Ihle Claire L, Straign Desiree M, Provera Meredith D, Novitskiy Sergey V, Owens Philip
Cancer Biology Graduate Program, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Department of Pathology, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.
Front Oncol. 2020 Apr 7;10:357. doi: 10.3389/fonc.2020.00357. eCollection 2020.
The Bone Morphogenetic Protein (BMP) pathway is a member of the TGFβ signaling family and has complex roles in cancer. BMP signaling is rarely mutated and can be frequently overexpressed in many human cancers. The dichotomous role of BMPs as both tumor promoters and suppressors appears to be largely context based in both the cancer cell and the surrounding microenvironment. Myeloid cells including macrophages and neutrophils have been shown to be tumor promoting when stimulated from BMPs. We found that conditional deletion of BMPR1a in myeloid cells (LysMCre) restricts tumor progression in a syngeneic mouse prostate cancer model. Specific changes occurred in myeloid cells both in tumor bearing mice and tumor naïve mice throughout multiple tissues. We profiled myeloid subsets in the bone marrow, spleen and primary tumor and found myeloid BMPR1a loss altered the differentiation and lineage capability of distinct populations by histologic, flow cytometry and high dimensional mass cytometry analysis. We further confirmed the requirement for BMP signaling with pharmacologic inhibition of THP-1 and Raw264.7 activated into M2 macrophages with the BMP inhibitor DMH1. M2 polarized primary bone marrow derived cells from LysMCre BMPR1a knockout mice indicated a distinct requirement for BMP signaling in myeloid cells during M2 activation. These results indicate a unique necessity for BMP signaling in myeloid cells during tumor progression.
骨形态发生蛋白(BMP)信号通路是转化生长因子β(TGFβ)信号家族的成员,在癌症中具有复杂的作用。BMP信号很少发生突变,但在许多人类癌症中经常过度表达。BMP作为肿瘤促进因子和抑制因子的双重作用似乎在很大程度上取决于癌细胞和周围微环境的背景。包括巨噬细胞和中性粒细胞在内的髓样细胞在受到BMP刺激时已被证明具有促进肿瘤的作用。我们发现,在同基因小鼠前列腺癌模型中,髓样细胞(LysMCre)中BMPR1a的条件性缺失会限制肿瘤进展。在荷瘤小鼠和未接触肿瘤的小鼠的多个组织中,髓样细胞都发生了特定变化。我们对骨髓、脾脏和原发性肿瘤中的髓样亚群进行了分析,通过组织学、流式细胞术和高维质谱流式细胞术分析发现,髓样细胞中BMPR1a的缺失改变了不同群体的分化和谱系能力。我们用BMP抑制剂DMH1对THP-1和Raw264.7激活分化为M2巨噬细胞进行药理抑制,进一步证实了对BMP信号的需求。来自LysMCre BMPR1a基因敲除小鼠的M2极化原代骨髓衍生细胞表明,在M2激活过程中,髓样细胞对BMP信号有独特的需求。这些结果表明,在肿瘤进展过程中,髓样细胞中的BMP信号具有独特的必要性。