Literature DB >> 8272427

A calculation strategy for the structure determination of symmetric dimers by 1H NMR.

M Nilges1.   

Abstract

The structure determination of symmetric dimers by NMR is impeded by the ambiguity of inter- and intramonomer NOE crosspeaks. In this paper, a calculation strategy is presented that allows the calculation of dimer structures without resolving the ambiguity by additional experiments (like asymmetric labeling). The strategy employs a molecular dynamics-based simulated annealing approach to minimize a target function. The experimental part of the target function contains distance restraints that correctly describe the ambiguity of the NOE peaks, and a novel term that restrains the symmetry of the dimer without requiring the knowledge of the symmetry axis. The use of the method is illustrated by three examples, using experimentally obtained data and model data derived from a known structure. For the purpose of testing the method, it is assumed that every NOE crosspeak is ambiguous in all three cases. It is shown that the method is useful both in situations where the structure of a homologous protein is known and in ab initio structure determination. The method can be extended to higher order symmetric multimers.

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Year:  1993        PMID: 8272427     DOI: 10.1002/prot.340170307

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  86 in total

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10.  A geometric arrangement algorithm for structure determination of symmetric protein homo-oligomers from NOEs and RDCs.

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