Peer-Reviewed Journal Details
Mandatory Fields
Abril-Parreño L, Morgan J, Krogenæs A, Druart X, Cormican P, Gallagher ME, Reid C, Meade K, Saldova R, Fair S
2022
August
Biology Of Reproduction
Biochemical and molecular characterization of sialylated cervical mucins in sheep¿
Published
0 ()
Optional Fields
cervical mucus estrus cycle ewe breed fertility sialic acid sperm transport
107
2
419
431
Sialic acid occupies terminal positions on O-glycans of cervical mucins, where they contribute to the increased viscosity of mucin thereby regulating sperm transport. This study characterized the sialylated cervical mucins from follicular phase mucus of six European ewe breeds with known differences in pregnancy rates following cervical artificial insemination (AI) using frozen-thawed semen at both synchronized and natural estrus cycles. These were Suffolk (low fertility) and Belclare (medium fertility) in Ireland, Ile de France and Romanov (both with medium fertility) in France, and Norwegian White Sheep (NWS) and Fur (both with high fertility) in Norway. Expression of mucin and sialic acid related genes was quantified using RNA-sequencing in cervical tissue from Suffolk, Belclare, Fur, and NWS only. Cervical tissue was also assessed for the percentage of cervical epithelial populated by mucin secreting goblet cells in the same four ewe breeds. Biochemical analysis showed that there was an effect of ewe breed on sialic acid species, which was represented by Suffolk having higher levels of Neu5,9Ac2 compared with NWS (P¿<¿0.05). Suffolk ewes had a lower percentage of goblet cells than Fur and NWS (P¿<¿0.05). Gene expression analysis identified higher expression of MUC5AC, MUC5B, ST6GAL1, and ST6GAL2 and lower expression of ST3GAL3, ST3GAL4, and SIGLEC10 in Suffolk compared with high fertility ewe breeds (P¿<¿0.05). Our results indicate that specific alterations in sialylated mucin composition may be related to impaired cervical sperm transport.
1529-7268
10.1093/biolre/ioac077
Grant Details