Centre de Recherche en Cancérologie de Marseille (CRCM), 'Cell Polarity, Cell Signalling, and Cancer', Equipe Labellisée Ligue Contre le Cancer, Aix Marseille Univ, CNRS, INSERM, Institut Paoli-Calmettes, CRCM, Marseille, France.
Centre de Recherche en Cancérologie de Marseille (CRCM), 'Cell Polarity, Cell Signalling, and Cancer', Equipe Labellisée Ligue Contre le Cancer, Aix Marseille Univ, CNRS, INSERM, Institut Paoli-Calmettes, CRCM, Marseille, France.
J Mol Biol. 2018 Sep 28;430(19):3545-3564. doi: 10.1016/j.jmb.2018.05.023. Epub 2018 May 18.
Cell polarity is a vital biological process involved in the building, maintenance and normal functioning of tissues in invertebrates and vertebrates. Unsurprisingly, molecular defects affecting polarity organization and functions have a strong impact on tissue homeostasis, embryonic development and adult life, and may directly or indirectly lead to diseases. Genetic studies have demonstrated the causative effect of several polarity genes in diseases; however, much remains to be clarified before a comprehensive view of the molecular organization and regulation of the protein networks associated with polarity proteins is obtained. This challenge can be approached head-on using proteomics to identify protein complexes involved in cell polarity and their modifications in a spatio-temporal manner. We review the fundamental basics of mass spectrometry techniques and provide an in-depth analysis of how mass spectrometry has been instrumental in understanding the complex and dynamic nature of some cell polarity networks at the tissue (apico-basal and planar cell polarities) and cellular (cell migration, ciliogenesis) levels, with the fine dissection of the interconnections between prototypic cell polarity proteins and signal transduction cascades in normal and pathological situations. This review primarily focuses on epithelial structures which are the fundamental building blocks for most metazoan tissues, used as the archetypal model to study cellular polarity. This field offers broad perspectives thanks to the ever-increasing sensitivity of mass spectrometry and its use in combination with recently developed molecular strategies able to probe in situ proteomic networks.
细胞极性是一个重要的生物学过程,涉及无脊椎动物和脊椎动物组织的构建、维持和正常功能。毫不奇怪,影响极性组织和功能的分子缺陷对组织稳态、胚胎发育和成年生活有强烈的影响,并且可能直接或间接地导致疾病。遗传研究表明,几个极性基因在疾病中具有因果作用;然而,在获得与极性蛋白相关的蛋白质网络的分子组织和调控的全面观点之前,还有很多需要阐明。这个挑战可以通过蛋白质组学来解决,以鉴定细胞极性相关的蛋白质复合物,并以时空方式分析其修饰。我们回顾了质谱技术的基本原理,并深入分析了质谱技术如何有助于理解细胞极性的一些复杂和动态网络在组织(顶-基极性和平面细胞极性)和细胞(细胞迁移、纤毛发生)水平的本质,精细剖析了典型的细胞极性蛋白与信号转导级联之间的相互联系在正常和病理情况下。本综述主要集中在上皮结构上,上皮结构是大多数后生动物组织的基本组成部分,被用作研究细胞极性的典型模型。由于质谱技术的灵敏度不断提高,以及与最近开发的能够原位探测蛋白质组网络的分子策略相结合的使用,这个领域提供了广泛的视角。