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Basement Membrane and Cell Integrity of Self-Tissues in Maintaining Drosophila Immunological Tolerance

机译:维持果蝇免疫耐受的自我组织的基底膜和细胞完整性。

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摘要

The mechanism underlying immune system recognition of different types of pathogens has been extensively studied over the past few decades; however, the mechanism by which healthy self-tissue evades an attack by its own immune system is less well-understood. Here, we established an autoimmune model of melanotic mass formation in Drosophila by genetically disrupting the basement membrane. We found that the basement membrane endows otherwise susceptible target tissues with self-tolerance that prevents autoimmunity, and further demonstrated that laminin is a key component for both structural maintenance and the self-tolerance checkpoint function of the basement membrane. Moreover, we found that cell integrity, as determined by cell-cell interaction and apicobasal polarity, functions as a second discrete checkpoint. Target tissues became vulnerable to blood cell encapsulation and subsequent melanization only after loss of both the basement membrane and cell integrity.
机译:在过去的几十年中,已经对免疫系统识别不同类型病原体的机制进行了广泛研究。但是,对于健康的自我组织规避自身免疫系统攻击的机制了解得很少。在这里,我们通过基因破坏基底膜建立了果蝇黑色素形成的自身免疫模型。我们发现基底膜赋予了其他易感目标组织以自耐受性,可阻止自身免疫,并进一步证明层粘连蛋白是基底膜结构维持和自我耐受检查点功能的关键组成部分。此外,我们发现,由细胞间相互作用和apapobasal极性确定的细胞完整性充当第二个离散检查点。仅在失去基膜和细胞完整性后,靶组织才变得容易受到血细胞包封和随后的黑色素化的影响。

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