Aquaglyceroporins 3 and 7 in bull spermatozoa: identification, localisation and their relationship with sperm cryotolerance.

Reprod Fertil Dev

Nuffield Department of Obstetrics and Gynaecology, University of Oxford, Level 3, Women's Centre, John Radcliffe Hospital, Headington, Oxford, OX3 9DU, UK.

Published: June 2017

AI Article Synopsis

  • The study investigated the location of aquaglyceroporins 3 (AQP3) and 7 (AQP7) in bull sperm and how they relate to the sperm’s ability to survive freezing (cryotolerance).
  • A total of 18 bull ejaculates were frozen and analyzed, revealing that AQP3 is found in the mid-piece and AQP7 in both the mid-piece and post-acrosomal region, with specific sizes identifiable via immunoblotting.
  • Results showed that while AQP3 levels didn't differ between high and low freezing resilience, AQP7 was more abundant in samples with good freezing potential, suggesting it could help predict sperm cryotolerance in bulls.

Article Abstract

The present study aimed to determine the localisation of aquaglyceroporins 3 (AQP3) and 7 (AQP7) in bull spermatozoa and their relationship with the sperm cell's resilience to withstand cryopreservation (i.e. cryotolerance). A total of 18 bull ejaculates were cryopreserved and their sperm quality analysed before and after freeze-thawing. The presence and localisation of AQP3 and AQP7 was determined through immunoblotting and immunocytochemistry. AQP3 was found in the mid-piece and AQP7 in the mid-piece and post-acrosomal region of bull spermatozoa. Immunoblotting showed specific signal bands at 30 and 60kDa for AQP3 and at 25kDa for AQP7. Neither the relative abundance of AQP3 and AQP7 nor their localisation patterns was altered by cryopreservation but individual differences between bull ejaculates were found in immunoblots. In order to determine whether these individual differences were related to sperm cryotolerance, bull ejaculates were classified as having good (GFE) or poor freezability (PFE) on the basis of their sperm quality after thawing. While the relative abundance of AQP3 before cryopreservation did not differ between ejaculates with GFE and PFE, the abundance of AQP7 was higher in GFE than in PFE ejaculates. This finding was further confirmed through principal component and linear regression analyses. In conclusion, the relative abundance of AQP7 in fresh semen may be used as a marker to predict bull sperm cryotolerance.

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Source
http://dx.doi.org/10.1071/RD16077DOI Listing

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