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首页> 外文期刊>Journal of molecular medicine: Official organ of the "Gesellschaft Deutscher Naturforscher und Arzte." >Differentiation of polymorphonuclear neutrophils in patients with systemic infections and chronic inflammatory diseases: evidence of prolonged life span and de novo synthesis of fibronectin.
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Differentiation of polymorphonuclear neutrophils in patients with systemic infections and chronic inflammatory diseases: evidence of prolonged life span and de novo synthesis of fibronectin.

机译:系统性感染和慢性炎性疾病患者中多形核中性粒细胞的分化:纤连蛋白寿命延长和从头合成的证据。

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摘要

Polymorphonuclear neutrophils (PMN) are considered to be short-lived, terminally differentiated cells undergoing spontaneous apoptosis if not appropriately stimulated. In patients with systemic infections and inflammatory disease, however, PMN have an extended life span and acquire new surface receptors and functions. Expression of CD64, the high-affinity receptor for immunoglobulin, has been found, and functionally active elastase and surface-associated fibronectin as well. The latter is of particular interest since fibronectin is known as a multifunctional, multimodal extracellular matrix protein, participating in cell adherence, cell signaling, and cell cycle control. To study the surface-associated fibronectin further, PMN of healthy donors were cultivated to induce de novo synthesis of fibronectin. PMN produced fibronectin, which remained associated with the cell surface, where it was partially cleaved. PMN derived fibronectin exhibited a rare splice pattern: predominantly fibronectin containing the extradomain B (EDB) was generated, but evidently no IIICS domain; the latter is known as a receptor for beta1 integrins. How the presence of EDB affects the properties of fibronectin is not yet understood. Studies with recombinant EDB have failed to show a membrane-binding site or a direct participation of EDB in the adhesion process. The function of PMN-associated fibronectin is still under investigation. The rapid cleavage by surface-associated proteases suggests that fibronectin acts as a tightly regulated adhesion protein, and probably also as a precursor molecule for fibronectin-derived biologically active mediators.
机译:如果不适当刺激,多形核中性粒细胞(PMN)被认为是经历自发凋亡的短寿命,终末分化细胞。但是,在患有全身感染和炎性疾病的患者中,PMN的寿命会延长,并获得新的表面受体和功能。已经发现了CD64的表达,CD64是免疫球蛋白的高亲和力受体,并且具有功能活性的弹性蛋白酶和与表面相关的纤连蛋白。后者特别受关注,因为纤连蛋白被称为多功能,多峰细胞外基质蛋白,参与细胞粘附,细胞信号传导和细胞周期控制。为了进一步研究与表面相关的纤连蛋白,培养了健康供体的PMN,以诱导纤连蛋白的从头合成。 PMN产生纤连蛋白,该纤连蛋白仍与细胞表面结合,并在其中被部分切割。 PMN衍生的纤连蛋白表现出罕见的剪接模式:主要生成包含额外结构域B(EDB)的纤连蛋白,但显然没有IIICS结构域。后者被称为β1整合素的受体。 EDB的存在如何影响纤连蛋白的性质尚不清楚。重组EDB的研究未能显示EDB的膜结合位点或直接参与粘附过程。 PMN相关纤连蛋白的功能仍在研究中。与表面相关的蛋白酶的快速切割表明纤连蛋白起着严格调节的粘附蛋白的作用,并且可能还充当纤连蛋白衍生的生物活性介质的前体分子。

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