| Literature DB >> 26876904 |
Hong Peng1, Lawrence M Schopfer2, Oksana Lockridge3.
Abstract
The human butyrylcholinesterase (HuBChE) tetramer is composed of 4 identical subunits and a noncovalently bound polyproline-rich peptide. In a previous report we identified lamellipodin as the source of the polyproline-rich peptides in HuBChE tetramers purified from plasma. Our current goal was to identify proteins in addition to lamellipodin that donate polyproline-rich peptides to plasma HuBChE tetramers. Peptides were released from 1 mg of pure plasma-derived HuBChE tetramers by boiling. Mass spectrometry identified 74 polyproline-rich peptides. MALDI-TOF mass spectra and spectral counting of the LC-MS/MS data supported the conclusion that lamellipodin accounted for 70% of the polyproline-rich peptides. Additional precursor proteins were matched through BLASTp searches, suggesting but not proving, that 20 proteins including UDP-N-acetyl glucosamine transferase ALG13 homolog, leiomodin 2, and zinc finger homeobox protein 2 are sources of polyproline-rich peptides found in HuBChE tetramers. Eighteen polyproline-rich peptides had no match in the human protein database. In conclusion, HuBChE assembles into tetramers through interaction of its C-terminal domain with polyproline peptides derived from a variety of proteins. Copyright ÂEntities:
Keywords: Butyrylcholinesterase; Lamellipodin; Mass spectrometry; Polyproline; Tetramerization domain
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Year: 2016 PMID: 26876904 DOI: 10.1016/j.cbi.2016.02.007
Source DB: PubMed Journal: Chem Biol Interact ISSN: 0009-2797 Impact factor: 5.192