TY - JOUR
T1 - Specific processing of meiosis-related transcript is linked to final maturation in human oocytes
AU - Pietroforte, Sara
AU - Barragan Monasterio, Montserrat
AU - Ferrer-Vaquer, Anna
AU - Irimia, Manuel
AU - Ibáñez, Elena
AU - Popovic, Mina
AU - Vassena, Rita
AU - Zambelli, Filippo
N1 - © The Author(s) 2023. Published by Oxford University Press on behalf of European Society of Human Reproduction and Embryology. All rights reserved. For permissions, please email: [email protected].
PY - 2023/6/1
Y1 - 2023/6/1
N2 - Human meiosis in oocytes entails an intricate regulation of the transcriptome to support late oocyte growth and early embryo development, both crucial to reproductive success. Currently, little is known about the co- and post-transcriptional mRNA processing mechanisms regulating the last meiotic phases, which contribute to transcriptome complexity and influence translation rates. We analyzed gene expression changes, splicing and pre-mRNA processing in an RNA sequencing set of 40 human oocytes at different meiotic maturation stages, matured both in vivo and in vitro. We found abundant untranslated region (UTR) processing, mostly at the 3' end, of meiosis-related genes between the germinal vesicle (GV) and metaphase II (MII) stages, supported by the differential expression of spliceosome and pre-mRNA processing related genes. Importantly, we found very few differences among GV oocytes across several durations of IVM, as long as they did not reach MII, suggesting an association of RNA processing and successful meiosis transit. Changes in protein isoforms are minor, although specific and consistent for genes involved in chromosome organization and spindle assembly. In conclusion, we reveal a dynamic transcript remodeling during human female meiosis, and show how pre-mRNA processing, specifically 3'UTR shortening, drives a selective translational regulation of transcripts necessary to reach final meiotic maturation.
AB - Human meiosis in oocytes entails an intricate regulation of the transcriptome to support late oocyte growth and early embryo development, both crucial to reproductive success. Currently, little is known about the co- and post-transcriptional mRNA processing mechanisms regulating the last meiotic phases, which contribute to transcriptome complexity and influence translation rates. We analyzed gene expression changes, splicing and pre-mRNA processing in an RNA sequencing set of 40 human oocytes at different meiotic maturation stages, matured both in vivo and in vitro. We found abundant untranslated region (UTR) processing, mostly at the 3' end, of meiosis-related genes between the germinal vesicle (GV) and metaphase II (MII) stages, supported by the differential expression of spliceosome and pre-mRNA processing related genes. Importantly, we found very few differences among GV oocytes across several durations of IVM, as long as they did not reach MII, suggesting an association of RNA processing and successful meiosis transit. Changes in protein isoforms are minor, although specific and consistent for genes involved in chromosome organization and spindle assembly. In conclusion, we reveal a dynamic transcript remodeling during human female meiosis, and show how pre-mRNA processing, specifically 3'UTR shortening, drives a selective translational regulation of transcripts necessary to reach final meiotic maturation.
KW - Humans
KW - Female
KW - In Vitro Oocyte Maturation Techniques
KW - RNA Precursors/genetics
KW - Oocytes/metabolism
KW - Meiosis/genetics
KW - Oogenesis/genetics
KW - Human oocytes
KW - Oocyte competence
KW - 3'untranslated regions
KW - 3'untranslated region processing
KW - Splicing
KW - Gene expression
KW - Alternative splicing
KW - meiosis
KW - alternative splicing
KW - human oocytes
KW - 3′ untranslated regions
KW - 3′ untranslated region processing
KW - oocyte competence
KW - splicing
KW - gene expression
UR - http://www.scopus.com/inward/record.url?scp=85164231295&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/6ce28b77-9488-3239-9d20-bb2e0f8d7e31/
U2 - 10.1093/molehr/gaad021
DO - 10.1093/molehr/gaad021
M3 - Article
C2 - 37261882
SN - 1360-9947
VL - 29
JO - Molecular Human Reproduction
JF - Molecular Human Reproduction
IS - 7
M1 - gaad021
ER -