Skip to main navigation Skip to search Skip to main content

Insulin-like peptide 6: Characterization of secretory status and posttranslational modifications

  • Chunxia Lu
  • , William H. Walker
  • , Jinhong Sun
  • , Ora A. Weisz
  • , Robert B. Gibbs
  • , Selma F. Witchel
  • , Mark A. Sperling
  • , Ram K. Menon

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

Insulin-like peptide 6 (Insl6) is amemberof the insulin/relaxin superfamily with unknown biological function(s). In the current report, we establish that meiotic and postmeiotic germ cells of the testis are the principal sites of expression of Insl6. Analysis of stably or transiently transfected cells revealed that Insl6 is a secreted protein localized to the endoplasmic reticulum and Golgi. Secretion could be detected in both CHO and GC2 germ cells and was sensitive to brefeldin A treatment. In cell lysates, the predominant Insl6 band was approximately 28 kDa in size. In contrast, the predominant Insl6 species in the supernatant was 8 kDa in size, suggesting posttranslational processing of the precursor protein. Ectopically expressed Insl6 is processed and secreted in furin-deficient LoVo cells and in CHO cells treated with a furin inhibitor, although the size profile of the secreted protein is altered suggesting that Insl6 is a substrate for furin action. Furthermore, mutation of a putative furin cleavage site in the Insl6 peptide resulted in aberrant processing of the Insl6 peptide. Additional investigations of the structure of Insl6 protein provided evidence for posttranslational modifications of Insl6, including the presence of disulfide bonds, glycosylation, and ubiquitination. On the basis of the demonstrated secretory status of Insl6, we speculate that the physical proximity of the germ cell to the Sertoli cell renders the Sertoli cell a likely candidate for Insl6 action.

Original languageEnglish
Pages (from-to)5611-5623
Number of pages13
JournalEndocrinology
Volume147
Issue number12
DOIs
StatePublished - 2006
Externally publishedYes

Fingerprint

Dive into the research topics of 'Insulin-like peptide 6: Characterization of secretory status and posttranslational modifications'. Together they form a unique fingerprint.

Cite this