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Perturbation of transforming growth factor (TGF)-ß1 association with latent TGF-β binding protein yields inflammation and tumors

机译:转化生长因子(TGF)-ß1与潜在的TGF-β结合蛋白的扰动产生炎症和肿瘤

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摘要

Transforming growth factor-β (TGF-β) activity is controlled at many levels including the conversion of the latent secreted form to its active state. TGF-β is often released as part of an inactive tripartite complex consisting of TGF-β, the TGF-β propeptide, and a molecule of latent TGF-β binding protein (LTBP). The interaction of TGF-β and its cleaved propeptide renders the growth factor latent, and the liberation of TGF-β from this state is crucial for signaling. To examine the contribution of LTBP to TGF-β function, we generated mice in which the cysteines that link the propeptide to LTBP were mutated to serines, thereby blocking covalent association. Tgfb1C33S/C33S mice had multiorgan inflammation, lack of skin Langerhans cells (LC), and a shortened lifespan, consistent with decreased TGF-β1 levels. However, the inflammatory response and decreased lifespan were not as severe as observed with Tgfb1−/− animals. Tgfb1C33S/C33S mice exhibited decreased levels of active TGF-β1, decreased TGF-β signaling, and tumors of the stomach, rectum, and anus. These data suggest that the association of LTBP with the latent TGF-β complex is important for proper TGF-β1 function and that Tgfb1C33S/C33S mice are hypomorphs for active TGF-β1. Moreover, although mechanisms exist to activate latent TGF-β1 in the absence of LTBP, these mechanisms are not as efficient as those that use the latent complex containing LTBP.
机译:转化生长因子-β(TGF-β)的活性受到许多控制,包括潜在的分泌形式向其活性状态的转化。 TGF-β通常作为无活性的三方复合物的一部分释放,该复合物由TGF-β,TGF-β前肽和潜在的TGF-β结合蛋白(LTBP)分子组成。 TGF-β及其裂解的前肽的相互作用使生长因子具有潜伏性,TGF-β从该状态的释放对于信号传导至关重要。为了检查LTBP对TGF-β功能的贡献,我们生成了将前肽与LTBP连接的半胱氨酸突变为丝氨酸的小鼠,从而阻断了共价结合。 Tgfb1 C33S / C33S 小鼠患有多器官炎症,缺乏皮肤朗格汉斯细胞(LC),并且寿命缩短,与TGF-β1水平降低相一致。然而,炎性反应和寿命缩短没有Tgfb1 -/-动物所观察到的严重。 Tgfb1 C33S / C33S 小鼠的活动性TGF-β1水平降低,TGF-β信号传递降低,并且胃,直肠和肛门肿瘤也存在。这些数据表明,LTBP与潜在的TGF-β复合物的结合对于TGF-β1的正常功能很重要,而Tgfb1 C33S / C33S 小鼠是活性TGF-β1的亚型。此外,尽管在不存在LTBP的情况下存在激活潜在TGF-β1的机制,但这些机制并不像使用包含LTBP的潜在复合物的机制那样有效。

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