Kwon Jeongwoo, Seong Min-Jung, Piao Xuanjing, Jo Yu-Jin, Kim Nam-Hyung
Department of Animal Sciences, Chungbuk Natonal University, Cheongju 28864, Korea.
Primate Resources Center (PRC), Korea Research Institute of Bioscience and Biotechnology (KRIBB), Jeongeup 56216, Korea.
Asian-Australas J Anim Sci. 2020 Oct;33(10):1579-1589. doi: 10.5713/ajas.19.0744. Epub 2020 Jan 13.
This study was conducted to investigate the roles of LIM kinases (LIMK1 and LIMK2) during porcine early embryo development. We checked the mRNA expression patterns and localization of LIMK1/2 to evaluate their characterization. We further explored the function of LIMK1/2 in developmental competence and their relationship between actin assembly and cell junction integrity, specifically during the first cleavage and compaction.
Pig ovaries were transferred from a local slaughterhouse within 1 h and cumulus oocyte complexes (COCs) were collected. COCs were matured in in vitro maturation medium in a CO2 incubator. Metaphase II oocytes were activated using an Electro Cell Manipulator 2001 and microinjected to insert LIMK1/2 dsRNA into the cytoplasm. To confirm the roles of LIMK1/2 during compaction and subsequent blastocyst formation, we employed a LIMK inhibitor (LIMKi3).
LIMK1/2 was localized in cytoplasm in embryos and co-localized with actin in cell-to-cell boundaries after the morula stage. LIMK1/2 knockdown using LIMK1/2 dsRNA significantly decreased the cleavage rate, compared to the control group. Protein levels of E-cadherin and β-catenin, present in adherens junctions, were reduced at the cell-to-cell boundaries in the LIMK1/2 knockdown embryos. Embryos treated with LIMKi3 at the morula stage failed to undergo compaction and could not develop into blastocysts. Actin intensity at the cortical region was considerably reduced in LIMKi3-treated embryos. LIMKi3-induced decrease in cortical actin levels was attributed to the disruption of adherens junction and tight junction assembly. Phosphorylation of cofilin was also reduced in LIMKi3-treated embryos.
The above results suggest that LIMK1/2 is crucial for cleavage and compaction through regulation of actin organization and cell junction assembly.
本研究旨在探讨LIM激酶(LIMK1和LIMK2)在猪早期胚胎发育过程中的作用。我们检测了LIMK1/2的mRNA表达模式和定位,以评估其特征。我们进一步探究了LIMK1/2在发育能力方面的功能,以及它们在肌动蛋白组装和细胞连接完整性之间的关系,特别是在第一次卵裂和致密化过程中。
从当地屠宰场在1小时内获取猪卵巢,收集卵丘卵母细胞复合体(COCs)。COCs在二氧化碳培养箱中的体外成熟培养基中成熟。使用电细胞操纵仪2001激活中期II期卵母细胞,并进行显微注射,将LIMK1/2双链RNA注入细胞质。为了证实LIMK1/2在致密化及随后的囊胚形成过程中的作用,我们使用了一种LIMK抑制剂(LIMKi3)。
LIMK1/2定位于胚胎的细胞质中,在桑葚胚阶段后,在细胞间边界处与肌动蛋白共定位。与对照组相比,使用LIMK1/2双链RNA敲低LIMK1/2显著降低了卵裂率。在LIMK1/2敲低的胚胎中,细胞间边界处黏附连接中存在的E-钙黏蛋白和β-连环蛋白的蛋白质水平降低。在桑葚胚阶段用LIMKi3处理的胚胎未能进行致密化,也无法发育成囊胚。在LIMKi3处理的胚胎中,皮质区域的肌动蛋白强度显著降低。LIMKi3诱导的皮质肌动蛋白水平降低归因于黏附连接和紧密连接组装的破坏。在LIMKi3处理的胚胎中,丝切蛋白的磷酸化也降低。
上述结果表明,LIMK1/2通过调节肌动蛋白组织和细胞连接组装对卵裂和致密化至关重要。