7.  Lanthanide tags for site-specific ligation to an unnatural amino acid and generation of pseudocontact shifts in proteins.

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4.  Model-free extraction of spin label position distributions from pseudocontact shift data.

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5.  The contribution of modern EPR to structural biology.

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6.  The Photocatalyzed Thiol-ene reaction: A New Tag to Yield Fast, Selective and reversible Paramagnetic Tagging of Proteins.

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