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重编程在核移植中至关重要。

Reprogramming is essential in nuclear transfer.

作者信息

Hiiragi Takashi, Solter Davor

机构信息

Department of Developmental Biology, Max-Planck Institute of Immunobiology, Freiburg, Germany.

出版信息

Mol Reprod Dev. 2005 Apr;70(4):417-21. doi: 10.1002/mrd.20126.

Abstract

Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammalian species (Wilmut et al., 1997; Kato et al., 1998; Wakayama et al., 1998; Polejaeva et al., 2000; Chesne et al., 2002; Shin et al., 2002; Zhou et al., 2003). Various possible causes have been suggested for the overall low efficiency (Perry and Wakayama, 2002). Notably, however, it has not yet been clearly demonstrated whether reprogramming after nuclear transfer is necessary for successful cloning. Here we show that reprogramming is essential in nuclear transfer, by comparing the developmental efficiency after the transfer of cumulus cell nuclei with that for zygote nuclei. Nuclear transfers from blastomeres of a series of pre-implantation stages showed further that, as development proceeds, the nuclei progressively lose their potency and become more difficult to reprogram upon their transfer into enucleated MII oocytes. We also found that naturally ovulated oocytes are much better recipients of a nucleus than are superovulated oocytes, which have been used in all the nuclear transfer experiments reported so far. This indicates that cloning efficiency can also be increased to some extent by technical improvements. All these results enable us to distinguish more clearly between the inherent problem of reprogramming and technical problems associated with materials, manipulation, and in vitro culture.

摘要

在几种哺乳动物中,通过成年体细胞的核移植已培育出了可育后代(威尔穆特等人,1997年;加藤等人,1998年;若山等人,1998年;波列耶娃等人,2000年;谢斯内等人,2002年;申等人,2002年;周等人,2003年)。对于总体效率低下的情况,人们提出了各种可能的原因(佩里和若山,2002年)。然而,值得注意的是,核移植后的重编程对于成功克隆是否必要,尚未得到明确证实。在这里,我们通过比较卵丘细胞核移植与受精卵细胞核移植后的发育效率,表明重编程在核移植中至关重要。一系列着床前阶段的卵裂球的核移植进一步表明,随着发育的进行,细胞核的潜能逐渐丧失,当它们被移植到去核的MII期卵母细胞中时,重编程变得更加困难。我们还发现,自然排卵的卵母细胞作为细胞核的受体比超排的卵母细胞要好得多,而超排的卵母细胞在迄今为止报道的所有核移植实验中都被使用过。这表明克隆效率也可以通过技术改进在一定程度上得到提高。所有这些结果使我们能够更清楚地区分重编程的内在问题与与材料、操作和体外培养相关的技术问题。

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