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改变早期非洲爪蟾胚胎中核输入因子的水平会影响后期的发育。

Altering the levels of nuclear import factors in early Xenopus laevis embryos affects later development.

机构信息

Department of Molecular Biology, University of Wyoming, Laramie, Wyoming, United States of America.

出版信息

PLoS One. 2019 Apr 22;14(4):e0215740. doi: 10.1371/journal.pone.0215740. eCollection 2019.

Abstract

More than just a container for DNA, the nuclear envelope carries out a wide variety of critical and highly regulated cellular functions. One of these functions is nuclear import, and in this study we investigate how altering the levels of nuclear transport factors impacts developmental progression and organismal size. During early Xenopus laevis embryogenesis, the timing of a key developmental event, the midblastula transition (MBT), is sensitive to nuclear import factor levels. How might altering nuclear import factors and MBT timing in the early embryo affect downstream development of the organism? We microinjected X. laevis two-cell embryos with mRNA to increase levels of importin α or NTF2, resulting in differential amounts of nuclear import factors in the two halves of the embryo. Compared to controls, these embryos exhibited delayed gastrulation, curved neural plates, and bent tadpoles with different sized eyes. Furthermore, embryos microinjected with NTF2 developed into smaller froglets compared to control microinjected embryos. We propose that altering nuclear import factors and nuclear size affects MBT timing, cell size, and cell number, subsequently disrupting later development. Thus, altering nuclear import factors early in development can affect function and size at the organismal level.

摘要

核膜不仅仅是 DNA 的容器,它还执行着各种各样的关键且高度调控的细胞功能。其中一个功能是核输入,在这项研究中,我们研究了改变核转运因子的水平如何影响发育进程和生物体大小。在非洲爪蟾早期胚胎发生过程中,一个关键的发育事件——中胚层转换(MBT)的时间对核输入因子的水平很敏感。改变早期胚胎中的核输入因子和 MBT 时间会如何影响生物体的下游发育?我们用 mRNA 微注射非洲爪蟾的 2 细胞胚胎,以增加导入蛋白α或 NTF2 的水平,从而导致胚胎两半部分的核输入因子数量不同。与对照组相比,这些胚胎表现出延迟的原肠胚形成、弯曲的神经板和弯曲的蝌蚪,眼睛大小不同。此外,与对照微注射胚胎相比,用 NTF2 微注射的胚胎发育成较小的蛙。我们提出,改变核输入因子和核大小会影响 MBT 时间、细胞大小和细胞数量,从而破坏后期的发育。因此,早期发育中改变核输入因子可以影响生物体水平的功能和大小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b4b/6476522/dcd65790c2f5/pone.0215740.g001.jpg

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