Myeloid-specific deficiency of ribosomal protein L13a alters macrophage polarity and diversity during differentiation from bone marrow.

IF 3.6 3区 医学 Q3 CELL BIOLOGY
Antara Roy, Victoria A Bzdak, Moonmoon Sinha, Anton A Komar, Peng Jiang, Barsanjit Mazumder
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引用次数: 0

Abstract

Macrophages show substantial plasticity, leading to a diverse population of these cells with different states of polarization during differentiation from bone marrow. However, the mechanisms underlying this process are not well understood. Here, we identified a novel role of ribosomal protein L13a previously shown to be engaged in the physiological control of inflammation regulating macrophage diversity and polarity. Using an ex-vivo differentiation model of bone marrow-derived macrophages (BMDM) from the control (L13aflox/flox) and myeloid-specific L13a KO (L13aflox/flox LysMCre+) mice (L13a-KO) we present compelling evidence of the role of L13a in regulating macrophage polarization that goes beyond the M1-M2-based binary concept. We show that macrophages from L13a-KO mice lead to enhanced expression of classical markers of both M1 and M2 and surprising deviation from the expected response under known inducers of polarity. The phosphorylation-dependent activation of a number of signaling molecules played a role in this process. Bulk RNA and single-cell RNA sequencing of the BMDM from the L13a-KO mice show widespread change in overall gene expression and robust differences in the diverse populations of the bone marrow-derived cells from the control and KO mice. In addition, this study also shows a substantial increase of Th1 and Th2 signature genes in CD4+ T cells isolated from the L13a-KO animals. Together, our studies provide new insights into the regulations of macrophage polarization by L13a-driven novel intermediate effectors or mediators.

骨髓特异性核糖体蛋白L13a缺乏改变巨噬细胞在骨髓分化过程中的极性和多样性。
巨噬细胞表现出巨大的可塑性,导致这些细胞在骨髓分化过程中具有不同的极化状态。然而,这一过程背后的机制尚不清楚。在这里,我们发现了核糖体蛋白L13a的新作用,以前被证明参与炎症的生理控制,调节巨噬细胞的多样性和极性。利用对照(L13aflox/flox)和骨髓特异性L13a KO (L13aflox/flox LysMCre+)小鼠(L13a-KO)骨髓源性巨噬细胞(BMDM)的离体分化模型,我们提供了令人信服的证据,证明L13a在调节巨噬细胞极化方面的作用超出了基于m1 - m2的二元概念。我们发现来自L13a-KO小鼠的巨噬细胞导致M1和M2经典标记物的表达增强,并且在已知极性诱导剂下的预期反应令人惊讶地偏离。许多信号分子的磷酸化依赖性激活在这一过程中发挥了作用。来自L13a-KO小鼠的BMDM的大量RNA和单细胞RNA测序显示,来自对照和KO小鼠的骨髓来源细胞的不同群体的总体基因表达普遍变化和强大差异。此外,本研究还发现从L13a-KO动物分离的CD4+ T细胞中Th1和Th2特征基因显著增加。总之,我们的研究为l13a驱动的新型中间效应物或介质对巨噬细胞极化的调节提供了新的见解。
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来源期刊
Journal of Leukocyte Biology
Journal of Leukocyte Biology 医学-免疫学
CiteScore
11.50
自引率
0.00%
发文量
358
审稿时长
2 months
期刊介绍: JLB is a peer-reviewed, academic journal published by the Society for Leukocyte Biology for its members and the community of immunobiologists. The journal publishes papers devoted to the exploration of the cellular and molecular biology of granulocytes, mononuclear phagocytes, lymphocytes, NK cells, and other cells involved in host physiology and defense/resistance against disease. Since all cells in the body can directly or indirectly contribute to the maintenance of the integrity of the organism and restoration of homeostasis through repair, JLB also considers articles involving epithelial, endothelial, fibroblastic, neural, and other somatic cell types participating in host defense. Studies covering pathophysiology, cell development, differentiation and trafficking; fundamental, translational and clinical immunology, inflammation, extracellular mediators and effector molecules; receptors, signal transduction and genes are considered relevant. Research articles and reviews that provide a novel understanding in any of these fields are given priority as well as technical advances related to leukocyte research methods.
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