首页> 美国卫生研究院文献>Biochemical Journal >The N-terminal thrombin receptor fragment SFLLRN but not catalytically inactive thrombin-derived agonists activate U937 human monocytic cells: evidence for receptor hydrolysis in thrombin-dependent signalling.
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The N-terminal thrombin receptor fragment SFLLRN but not catalytically inactive thrombin-derived agonists activate U937 human monocytic cells: evidence for receptor hydrolysis in thrombin-dependent signalling.

机译:N端凝血酶受体片段SFLLRN而不是催化失活的凝血酶衍生的激动剂可激活U937人单核细胞:凝血酶依赖性信号中受体水解的证据。

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摘要

It has previously been reported that murine macrophages can respond chemotactically and mitogenically to the serine proteinase thrombin. There is a similar response in these macrophages to catalytically inactivated thrombin or to peptide fragments of the thrombin B-chain [Bar-Shavit, Kahn, Mann and Wilner (1986) Proc. Natl. Acad. Sci. U.S.A. 83, 976-980]. However, the existence of a non-proteolytic mechanism of thrombin receptor activation in mononuclear cells was not evident in the present study using U937 human monocytic cells. The ability of thrombin to stimulate intracellular Ca2+ mobilization, actin polymerization or cell proliferation was not mimicked by N alpha-tosyl-L-lysine chloromethyl ketone (TLCK)-treated thrombin or by a synthetic 14-amino-acid peptide (single amino acid letter code YPPWNKNFTENDLL) corresponding to a part of the B-chain of thrombin which was reported to be mitogenic in murine macrophages. Evidence was obtained, however, in U937 cells for the presence of proteolytic-dependent thrombin receptor similar to the thrombin receptor expressed in platelets, which following thrombin cleavage exposes a new N-terminal tethered ligand. In support of this, a thrombin-receptor-derived hexapeptide (TRP; sequence SFLLRN), corresponding to a part of the thrombin receptor tethered ligand, mimicked all the actions of thrombin in U937 cells. Further, TRP and thrombin cross-desensitized U937 cells to subsequent stimulation with either TRP or thrombin, suggesting that TRP acted through the same U937 cell surface receptor as did thrombin. Thrombin activation of U937 monocytic cells can therefore be accounted for entirely by a proteolytic mechanism of thrombin receptor activation.
机译:以前已经报道过鼠巨噬细胞可以对丝氨酸蛋白酶凝血酶进行化学趋化和促有丝分裂反应。在这些巨噬细胞中,对催化失活的凝血酶或凝血酶B链的肽片段有类似的反应[Bar-Shavit,Kahn,Mann和Wilner(1986)Proc.Natl.Acad.Sci.USA 90:5873-5877。 Natl。学院科学U.S.A. 83,976-980]。但是,在目前使用U937人单核细胞的研究中,单核细胞中凝血酶受体激活的非蛋白水解机制并不存在。凝血酶刺激细胞内Ca2 +动员,肌动蛋白聚合或细胞增殖的能力没有被Nα-甲苯磺酰基-L-赖氨酸氯甲基酮(TLCK)处理的凝血酶或合成的14个氨基酸的肽(单个氨基酸字母)所模仿编码YPPWNKNFTENDLL),对应于凝血酶B链的一部分,据报道该部分在鼠巨噬细胞中有丝分裂。但是,在U937细胞中获得了与血小板中表达的凝血酶受体相似的蛋白水解依赖性凝血酶受体的证据,凝血酶裂解后会暴露出一个新的N末端拴系配体。支持这一点的是,凝血酶受体衍生的六肽(TRP;序列SFLLRN),对应于凝血酶受体拴系配体的一部分,模仿了U937细胞中凝血酶的所有作用。此外,TRP和凝血酶使U937细胞脱敏,使其随后受到TRP或凝血酶的刺激,表明TRP通过与凝血酶相同的U937细胞表面受体起作用。因此,U937单核细胞的凝血酶激活可以完全由凝血酶受体激活的蛋白水解机制来解释。

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