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Live cell analyses of synaptonemal complex dynamics and chromosome movements in cultured mouse testis tubules and embryonic ovaries.
Enguita-Marruedo, Andrea; Van Cappellen, Wiggert A; Hoogerbrugge, Jos W; Carofiglio, Fabrizia; Wassenaar, Evelyne; Slotman, Johan A; Houtsmuller, Adriaan; Baarends, Willy M.
Affiliation
  • Enguita-Marruedo A; Department of Developmental Biology, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Van Cappellen WA; Department of Pathology, Erasmus Optical Imaging Centre, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Hoogerbrugge JW; Department of Developmental Biology, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Carofiglio F; Department of Developmental Biology, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Wassenaar E; Department of Developmental Biology, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Slotman JA; Department of Pathology, Erasmus Optical Imaging Centre, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Houtsmuller A; Department of Pathology, Erasmus Optical Imaging Centre, Erasmus MC University Medical Centre, Rotterdam, The Netherlands.
  • Baarends WM; Department of Developmental Biology, Erasmus MC University Medical Centre, Rotterdam, The Netherlands. w.baarends@erasmusmc.nl.
Chromosoma ; 127(3): 341-359, 2018 09.
Article in En | MEDLINE | ID: mdl-29582139
During mammalian meiotic prophase, homologous chromosomes connect through the formation of the synaptonemal complex (SC). SYCP3 is a component of the lateral elements of the SC. We have generated transgenic mice expressing N- or C-terminal fluorescent-tagged SYCP3 (mCherry-SYCP3 (CSYCP) and SYCP3-mCherry (SYCPC)) to study SC dynamics and chromosome movements in vivo. Neither transgene rescued meiotic aberrations in Sycp3 knockouts, but CSYCP could form short axial element-like structures in the absence of endogenous SYCP3. On the wild-type background, both fusion proteins localized to the axes of the SC together with endogenous SYCP3, albeit with delayed initiation (from pachytene) in spermatocytes. Around 40% of CSYCP and SYCPC that accumulated on the SC was rapidly exchanging with other tagged proteins, as analyzed by fluorescent recovery after photobleaching (FRAP) assay. We used the CSYCP transgenic mice for further live cell analyses and observed synchronized bouquet configurations in living cysts of two or three zygotene oocyte nuclei expressing CSYCP, which presented cycles of telomere clustering and dissolution. Rapid chromosome movements were observed in both zygotene oocytes and pachytene spermatocytes, but rotational movements of the nucleus were more clear in oocytes. In diplotene spermatocytes, desynapsis was found to proceed in a discontinuous manner, whereby even brief chromosome re-association events were observed. Thus, this live imaging approach can be used to follow changes in the dynamic behavior of the nucleus and chromatin, in normal mice and different infertile mouse models.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ovary / Seminiferous Tubules / Synaptonemal Complex / Chromosomes, Mammalian Limits: Animals Language: En Journal: Chromosoma Year: 2018 Document type: Article Affiliation country: Netherlands Country of publication: Austria

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Ovary / Seminiferous Tubules / Synaptonemal Complex / Chromosomes, Mammalian Limits: Animals Language: En Journal: Chromosoma Year: 2018 Document type: Article Affiliation country: Netherlands Country of publication: Austria