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Abstract

Volume 11, Issue 2 (March 2009) 11, 240–251; 10.1038/aja.2008.30

Human ribonuclease 9, a member of ribonuclease A superfamily, specifically expressed in epididymis, is a novel sperm-binding protein

Gui-Zhi Cheng1, Jian-Yuan Li2, Fang Li1, Hai-Yan Wang2 and Guang-Xia Shi1

1 Department of Immunology, Dalian Medical University, Dalian 116044, China
2 Research Center, Yuhuangding Hospital, Yantai 264000, China

Correspondence: Dr Gui-Zhi Cheng, Department of Immunology, Dalian Medical University, Dalian 116044, China. Fax: +86-411-8611-0278 E-mail: guizhicheng2002@yahoo.com.cn

Received 15 April 2008; Revised 23 June 2008; Accepted 3 July 2008; Published online 12 January 2009

Abstract

To explore the functions of human ribonuclease 9 (RNase 9), we constructed a mammalian fusion expression vector pcDNA-hRNase9, prepared recombinant human RNase 9-His fusion protein from HEK293T cells and determined its N-terminal amino acid sequences. According to the determined mature protein, recombinant human RNase 9 was prepared in E. coli. Ribonucleolytic activity and antibacterial activity of recombinant human RNase 9 were detected, and the distribution of human RNase 9 on tissues and ejaculated spermatozoa and in vitro capacitated spermatozoa were analyzed via indirect immunofluorescence assay. The results showed that recombinant human RNase 9 did not exhibit detectable ribonucleolytic activity against yeast tRNA, but exhibited antibacterial activity, in a concentration/time dependent manner, against E. coli. Immunofluorescent analyses showed that the predicted human RNase 9 was present throughout the epididymis, but not present in other tissues examined, and human RNase 9 was also present on the entire head and neck regions of human ejaculated spermatozoa and in vitro capacitated spermatozoa. These results suggest that human RNase 9 may play roles in host defense of male reproductive tract.

Keywords: ribonuclease A superfamily, epididymis, epididymal secretory proteins, spermatozoa, sperm maturation, male reproductive tract, host defense

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Asian Journal of Andrology CN 31-1795/R ISSN 1008-682X  Copyright © 2023  Shanghai Materia Medica, Chinese Academy of Sciences.  All rights reserved.