Rural Development Administration, National Institute of Animal Science, 1500 Kongjwipatjwi-ro, Isero-myeon, Wanju-gun, Jeollabuk-do, 55365, Republic of Korea.
Developmental Epigenetics Laboratory, Department of Animal Science, Michigan State University, East Lansing, MI, USA.
Cell Stress Chaperones. 2020 May;25(3):503-508. doi: 10.1007/s12192-020-01090-4. Epub 2020 Apr 6.
This study examined the role of cyclin-dependent kinase inhibitor 1a (CDK1A, p21) in response to exogenous stressors during mouse preimplantation embryo development. CDKN1A knockdown (KD) one-cell zygotes were exposed to 39 °C heat stress (HS) for 4 days or irradiated by 1 (1-Gy) or 3 (3-Gy) Gy X-rays, and their developmental competence and gene expression were compared with control embryos. CDKN1A KD and HS did not influence early cleavage or subsequent embryonic development; however, HS delayed cavitation and induced elevated Cdkn1a expression in control embryos. Exposure to 1- or 3-Gy had no effect on development to the morula stage; however, a significant number of morulae failed to develop to the blastocyst stage. Interestingly, under the 1-Gy condition, the blastocyst rate of CDKN1A KD embryos (77.7%) was significantly higher than that of the controls (44.4%). In summary, exposure to cellular stressors resulted in the upregulation of Cdkn1a in embryos exposed to HS or X-ray irradiation, particularly in response to heat stress or low-dose X-ray irradiation, and depleting Cdkn1a mRNA alleviated cell cycle arrest. These findings suggest that CDKN1A plays a vital role in cellular senescence during preimplantation embryo development.
本研究探讨了细胞周期蛋白依赖性激酶抑制剂 1a(CDK1A,p21)在外源应激因子作用下对小鼠着床前胚胎发育的影响。将 CDKNA 敲低(KD)的 1 细胞期胚胎暴露于 39°C 热应激(HS)中 4 天,或用 1(1-Gy)或 3(3-Gy)Gy X 射线照射,并与对照组胚胎比较其发育能力和基因表达。CDKN1A KD 和 HS 并不影响早期卵裂或随后的胚胎发育;然而,HS 延迟了囊胚腔的形成,并诱导了对照组中 Cdkn1a 的表达升高。暴露于 1-Gy 或 3-Gy 对发育至桑椹胚阶段没有影响;然而,大量的桑椹胚未能发育至囊胚阶段。有趣的是,在 1-Gy 条件下,CDKN1A KD 胚胎的囊胚率(77.7%)明显高于对照组(44.4%)。总之,细胞应激因子的暴露导致 HS 或 X 射线照射的胚胎中 Cdkn1a 的上调,尤其是对热应激或低剂量 X 射线照射的反应,并且耗尽 Cdkn1a mRNA 可减轻细胞周期阻滞。这些发现表明 CDKN1A 在着床前胚胎发育过程中的细胞衰老中发挥着重要作用。