Pro-B-type natriuretic peptide is cleaved intracellularly: impact of distance between O-glycosylation and cleavage sites

Author:

Nishikimi Toshio12,Nakagawa Yasuaki1,Minamino Naoto3,Ikeda Masashi4,Tabei Kyoko4,Fujishima Aoi1,Takayama Kentaro3,Akimoto Kazumi4,Yamada Chinatsu1,Nakao Kazuhiro1,Minami Takeya1,Kuwabara Yoshihiro1,Kinoshita Hideyuki1,Tsutamoto Takayoshi5,Ishimitsu Toshihiko2,Kangawa Kenji3,Kuwahara Koichiro1,Nakao Kazuwa1

Affiliation:

1. Department of Cardiology, Kyoto University Graduate School of Medicine, Kyoto, Japan;

2. Department of Cardiology and Nephrology, Dokkyo Medical University, Mibu, Japan;

3. National Cerebral and Cardiovascular Center Research Institute, Osaka, Japan; and

4. Department of Laboratory Medicine, Dokkyo Medical University, Mibu, Japan;

5. Department of Cardiology, Shiga Medical University, Shiga, Japan

Abstract

We investigated the molecular mechanism underlying the processing of pro-B-type natriuretic peptide (proBNP). Rat neonatal atrial and ventricular myocytes were cultured separately. We examined the molecular forms of secreted and intracellular BNP in atrial and ventricular myocytes; levels of corin and furin mRNA in atrial and ventricular myocytes; the effect their knockdown on proBNP processing; plasma molecular forms of BNP from rats and humans with and without heart failure; and the impact of the distance between the glycosylation and cleavage sites in wild-type and mutant human proBNP, expressed in rat myocytes transfected with lentiviral vectors. BNP was the major molecular form secreted by atrial and ventricular myocytes. Transfection of furin siRNA reduced proBNP processing in both atrial and ventricular myocytes; however, transfection of corin siRNA did not reduce it. BNP was the major molecular form in rat plasma, whereas proBNP was the major form in human plasma. The relative fraction of human BNP in rat myocytes expressing human proBNP was about 60%, but increasing the distance between the glycosylation and cleavage sites through mutation, increased the processed fraction correspondingly. These results suggest that proBNP is processed into BNP intracellularly by furin. The level of proBNP processing is lower in humans than rats, most likely due to the smaller distance between the O-glycosylation and cleavage sites in humans.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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