TY - JOUR
T1 - Glycosylation and Processing of Pro-B-Type Natriuretic Peptide in Cardiomyocytes
AU - Peng, Jianhao
AU - Jiang, Jingjing
AU - Wang, Wei
AU - Qi, Xiaofei
AU - Sun, Xue-Long
AU - Wua, Qingyu
N1 - Peng, J.; Jiang, J.; Wang, W.; Qi, X.; Sun, X.; Wu, Q. Glycosylation and processing of pro-B-type natriuretic peptide in cardiomyocytes. Biochem. Biophys. Res. Commun. 2011, 411, 593-598.
PY - 2011/8/5
Y1 - 2011/8/5
N2 - B-type natriuretic peptide (BNP) and its related peptides are biomarkers for the diagnosis of heart failure. Recent studies identified several O -glycosylation sites, including Thr-71, on human pro-BNP but the functional significance was unclear. In this study, we analyzed glycosylation and proteolytic processing of pro-BNP in cardiomyocytes. Human pro-BNP wild-type (WT) and mutants were expressed in HEK 293 cells and murine HL-1 cardiomyocytes. Pro-BNP and BNP were analyzed by immunoprecipitation and Western blotting. Glycosidases and glycosylation inhibitors were used to examine carbohydrates on pro-BNP. The effects of furin and corin expression on pro-BNP processing in cells also were examined. We found that in HEK 293 cells, recombinant pro-BNP contained significant amounts of O -glycans with terminal oligosialic acids. Mutation at Thr-71 reduced O -glycans on pro-BNP and increased pro-BNP processing. In HL-1 cardiomyocytes, residue Thr-71 contained little O -glycans, and pro-BNP WT and T71A mutant were processed similarly. In HEK 293 cells, pro-BNP was processed by furin. Mutations at Arg-73 and Arg-76, but not Lys-79, prevented pro-BNP processing. In HL-1 cardiomyocytes, which express furin and corin, single or double mutations at Arg-73, Arg-76 and Lys-79 did not prevent pro-BNP processing. Only when all these three residues were mutated, was pro-BNP processing completely blocked. Our data indicate that pro-BNP glycosylation in cardiomyocytes differed significantly from that in HEK 293 cells. In HEK 293 cells, furin cleaved pro-BNP at Arg-76 whereas in cardiomyocytes corin cleaved pro-BNP at multiple residues including Arg-73, Arg-76 and Lys-79.
AB - B-type natriuretic peptide (BNP) and its related peptides are biomarkers for the diagnosis of heart failure. Recent studies identified several O -glycosylation sites, including Thr-71, on human pro-BNP but the functional significance was unclear. In this study, we analyzed glycosylation and proteolytic processing of pro-BNP in cardiomyocytes. Human pro-BNP wild-type (WT) and mutants were expressed in HEK 293 cells and murine HL-1 cardiomyocytes. Pro-BNP and BNP were analyzed by immunoprecipitation and Western blotting. Glycosidases and glycosylation inhibitors were used to examine carbohydrates on pro-BNP. The effects of furin and corin expression on pro-BNP processing in cells also were examined. We found that in HEK 293 cells, recombinant pro-BNP contained significant amounts of O -glycans with terminal oligosialic acids. Mutation at Thr-71 reduced O -glycans on pro-BNP and increased pro-BNP processing. In HL-1 cardiomyocytes, residue Thr-71 contained little O -glycans, and pro-BNP WT and T71A mutant were processed similarly. In HEK 293 cells, pro-BNP was processed by furin. Mutations at Arg-73 and Arg-76, but not Lys-79, prevented pro-BNP processing. In HL-1 cardiomyocytes, which express furin and corin, single or double mutations at Arg-73, Arg-76 and Lys-79 did not prevent pro-BNP processing. Only when all these three residues were mutated, was pro-BNP processing completely blocked. Our data indicate that pro-BNP glycosylation in cardiomyocytes differed significantly from that in HEK 293 cells. In HEK 293 cells, furin cleaved pro-BNP at Arg-76 whereas in cardiomyocytes corin cleaved pro-BNP at multiple residues including Arg-73, Arg-76 and Lys-79.
KW - BNP
KW - Pro-BNP
KW - Corin
KW - Furin
KW - Glycosylation
KW - Cardiomyocytes
UR - https://engagedscholarship.csuohio.edu/scichem_facpub/52
UR - http://dx.doi.org/10.1016/j.bbrc.2011.06.192
U2 - 10.1016/j.bbrc.2011.06.192
DO - 10.1016/j.bbrc.2011.06.192
M3 - Article
VL - 411
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
ER -