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Eater cooperates with Multiplexin to drive the formation of hematopoietic compartments

机译:食器与多路复用型合作以推动造血隔室的形成

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摘要

Blood development in multicellular organisms relies on specific tissue microenvironments that nurture hematopoietic precursors and promote their self-renewal, proliferation, and differentiation. The mechanisms driving blood cell homing and their interactions with hematopoietic microenvironments remain poorly understood. Here, we use the Drosophila melanogaster model to reveal a pivotal role for basement membrane composition in the formation of hematopoietic compartments. We demonstrate that by modulating extracellular matrix components, the fly blood cells known as hemocytes can be relocated to tissue surfaces where they function similarly to their natural hematopoietic environment. We establish that the Collagen XV/XVIII ortholog Multiplexin in the tissue-basement membranes and the phagocytosis receptor Eater on the hemocytes physically interact and are necessary and sufficient to induce immune cell-tissue association. These results highlight the cooperation of Multiplexin and Eater as an integral part of a homing mechanism that specifies and maintains hematopoietic sites in Drosophila.
机译:多细胞生物中的血液发育依赖于培养造血前体并促进其自我更新,增殖和分化的特异性组织微环境。促使血细胞归巢的机制及其与造血微环境的相互作用仍然明白。在这里,我们使用果蝇黑素转酯模型来揭示基底膜组合物在形成造血室中的枢轴作用。我们证明通过调节细胞外基质组分,称为血细胞的飞血血细胞可以迁移到组织表面,它们与其自然造血环境类似。我们在组织 - 基底膜中建立胶原蛋白XV / XVIII Orthologuplog in和血细胞对血细胞物理相互作用的吞噬菌菌病受体口,是必要的,并且足以诱导免疫细胞组织结合。这些结果突出了多重素和食物的合作作为归巢机制的组成部分,其指定和维持果蝇中的造血位点。

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