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Transforming growth factor-\beta1 mutations in Camurati-Engelmann disease lead to increased signaling by altering either activation or secretion of the mutant protein

机译:Camurati-Engelmann病中转化生长因子- \ beta 1突变通过改变突变蛋白的激活或分泌而导致信号增强

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摘要

Abstract: Transforming growth factor-beta1 (TGF-beta1) is secreted as a latent precursor, consisting of a homodimer of the latency-associated peptide and the mature peptide. TGFbeta-1 can only exert its many functions after going from this latent to an active state, in which the binding site of the mature peptide for its receptor is no longer shielded by the latency-associated peptide. We and others reported that mutations in TGFB1 cause Camurati-Engelmann disease, a rare bone disorder. Until now, seven mutations have been published. In this study, we investigate the effect of the LLL12-13ins, Y81H, R218C, H222D, and C225R mutations on the functioning of TGF-beta1 in vitro. A luciferase reporter assay specific for TGF-beta-induced transcriptional response with wild type and mutant TGF-beta1 constructs showed a positive effect of all mutations on TGF-beta1 activity. By way of enzyme-linked immunosorbent assay, we found that in the R218C, H222D, and C225R mutant constructs, this effect is caused by an increase in active TGF-beta1 in the medium of transfected cells. The LLL12-13ins and Y81H mutations on the contrary have a profound effect on secretion; a decreased amount of TGF-beta1 is secreted, but the increased luciferase activity shows that the intracellular accumulation of (aberrant) TGF-beta1 can initiate an enhanced transcriptional response, suggesting the existence of an alternative signaling pathway. Our data indicate that the mutations in the signal peptide an latency-associated peptide facilitate TGF-beta1 signaling, thus causing Camurati-Engelmann disease.
机译:摘要:转化生长因子-β1(TGF-β1)作为潜在的前体被分泌,由潜伏期相关肽和成熟肽的同型二聚体组成。 TGFbeta-1从这种潜伏状态变为活性状态后才能发挥其多种功能,在这种状态下,成熟肽与其受体的结合位点不再被潜伏期相关肽所屏蔽。我们和其他人报道,TGFB1突变导致Camurati-Engelmann病,一种罕见的骨骼疾病。到目前为止,已经发布了七个突变。在这项研究中,我们调查了LLL12-13ins,Y81H,R218C,H222D和C225R突变对TGF-beta1体外功能的影响。荧光素酶报告基因检测法对TGF-β诱导的野生型和突变TGF-β1构建体的转录反应具有特异性,显示了所有突变对TGF-β1活性的积极影响。通过酶联免疫吸附测定,我们发现在R218C,H222D和C225R突变体构建体中,这种作用是由转染细胞培养基中活性TGF-beta1的增加引起的。相反,LLL12-13ins和Y81H突变对分泌有深远的影响。 TGF-β1的分泌量减少,但是荧光素酶活性的增加表明(异常)TGF-β1的细胞内积累可以启动增强的转录反应,表明存在另一种信号通路。我们的数据表明,信号肽和潜伏期相关肽中的突变促进TGF-β1信号传导,从而引起Camurati-Engelmann病。

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