Induced pluripotent stem cells derived from rabbits exhibit some characteristics of naïve pluripotency

Author:

Osteil Pierre1234,Tapponnier Yann123,Markossian Suzy1234,Godet Murielle1234,Schmaltz-Panneau Barbara5,Jouneau Luc5,Cabau Cédric6,Joly Thierry378,Blachère Thierry123,Gócza Elen9,Bernat Agnieszka12310,Yerle Martine11,Acloque Hervé11,Hidot Sullivan123,Bosze Zsuzsanna9,Duranthon Véronique5,Savatier Pierre1234,Afanassieff Marielle1234

Affiliation:

1. INSERM, U846, Stem Cell and Brain Institute, 18 Avenue du Doyen Jean Lépine, F-69500 Bron, France

2. Stem Cell and Brain Institute, F-69500 Bron, France

3. Université de Lyon, F-69100 Villeurbanne, France

4. INRA, USC1361, F-69500 Bron, France

5. INRA, Biology of Development and Reproduction, F-78352 Jouy-en-Josas, France

6. INRA, SIGENAE, UR83 Recherches Avicoles, F-37380 Nouzilly, France

7. ISARA-Lyon, F-69007 Lyon, France

8. VetAgroSup, UPSP ICE, F-69280 Marcy l'Etoile, France

9. Institute of Animal Biotechnology, Agricultural Biotechnology Center, H-2100 Godollo, Hungary

10. Present address: Laboratory of Molecular Diagnostics, Intercollegiate Faculty of Biotechnology, Medical University of Gdansk, Poland

11. INRA, UMR444, F-31326 Castanet Tolosan, France

Abstract

Summary Not much is known about the molecular and functional features of pluripotent stem cells (PSCs) in rabbits. To address this, we derived and characterized 2 types of rabbit PSCs from the same breed of New Zealand White rabbits: 4 lines of embryonic stem cells (rbESCs), and 3 lines of induced PSCs (rbiPSCs) that were obtained by reprogramming adult skin fibroblasts. All cell lines required fibroblast growth factor 2 for their growth and proliferation. All rbESC lines showed molecular and functional properties typically associated with primed pluripotency. The cell cycle of rbESCs had a prolonged G1 phase and a DNA damage checkpoint before entry into the S phase, which are the 2 features typically associated with the somatic cell cycle. In contrast, the rbiPSC lines exhibited some characteristics of naïve pluripotency, including resistance to single-cell dissociation by trypsin, robust activity of the distal enhancer of the mouse Oct4 gene, and expression of naïve pluripotency-specific genes, as defined in rodents. According to gene expression profiles, rbiPSCs were closer to the rabbit inner cell mass (ICM) than rbESCs. Furthermore, rbiPSCs were capable of colonizing the ICM after aggregation with morulas. Therefore, we propose that rbiPSCs self-renew in an intermediate state between naïve and primed pluripotency, which represents a key step toward the generation of bona fide naïve PSC lines in rabbits.

Publisher

The Company of Biologists

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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