Research Article
Characterization of the post-translational modification of recombinant human BMP-15 mature protein
Article first published online: 2 JAN 2009
DOI: 10.1110/ps.073232608
Copyright © 2008 The Protein Society
Additional Information
How to Cite
Saito, S., Yano, K., Sharma, S., McMahon, H. E. and Shimasaki, S. (2008), Characterization of the post-translational modification of recombinant human BMP-15 mature protein. Protein Science, 17: 362–370. doi: 10.1110/ps.073232608
Publication History
- Issue published online: 2 JAN 2009
- Article first published online: 2 JAN 2009
- Manuscript Accepted: 12 NOV 2007
- Manuscript Revised: 2 NOV 2007
- Manuscript Received: 6 SEP 2007
Keywords:
- bone morphogenetic protein;
- post-translational modification;
- mass spectrometry;
- phosphorylation;
- neutral loss scan;
- O-glycosylation;
- proteomics analysis;
- pyroglutamic acid
Abstract
Bone morphogenetic protein-15 (BMP-15) is an oocyte-secreted factor critical for the regulation of ovarian physiology. When recombinant human BMP-15 (rhBMP-15) produced in human embryonic kidney 293 cells was subjected to SDS-PAGE analysis, two mature protein forms corresponding to 16 kDa (P16) and 17 kDa (P17) were observed. Despite the physiological relevance and critical function of BMP-15 in female reproduction, little is known about the structure of rhBMP-15. Here, we have analyzed the structure of the rhBMP-15 mature proteins (P16 and P17) using state-of-the-art proteomics technology. Our findings are as follows: (1) the N-terminal amino acid of P16 and P17 is pyroglutamic acid; (2) the Ser residue at the sixth position of P16 is phosphorylated; (3) P17 is O-glycosylated at Thr10; and (4) the C-terminal amino acid of P16 and P17 is truncated. These findings are the first knowledge of the structure of rhBMP-15 mature protein toward understanding the molecular basis of BMP-15 function and could provide an important contribution to the rapidly progressing research area involving oocyte-specific growth factors in modulation of female fertility.

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