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Updated: Jun 12, 2026

Mouse In Vivo Placental Targeted CRISPR Manipulation
Published on: April 14, 2023
HSPC117 deficiency in cloned embryos causes placental abnormality and fetal death
Yingying Wang1, Tang Hai, Zichuan Liu
1Department of Reproduction and Development, Kunming Institute of Zoology & Kunming Primate Research Center, Chinese Academy of Sciences, Kunming 650223, China.
Abstract:
Somatic cell nuclear transfer (SCNT) has been successfully used in many species to produce live cloned offspring, albeit with low efficiency. The low frequency of successful development has usually been ascribed to incomplete or inappropriate reprogramming of the transferred nuclear genome. Elucidating the genetic differences between normal fertilized and cloned embryos is key to understand the low efficiency of SCNT. Here, we show that expression of HSPC117, which encodes a hypothetical protein of unknown function, was absent or very low in cloned mouse blastocysts. To investigate the role of HSPC117 in embryo development, we knocked-down this gene in normal fertilized embryos using RNA interference. We assessed the post-implantation survival of HSPC117 knock-down embryos at 3 stages: E9 (prior to placenta formation); E12 (after the placenta was fully functional) and E19 (post-natal). Our results show that, although siRNA-treated in vivo fertilized/produced (IVP) embryos could develop to the blastocyst stage and implanted without any difference from control embryos, the knock-down embryos showed substantial fetal death, accompanied by placental blood clotting, at E12. Furthermore, comparison of HSPC117 expression in placentas of nuclear transfer (NT), intracytoplasmic sperm injection (ICSI) and IVP embryos confirmed that HSPC117 deficiency correlates well with failures in embryo development: all NT embryos with a fetus, as well as IVP and ICSI embryos, had normal placental HSPC117 expression while those NT embryos showing reduced or no expression of HSPC117 failed to form a fetus. In conclusion, we show that HSPC117 is an important gene for post-implantation development of embryos, and that HSPC117 deficiency leads to fetal abnormalities after implantation, especially following placental formation. We suggest that defects in HSPC117 expression may be an important contributing factor to loss of cloned NT embryos in vivo.
Insights
HSPC117 gene deficiency causes fetal death and placental issues in cloned embryos. This finding is crucial for understanding and improving somatic cell nuclear transfer (SCNT) efficiency in producing live offspring.
Area of Science:
- Developmental Biology
- Reproductive Science
- Genetics
Background:
- Somatic cell nuclear transfer (SCNT) produces cloned offspring but suffers from low efficiency.
- Low SCNT success is often linked to incomplete reprogramming of the donor nucleus.
- Understanding genetic differences between fertilized and cloned embryos is vital for improving SCNT.
Purpose of the Study:
- To investigate the role of the HSPC117 gene in early embryonic development.
- To determine if HSPC117 deficiency contributes to the low efficiency of SCNT.
Main Methods:
- Knock-down of HSPC117 in normal fertilized mouse embryos using RNA interference (RNAi).
- Assessment of post-implantation survival and development at embryonic days E9, E12, and E19.
- Comparison of HSPC117 expression in placentas of SCNT, ICSI, and in vitro fertilized (IVF) embryos.
Main Results:
- HSPC117 knock-down embryos showed significant fetal death and placental abnormalities by E12.
- Reduced or absent HSPC117 expression in cloned embryos correlated with failed fetal development.
- Normal HSPC117 expression was observed in viable SCNT, ICSI, and IVF embryos.
Conclusions:
- HSPC117 is essential for successful post-implantation embryonic development.
- Defects in HSPC117 expression are a significant factor in the failure of cloned embryos.
- Restoring HSPC117 expression may enhance SCNT efficiency and reduce embryo loss.

