Mazur Antonina Joanna, Morosan-Puopolo Gabriela, Makowiecka Aleksandra, Malicka-Błaszkiewicz Maria, Nowak Dorota, Brand-Saberi Beate
Department of Cell Pathology, Faculty of Biotechnology, University of Wroclaw, ul. Joliot-Curie 14a, 50-383, Wrocław, Poland.
Department of Anatomy and Molecular Embryology, Ruhr University of Bochum, Bochum, Germany.
Brain Struct Funct. 2016 Jan;221(1):515-34. doi: 10.1007/s00429-014-0923-5. Epub 2014 Oct 29.
Gelsolin is one of the most intensively studied actin-binding proteins. However, in the literature comprehensive studies of GSN expression during development have not been performed yet in all model organisms. In zebrafish, gelsolin is a dorsalizing factor that modulates bone morphogenetic proteins signaling pathways, whereas knockout of the gelsolin coding gene, GSN is not lethal in murine model. To study the role of gelsolin in development of higher vertebrates, it is crucial to estimate GSN expression pattern during development. Here, we examined GSN expression in the developing chicken embryo. We applied numerous methods to track GSN expression in developing embryos at mRNA and protein level. We noted a characteristic GSN expression pattern. Although GSN transcripts were present in several cell types starting from early developmental stages, a relatively high GSN expression was observed in eye, brain vesicles, midbrain, neural tube, heart tube, and splanchnic mesoderm. In older embryos, we observed a high GSN expression in the cranial ganglia and dorsal root ganglia. A detailed analysis of 10-day-old chicken embryos revealed high amounts of gelsolin especially within the head region: in the olfactory and optic systems, meninges, nerves, muscles, presumptive pituitary gland, and pericytes, but not oligodendrocytes in the brain. Obtained results suggest that GSN is expressed at high levels in some tissues of ectodermal origin including all neural crest derivatives. Additionally, we describe that silencing of GSN expression in brain vesicles leads to altered morphology of the mesencephalon. This implies gelsolin is crucial for chicken brain development.
凝溶胶蛋白是研究最为深入的肌动蛋白结合蛋白之一。然而,在文献中尚未对所有模式生物发育过程中的凝溶胶蛋白(GSN)表达进行全面研究。在斑马鱼中,凝溶胶蛋白是一种背化因子,可调节骨形态发生蛋白信号通路,而在小鼠模型中,凝溶胶蛋白编码基因GSN的敲除并不致命。为了研究凝溶胶蛋白在高等脊椎动物发育中的作用,评估其在发育过程中的表达模式至关重要。在此,我们检测了发育中的鸡胚中GSN的表达。我们应用了多种方法在mRNA和蛋白质水平追踪发育中胚胎的GSN表达。我们注意到一种特征性的GSN表达模式。尽管从早期发育阶段开始,GSN转录本就存在于多种细胞类型中,但在眼睛、脑泡、中脑、神经管、心管和脏壁中胚层中观察到相对较高的GSN表达。在较老的胚胎中,我们在颅神经节和背根神经节中观察到较高的GSN表达。对10日龄鸡胚的详细分析显示,凝溶胶蛋白含量很高,尤其是在头部区域:在嗅觉和视觉系统、脑膜、神经、肌肉、垂体原基和周细胞中,但在脑中的少突胶质细胞中没有。获得的结果表明,GSN在包括所有神经嵴衍生物在内的一些外胚层来源组织中高水平表达。此外,我们描述了脑泡中GSN表达的沉默会导致中脑形态改变。这意味着凝溶胶蛋白对鸡脑发育至关重要。