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首页> 外文期刊>The journal of immunology >Disturbed Follicular Architecture in B Cell A Disintegrin and Metalloproteinase (ADAM)10 Knockouts Is Mediated by Compensatory Increases in ADAM17 and TNF-α Shedding
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Disturbed Follicular Architecture in B Cell A Disintegrin and Metalloproteinase (ADAM)10 Knockouts Is Mediated by Compensatory Increases in ADAM17 and TNF-α Shedding

机译:B细胞A整联蛋白和金属蛋白酶(ADAM)10敲除的扰动滤泡结构由ADAM17和TNF-α脱落的补偿性增加介导

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B cell A disintegrin and metalloproteinase 10 (ADAM10) is required for the development and maintenance of proper secondary lymphoid tissue architecture; however, the underlying mechanism remains unclear. In this study, we show disturbances in naive lymph node architecture from B cell–specific ADAM10-deficient mice (ADAM10B?/?) including loss of B lymphocyte/T lymphocyte compartmentalization, attenuation of follicular dendritic cell reticula, excessive collagen deposition, and increased high endothelial venule formation. Because TNF-α signaling is critical for secondary lymphoid tissue architecture, we examined compensatory changes in ADAM17 and TNF-α in ADAM10B?/? B cells. Surprisingly, defective follicular development in these mice was associated with increased rather than decreased TNF-α expression. In this article, we describe an increase in TNF-α message, mRNA stability, soluble protein release, and membrane expression in ADAM10B?/? B cells compared with wild type (WT), which coincides with increased ADAM17 message and protein. To assess the mechanistic contribution of excessive TNF-α to abnormal lymphoid architecture in ADAM10B?/? mice, we performed a bone marrow reconstitution study. Rectification of WT architecture was noted only in irradiated WT mice reconstituted with ADAM10B?/? + TNF knockout bone marrow because of normalization of TNF-α levels not seen in ADAM10B?/? alone. We conclude that ADAM17 overcompensation causes excessive TNF-α shedding and further upregulation of TNF-α expression, creating an aberrant signaling environment within B cell cortical regions of ADAM10B?/? lymph nodes, highlighting a key interplay between B cell ADAM10 and ADAM17 with respect to TNF-α homeostasis.
机译:B细胞A整联蛋白和金属蛋白酶10(ADAM10)是开发和维持适当的继发性淋巴组织结构所必需的。但是,其潜在机制仍不清楚。在这项研究中,我们显示了来自B细胞特异性ADAM10缺陷型小鼠(ADAM10B?/?)的幼稚淋巴结结构的紊乱,包括B淋巴细胞/ T淋巴细胞区室化的丧失,滤泡树突状细胞网状结构的减弱,过多的胶原蛋白沉积和增加高内皮小静脉形成。因为TNF-α信号对于继发性淋巴组织结构至关重要,所以我们检查了ADAM10Bα/β中ADAM17和TNF-α的代偿性变化。 B细胞。出人意料的是,这些小鼠的卵泡发育不良与TNF-α表达增加而不是减少有关。在本文中,我们描述了ADAM10Bα/α中TNF-α信息,mRNA稳定性,可溶性蛋白释放和膜表达的增加。与野生型(WT)相比,B细胞与ADAM17信息和蛋白质增加相吻合。评估过量的TNF-α对ADAM10B?/?中异常淋巴结构的机制影响。对于小鼠,我们进行了骨髓重建研究。仅在用ADAM10Bα/β重构的经辐照的WT小鼠中注意到WT结构的纠正。 + TNF敲除骨髓,因为在ADAM10B?/?中未见TNF-α水平正常化。单独。我们得出的结论是,ADAM17的过度补偿会导致TNF-α过度脱落并进一步上调TNF-α的表达,从而在ADAM10Bβ/βB细胞皮质区域内形成异常的信号传导环境。淋巴结,突显了B细胞ADAM10和ADAM17在TNF-α动态平衡方面的关键相互作用。

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