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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >In vitro and in vivo evidence for shear-induced activation of latent transforming growth factor-beta1.
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In vitro and in vivo evidence for shear-induced activation of latent transforming growth factor-beta1.

机译:体外和体内剪切诱导的潜在转化生长因子-beta1激活的证据。

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Transforming growth factor-beta1 (TGF-beta1) has potent physiologic and pathologic effects on a variety of cell types at subnanomolar concentrations. Platelets contain 40 times as much TGF-beta1 as other cells and secrete it as an inactive (latent) form in complex with latency-associated peptide (LAP), which is disulfide bonded via Cys33 to latent TGF-beta binding protein 1 (LTBP-1). Little is known about how latent TGF-beta1 becomes activated in vivo. Here we show that TGF-beta1 released from platelets or fibroblasts undergoes dramatic activation when subjected to stirring or shear forces, providing a potential mechanism for physiologic control. Thiol-disulfide exchange appears to contribute to the process based on the effects of thiol-reactive reagents and differences in thiol labeling of TGF-beta1 before and after stirring or shear. Activation required the presence of LTBP, as TGF-beta1 contained in complex with only LAP could not be activated by stirring when studied as either a recombinant purified protein complex or in the platelet releasates or sera of mice engineered to contain an LAP C33S mutation. Release and activation of latent TGF-beta1 in vivo was demonstrated in a mouse model 5 minutes after thrombus formation. These data potentially provide a novel mechanism for in vivo activation of TGF-beta1.
机译:转化生长因子-beta1(TGF-beta1)对亚纳摩尔浓度的多种细胞具有强大的生理和病理作用。血小板含有TGF-beta1的数量是其他细胞的40倍,并以与潜伏期相关肽(LAP)结合的非活性形式(潜伏形式)分泌,该肽经Cys33与潜伏TGF-beta结合蛋白1(LTBP- 1)。关于潜在的TGF-β1如何在体内被激活知之甚少。在这里,我们显示从血小板或成纤维细胞释放的TGF-β1在受到搅拌或剪切力时会发生剧烈活化,从而为生理控制提供了可能的机制。硫醇-二硫化物的交换似乎是基于硫醇反应试剂的作用以及搅拌或剪切之前和之后TGF-beta1的硫醇标记差异而对这一过程有所贡献。激活需要LTBP的存在,因为当研究重组纯化的蛋白复合物或工程改造为包含LAP C33S突变的小鼠的血小板释放物或血清中时,仅通过LAP的复合物中所含的TGF-beta1不能通过搅拌被激活。血栓形成后5分钟,在小鼠模型中证明了体内潜在TGF-beta1的释放和激活。这些数据可能提供体内激活TGF-beta1的新机制。

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