首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Thrombin Cleavage of Osteopontin Disrupts a Pro-chemotactic Sequence for Dendritic Cells Which Is Compensated by the Release of Its Pro-chemotactic C-terminal Fragment
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Thrombin Cleavage of Osteopontin Disrupts a Pro-chemotactic Sequence for Dendritic Cells Which Is Compensated by the Release of Its Pro-chemotactic C-terminal Fragment

机译:骨桥蛋白的凝血酶裂解破坏了树突状细胞的前趋化序列该序列由释放其趋化前的C-末端片段来补偿

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摘要

Thrombin cleavage alters the function of osteopontin (OPN) by exposing an integrin binding site and releasing a chemotactic C-terminal fragment. Here, we examined thrombin cleavage of OPN in the context of dendritic cell (DC) migration to define its functional domains. Full-length OPN (OPN-FL), thrombin-cleaved N-terminal fragment (OPN-R), thrombin- and carboxypeptidase B2-double-cleaved N-terminal fragment (OPN-L), and C-terminal fragment (OPN-CTF) did not have intrinsic chemotactic activity, but all potentiated CCL21-induced DC migration. OPN-FL possessed the highest potency, whereas OPNRAA-FL had substantially less activity, indicating the importance of RGD. We identified a conserved 168RSKSKKFRR176 sequence on OPN-FL that spans the thrombin cleavage site, and it demonstrated potent pro-chemotactic effects on CCL21-induced DC migration. OPN-FLR168A had reduced activity, and the double mutant OPNRAA-FLR168A had even lower activity, indicating that these functional domains accounted for most of the pro-chemotactic activity of OPN-FL. OPN-CTF also possessed substantial pro-chemotactic activity, which was fully expressed upon thrombin cleavage and its release from the intact protein, because OPN-CTF was substantially more active than OPNRAA-FLR168A containing the OPN-CTF sequence within the intact protein. OPN-R and OPN-L possessed similar potency, indicating that the newly exposed C-terminal SVVYGLR sequence in OPN-R was not involved in the pro-chemotactic effect. OPN-FL and OPN-CTF did not directly bind to the CD44 standard form or CD44v6. In conclusion, thrombin cleavage of OPN disrupts a pro-chemotactic sequence in intact OPN, and its loss of pro-chemotactic activity is compensated by the release of OPN-CTF, which assumes a new conformation and possesses substantial activity in enhancing chemokine-induced migration of DCs.
机译:凝血酶裂解通过暴露整联蛋白结合位点并释放趋化性C端片段来改变骨桥蛋白(OPN)的功能。在这里,我们检查了树突状细胞(DC)迁移背景下OPN的凝血酶裂解,以定义其功能结构域。全长OPN(OPN-FL),凝血酶切割的N末端片段(OPN-R),凝血酶和羧肽酶B2双切割的N末端片段(OPN-L)和C末端片段(OPN- CTF)没有内在的趋化活性,但是所有增强的CCL21诱导的DC迁移。 OPN-FL的效力最高,而OPNRAA-FL的活性明显较低,表明RGD的重要性。我们在OPN-FL上鉴定了一个保守的 168 RSKSKKFRR 176 序列,该序列跨越了凝血酶裂解位点,并显示了对CCL21诱导的DC迁移的强促趋化作用。 OPN-FLR168A的活性降低,而双突变体OPNRAA-FLR168A的活性甚至更低,这表明这些功能域占OPN-FL的大部分趋化活性。 OPN-CTF还具有实质的前趋化活性,在凝血酶裂解后从完整蛋白中完全表达出来,这是因为OPN-CTF的活性远高于完整蛋白中包含OPN-CTF序列的OPNRAA-FLR168A。 OPN-R和OPN-L具有相似的效价,表明OPN-R中新暴露的C端SVVYGLR序列不参与化学趋化作用。 OPN-FL和OPN-CTF不直接结合CD44标准形式或CD44v6。总之,OPN的凝血酶裂解会破坏完整OPN中的前趋化序列,其前趋化活性的损失可通过OPN-CTF的释放来补偿,这是一个新的构象,并且在增强趋化因子诱导的迁移中具有实质性的活性。 DC。

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