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Ciliary and non-ciliary expression and function of PACRG during vertebrate development

机译:脊椎动物发育过程中PACRG的睫状和非睫状表达及功能

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Background Park2-co-regulated gene (PACRG) is evolutionarily highly conserved from green algae to mammals. In Chlamydomonas and trypanosomes, the PACRG protein associates with flagella. Loss of PACRG results in shortened or absent flagella. In mouse the PACRG protein is required for spermatogenesis. The purpose of the present study was to analyze (1) the expression patterns of PACRG during vertebrate embryogenesis, and (2) whether the PACRG protein was required for left-right (LR) axis specification through cilia-driven leftward flow in Xenopus laevis. Methods PACRG cDNAs were cloned and expression was analyzed during early embryonic development of Xenopus, mouse, rabbit and zebrafish. Antisense morpholino oligonucleotide (MO) mediated gene knockdown was applied in Xenopus to investigate LR development at the level of tissue morphology, leftward flow and asymmetric marker gene expression, using timelapse videography, scanning electron microscopy (SEM) and whole-mount in situ hybridization. Results were statistically evaluated using Wilcoxon paired and χ2 tests. Results PACRG mRNA expression was found in cells and tissues harboring cilia throughout the vertebrates. Highly localized expression was also detected in the brain. During early development, PACRG was specifically localized to epithelia where leftward flow arises, that is, the gastrocoel roof plate (GRP) in Xenopus, the posterior notochord (PNC) in mammals and Kupffer’s vesicle (KV) in zebrafish. Besides its association with ciliary axonemes, subcellular localization of PACRG protein was found around the nucleus and in a spotty pattern in the cytoplasm. A green fluorescent protein (GFP) fusion construct preferentially labeled cilia, rendering PACRG a versatile marker for live imaging. Loss-of-function in the frog resulted dose dependently in LR, neural tube closure and gastrulation defects, representing ciliary and non-ciliary functions of PACRG. Conclusions The PACRG protein is a novel essential factor of cilia in Xenopus.
机译:背景Park2共同调控的基因(PACRG)从绿藻到哺乳动物在进化上高度保守。在衣藻和锥虫中,PACRG蛋白与鞭毛结合。 PACRG的丧失导致鞭毛缩短或缺失。在小鼠中,PACRG蛋白是精子发生所必需的。本研究的目的是分析(1)脊椎动物胚胎发生过程中PACRG的表达模式,以及(2)在非洲爪蟾中通过纤毛驱动的向左流动,左右(LR)轴规格是否需要PACRG蛋白。方法克隆非洲爪蟾,小鼠,兔和斑马鱼早期胚胎发育过程中的PACRG cDNA,并分析其表达。在非洲爪蟾中应用反义吗啉代寡核苷酸(MO)介导的基因敲低,使用缩时摄影,扫描电子显微镜(SEM)和整装原位杂交技术,在组织形态学,左向流动和不对称标记基因表达水平研究了LR的发育。使用Wilcoxon配对和χ 2 检验对结果进行统计学评估。结果在整个脊椎动物中,在携带纤毛的细胞和组织中都发现了PACRG mRNA的表达。在大脑中也检测到高度定位的表达。在早期发育过程中,PACRG专门定位于上皮细胞,在那里向左流动,即非洲爪蟾的胃小肠顶板(GRP),哺乳动物的后脊索(PNC)和斑马鱼的库普弗囊泡(KV)。除了与睫状轴蛋白相关外,在细胞核周围和细胞质中也发现斑点状的PACRG蛋白亚细胞定位。绿色荧光蛋白(GFP)融合构建体优先标记了纤毛,使PACRG成为实时成像的多功能标记。青蛙的功能丧失导致剂量依赖性地依赖于LR,神经管闭合和胃形成缺陷,代表了PACRG的睫状和非睫状功能。结论PACRG蛋白是非洲爪蟾纤毛的新型必需因子。

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