1. An Investigation Into miRNAs in the Equine Epididymis as Potential Regulators of Spermatozoal Maturation
- Author
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Gerrit J. Bouma, H.M. Twenter, Jason E. Bruemmer, L.D. Bass, Aeriel D. Belk, and Kristin M. Klohonatz
- Subjects
0301 basic medicine ,030219 obstetrics & reproductive medicine ,Equine ,Polymerase chain reaction analysis ,Motility ,Biology ,Oocyte ,Epididymis ,Microvesicles ,Andrology ,03 medical and health sciences ,030104 developmental biology ,0302 clinical medicine ,medicine.anatomical_structure ,microRNA ,medicine ,Spermatogenesis - Abstract
After spermatogenesis, spermatozoa are not mature and unable to fertilize an oocyte. During transition through the epididymis, spermatozoa mature, and gain fertility and motility. Although epididymal functions are relatively well known, the mechanisms behind maturation are not yet fully understood. Studies indicate proteins are delivered to the spermatozoa during epididymal transit through microvesicles. These microvesicles, called epididymosomes, carry microRNAs (miRNAs). These miRNAs are ∼22 nucleotides in length and regulate mRNA translation. The purpose of this study was to investigate which miRNAs are located within the various regions of stallion epididymal tissue. Three mature stallion epididymides were divided into four sections for miRNA isolation: the caput, proximal corpus, distal corpus and cauda. The contents of the lumen were removed and epididymal tissue was homogenized. Quantitative real-time polymerase chain reaction analysis was used to determine miRNA content. A total of 328 miRNAs were noted in epididymal tissue. A total of 186 of the 346 known equine miRNA transcripts used were found in each section, all four sections also contained miRNAs distinct to specific regions. The cauda contained the greatest number of exclusive miRNA (19) and expressed the greatest number of miRNA (282). This study shows there is indeed a difference in the miRNA profile between regions of the epididymis, and their targeted pathways may effect spermatozoal maturation.
- Published
- 2017
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