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TAM 受体、Gas6 和蛋白 S:在炎症和止血中的作用。

TAM receptors, Gas6, and protein S: roles in inflammation and hemostasis.

机构信息

Center for Experimental and Molecular Medicine, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Blood. 2014 Apr 17;123(16):2460-9. doi: 10.1182/blood-2013-09-528752. Epub 2014 Mar 4.

Abstract

TAM receptors (Tyro3, Axl, and Mer) belong to a family of receptor tyrosine kinases that have important effects on hemostasis and inflammation. Also, they affect cell proliferation, survival, adhesion, and migration. TAM receptors can be activated by the vitamin K-dependent proteins Gas6 and protein S. Protein S is more commonly known as an important cofactor for protein C as well as a direct inhibitor of multiple coagulation factors. To our knowledge, the functions of Gas6 are limited to TAM receptor activation. When activated, the TAM receptors have effects on primary hemostasis and coagulation and display an anti-inflammatory or a proinflammatory effect, depending on cell type. To comprehend the effects that the TAM receptors and their ligands have on hemostasis and inflammation, we compare studies that report the different phenotypes displayed by mice with deficiencies in the genes of this receptor family and its ligands (protein S(+/-), Gas6(-/-), TAM(-/-), and variations of these). In this manner, we aim to display which features are attributable to the different ligands. Because of the effects TAM receptors have on hemostasis, inflammation, and cancer growth, their modulation could make interesting therapeutic targets in thromboembolic disease, atherosclerosis, sepsis, autoimmune disease, and cancer.

摘要

TAM 受体(Tyro3、Axl 和 Mer)属于受体酪氨酸激酶家族,对止血和炎症有重要影响。此外,它们还影响细胞增殖、存活、黏附和迁移。TAM 受体可被维生素 K 依赖性蛋白 Gas6 和蛋白 S 激活。蛋白 S 更常被称为蛋白 C 的重要辅助因子,也是多种凝血因子的直接抑制剂。据我们所知,Gas6 的功能仅限于 TAM 受体的激活。当被激活时,TAM 受体对初级止血和凝血有影响,并根据细胞类型显示抗炎或促炎作用。为了理解 TAM 受体及其配体对止血和炎症的影响,我们比较了报告该受体家族及其配体(蛋白 S(+/-)、Gas6(-/-)、TAM(-/-)和这些的变体)基因缺陷的小鼠显示的不同表型的研究。通过这种方式,我们旨在展示哪些特征归因于不同的配体。由于 TAM 受体对止血、炎症和癌症生长的影响,其调节可能成为血栓栓塞性疾病、动脉粥样硬化、败血症、自身免疫性疾病和癌症的有趣治疗靶点。

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