Cell migration in the immune system: the evolving inter-related roles of adhesion molecules and proteinases.

J A Madri, D Graesser
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引用次数: 122

Abstract

Leukocyte extravasation into perivascular tissue during inflammation and lymphocyte homing to lymphoid organs involve transient adhesion to the vessel endothelium, followed by transmigration through the endothelial cell (EC) layer and establishment of residency at the tissue site for a period of time. In these processes, leukocytes undergo multiple attachments to, and detachments from, the vessel-lining endothelial cells, prior to transendothelial cell migration. Transmigrating leukocytes must traverse a subendothelial basement membrane en route to perivascular tissues and utilize enzymes known as matrix metalloproteinases to make selective clips in the extracellular matrix components of the basement membrane. This review will focus on the evidence for a link between adhesion of leukocytes to endothelial cells, the induction of matrix metalloproteinases mediated by engagement of adhesion receptors on leukocytes, and the ability to utilize these matrix metalloproteinases to facilitate leukocyte invasion of tissues. Leukocytes with invasive phenotypes express high levels of MMPs, and expression of MMPs enhances the migratory and invasive properties of these cells. Furthermore, MMPs may be used by lymphocytes to proteolytically cleave molecules such as adhesion receptors and membrane bound cytokines, increasing their efficiency in the immune response. Engagement of leukocyte adhesion receptors may modulate adhesive (modulation of integrin affinities and expression), synthetic (proteinase induction and activation), and surface organization (clustering of proteolytic complexes) behaviors of invasive leukocytes. Elucidation of these pathways will lead to better understanding of controlling mechanisms in order to develop rational therapeutic approaches in the areas of inflammation and autoimmunity.

免疫系统中的细胞迁移:粘附分子和蛋白酶的相互作用。
炎症期间白细胞外渗到血管周围组织,淋巴细胞归巢到淋巴器官,包括短暂粘附血管内皮,然后通过内皮细胞(EC)层迁移,并在组织部位建立一段时间的驻留。在这些过程中,白细胞在跨内皮细胞迁移之前,经历了与血管内膜内皮细胞的多次附着和分离。移行的白细胞必须穿过内皮下基底膜到达血管周围组织,并利用基质金属蛋白酶在基底膜的细胞外基质成分中选择性剪切。本文将重点讨论白细胞与内皮细胞的粘附、白细胞粘附受体介导的基质金属蛋白酶的诱导以及利用这些基质金属蛋白酶促进白细胞侵袭组织的能力之间的联系。具有侵袭表型的白细胞表达高水平的MMPs, MMPs的表达增强了这些细胞的迁移和侵袭特性。此外,MMPs可能被淋巴细胞用于蛋白裂解分子,如粘附受体和膜结合细胞因子,提高它们在免疫应答中的效率。白细胞粘附受体的参与可能会调节侵袭性白细胞的粘附(整合素亲和力和表达的调节)、合成(蛋白酶的诱导和激活)和表面组织(蛋白水解复合物的聚类)行为。这些途径的阐明将有助于更好地理解控制机制,以便在炎症和自身免疫领域开发合理的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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