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Updated: May 2, 2026

Zygotic Fluorescence Recovery After Photo-bleaching Analysis for Chromatin Looseness That Allows Full-term Development
Published on: June 12, 2018
Asymmetric reprogramming capacity of parental pronuclei in mouse zygotes
Wenqiang Liu1, Jiqing Yin2, Xiaochen Kou2
1College of Biological Sciences, China Agricultural University, Beijing 100094, China; National Institute of Biological Sciences, NIBS, Beijing 102206, China; School of Life Sciences and Technology, Tongji University, Shanghai 200092, China.
Abstract:
It has been demonstrated that reprogramming factors are sequestered in the pronuclei of zygotes after fertilization, because zygotes enucleated at the M phase instead of interphase of the first mitosis can support the development of cloned embryos. However, the contribution of the parental pronucleus derived from either the sperm or the oocyte in reprogramming remains elusive. Here, we demonstrate that the parental pronuclei have asymmetric reprogramming capacities and that the reprogramming factors reside predominantly in the male pronucleus. As a result, only female pronucleus-depleted (FPD) mouse zygotes can reprogram somatic cells to a pluripotent state and support the full-term development of cloned embryos; male pronucleus-depleted (MPD) zygotes fail to support somatic cell reprogramming. We further demonstrate that fusion of an additional male pronucleus into a zygote greatly enhances reprogramming efficiency. Our data provide a clue to further identify critical reprogramming factors in the male pronucleus.
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