Vu Manh Thien-Phong, Elhmouzi-Younes Jamila, Urien Céline, Ruscanu Suzana, Jouneau Luc, Bourge Mickaël, Moroldo Marco, Foucras Gilles, Salmon Henri, Marty Hélène, Quéré Pascale, Bertho Nicolas, Boudinot Pierre, Dalod Marc, Schwartz-Cornil Isabelle
UM2, Centre d'Immunologie de Marseille-Luminy, Aix Marseille Université , Marseille , France ; U1104, INSERM , Marseille , France ; UMR7280, CNRS , Marseille , France.
UR892, Virologie et Immunologie Moléculaires, INRA, Domaine de Vilvert , Jouy-en-Josas , France.
Front Immunol. 2015 Jun 19;6:299. doi: 10.3389/fimmu.2015.00299. eCollection 2015.
Mononuclear phagocytes are organized in a complex system of ontogenetically and functionally distinct subsets, that has been best described in mouse and to some extent in human. Identification of homologous mononuclear phagocyte subsets in other vertebrate species of biomedical, economic, and environmental interest is needed to improve our knowledge in physiologic and physio-pathologic processes, and to design intervention strategies against a variety of diseases, including zoonotic infections. We developed a streamlined approach combining refined cell sorting and integrated comparative transcriptomics analyses which revealed conservation of the mononuclear phagocyte organization across human, mouse, sheep, pigs and, in some respect, chicken. This strategy should help democratizing the use of omics analyses for the identification and study of cell types across tissues and species. Moreover, we identified conserved gene signatures that enable robust identification and universal definition of these cell types. We identified new evolutionarily conserved gene candidates and gene interaction networks for the molecular regulation of the development or functions of these cell types, as well as conserved surface candidates for refined subset phenotyping throughout species. A phylogenetic analysis revealed that orthologous genes of the conserved signatures exist in teleost fishes and apparently not in Lamprey.
单核吞噬细胞由一个在个体发育和功能上不同的亚群组成的复杂系统构成,这一系统在小鼠中得到了最好的描述,在人类中也有一定程度的描述。为了增进我们对生理和病理生理过程的了解,并设计针对包括人畜共患病感染在内的各种疾病的干预策略,需要在具有生物医学、经济和环境意义的其他脊椎动物物种中鉴定同源单核吞噬细胞亚群。我们开发了一种简化的方法,将精细的细胞分选和综合比较转录组学分析相结合,揭示了人类、小鼠、绵羊、猪以及在某些方面鸡的单核吞噬细胞组织的保守性。这种策略应有助于使组学分析在跨组织和物种的细胞类型鉴定和研究中的应用更加普及。此外,我们鉴定了保守的基因特征,能够对这些细胞类型进行可靠的鉴定和通用定义。我们鉴定了新的进化保守基因候选物和基因相互作用网络,用于这些细胞类型发育或功能的分子调控,以及用于整个物种精细亚群表型分析的保守表面候选物。系统发育分析表明,保守特征的直系同源基因存在于硬骨鱼类中,而在七鳃鳗中显然不存在。