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Hematopoietic progenitor cells regulate their niche microenvironment through a novel mechanism of cell-cell communication

机译:造血祖细胞通过细胞-细胞通讯的新机制调节其利基微环境

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摘要

Cellular communication within a larger microenvironment is critical for a number of physiological processes. Within the bone marrow niche, direct cell communication between hematopoietic progenitor cells (HPCs) and osteoblasts provides essential cues for their proliferation and survival. While contact-dependent communication between HPCs and osteoblasts is known to be critical, the molecular pathways that govern this interaction are largely unclear. Moreover, the downstream events occurring at the HPC/osteoblast contact site remain uncharacterized, despite their major role in signaling and remodeling within the niche microenvironment. Using live cell imaging approaches, we found that intercellular transfer is a novel mode of cell communication within the bone marrow niche microenvironment. HPCs made prolonged contact with the osteoblast surface via a specialized membrane domain enriched in prominin 1, CD63 and rhodamine PE. At the contact site, portions of the HPC specialized domain containing these molecules were taken up by the osteoblast and internalized into long-lived, SARA-positive, signaling endosomes. This resulted in the down-regulation of Smad signaling by the osteoblasts and a subsequent increase in the production of stromal-derived factor-1 (SDF-1), a chemokine responsible for HPC homing to bone marrow. These findings identify a novel mechanism involving intercellular transfer to signaling endosomes for targeted regulation of signaling and remodeling events within the osteoblastic niche microenvironment.
机译:较大的微环境中的细胞通讯对于许多生理过程至关重要。在骨髓生境中,造血祖细胞(HPC)和成骨细胞之间的直接细胞通讯为它们的增殖和存活提供了重要线索。尽管众所周知,HPC与成骨细胞之间的接触依赖型通信至关重要,但控制这种相互作用的分子途径尚不清楚。此外,尽管它们在利基微环境中的信号传导和重塑中起主要作用,但在HPC /成骨细胞接触位点发生的下游事件仍然没有特征。使用活细胞成像方法,我们发现细胞间转移是骨髓小生境微环境内细胞通讯的一种新型模式。 HPCs通过富含蛋白质蛋白1,CD63和若丹明PE的特殊膜结构域与成骨细胞表面长时间接触。在接触部位,成骨细胞吸收了包含这些分子的HPC专门域的一部分,并内化为长寿的SARA阳性信号内体。这导致成骨细胞下调了Smad信号传导,并随后增加了基质衍生因子1(SDF-1)的产生,后者是负责HPC归巢于骨髓的趋化因子。这些发现确定了一种新的机制,涉及到向成核小生境微环境内信号传导和重塑事件的靶向调节的细胞间转移至信号传导内体。

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