| Literature DB >> 26493308 |
Karin A Crowhurst1, James V C Horn2, Paul M M Weers2.
Abstract
Apolipophorin III, a 163 residue monomeric protein from the greater wax moth Galleria mellonella (abbreviated as apoLp-IIIGM), has roles in upregulating expression of antimicrobial proteins as well as binding and deforming bacterial membranes. Due to its similarity to vertebrate apolipoproteins there is interest in performing atomic resolution analysis of apoLp-IIIGM as part of an effort to better understand its mechanism of action in innate immunity. In the first step towards structural characterization of apoLp-IIIGM, 99 % of backbone and 88 % of side chain (1)H, (13)C and (15)N chemical shifts were assigned. TALOS+ analysis of the backbone resonances has predicted that the protein is composed of five long helices, which is consistent with the reported structures of apolipophorins from other insect species. The next stage in the characterization of apoLp-III from G. mellonella will be to utilize these resonance assignments in solving the solution structure of this protein.Entities:
Keywords: Apolipophorin III; Chemical shift assignment; Exchangeable apolipoprotein; Galleria mellonella; NMR; apoLp-III
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Year: 2015 PMID: 26493308 PMCID: PMC4789158 DOI: 10.1007/s12104-015-9654-7
Source DB: PubMed Journal: Biomol NMR Assign ISSN: 1874-270X Impact factor: 0.746