4.4 Article

The transition from vitellogenesis to choriogenesis triggers the downregulation of the UPR sensors IRE1 and PERK and alterations in the ER architecture in the follicle cells of the vector Rhodnius prolixus

期刊

CELL AND TISSUE RESEARCH
卷 387, 期 1, 页码 63-74

出版社

SPRINGER
DOI: 10.1007/s00441-021-03547-z

关键词

IRE1; PERK; Endoplasmic reticulum; Follicle cells; Choriogenesis

资金

  1. JCNE-FAPERJ
  2. INCT-EM-CNPq/FAPERJ
  3. CAPES
  4. Fundacao Carlos Chagas Filho De Amparo A Pesquisa Do Estado Do Rio De Janeiro (FAPERJ) [E-26/2031802017]
  5. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq) [INCT-EM 16/2014]
  6. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior (CAPES)

向作者/读者索取更多资源

The study explored the role of UPR receptors IRE1 and PERK in insect oogenesis, finding that their gene expression levels decrease during the transition from vitellogenesis to choriogenesis, accompanied by significant ultrastructural changes in the follicle cells. RNAi silencing of IRE1 and PERK resulted in minor alterations in chorion protein composition and ultrastructure without affecting overall oviposition and embryo development.
In insects, the follicle cells (FCs) give rise to a single-layered tissue of binucleated professional secretory cells that surround the oocytes during oogenesis. In the latest stage of oocyte development, the FCs rapidly synthesize and secrete the chorion (eggshell) immediately before degenerating through apoptosis. Here, we used RT-qPCR, electron microscopy, and RNAi silencing to explore the role of the main unfolded protein response (UPR) receptors IRE1 and PERK, as well as the ultrastructure dynamics of the FCs during oogenesis of the insect vector of Chagas disease Rhodnius prolixus. We found that IRE1 and PERK mRNAs are highly expressed in the ovaries of vitellogenic females. Interestingly, we observed that IRE1 and PERK, as well as different isoforms of the chaperones Bip and PDI, have their FCs gene expression levels decreased during the vitellogenesis to choriogenesis transition. Using transmission electron microscopy, we observed that the downregulation of the UPR gene expression is accompanied by dramatic changes in the FCs ultrastructure, with an 80% reduction in the mean area of the ER tubules, and circularization and enlargement of the mitochondria. Additionally, we found that parental RNAi silencing of both IRE1 and PERK resulted in minor changes in the chorion protein composition and ultrastructure, accessed by urea extraction of the chorion proteins and scanning electron microscopy, respectively, but did not impact the overall levels of oviposition and F1 embryo development.

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