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The PAR2 signal peptide prevents premature receptor cleavage and activation

机译:PAR2信号肽可防止过早受体切割和激活

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Unlike closely related GPCRs, protease-activated receptors (PAR1, PAR2, PAR3, and PAR4) have a predicted signal peptide at their N-terminus, which is encoded by a separate exon, suggesting that the signal peptides of PARs may serve an important and unique function, specific for PARs. In this report, we show that the PAR2 signal peptide, when fused to the N-terminus of IgG-Fc, effectively induced IgG-Fc secretion into culture medium, thus behaving like a classical signal peptide. The presence of PAR2 signal peptide has a strong effect on PAR2 cell surface expression, as deletion of the signal peptide (PAR2ΔSP) led to dramatic reduction of the cell surface expression and decreased responses to trypsin or the synthetic peptide ligand (SLIGKV). However, further deletion of the tethered ligand region (SLIGKV) at the N-terminus rescued the cell surface receptor expression and the response to the synthetic peptide ligand, suggesting that the signal peptide of PAR2 may be involved in preventing PAR2 from intracellular protease activation before reaching the cell surface. Supporting this hypothesis, an Arg36Ala mutation on PAR2ΔSP, which disabled the trypsin activation site, increased the receptor cell surface expression and the response to ligand stimulation. Similar effects were observed when PAR2ΔSP expressing cells were treated with protease inhibitors. Our findings indicated that there is a role of the PAR2 signal peptide in preventing the premature activation of PAR2 from intracellular protease cleavage before reaching the cells surface. The same mechanism may also apply to PAR1, PAR3, and PAR4.
机译:与密切相关的GPCR不同,蛋白酶激活的受体(PAR1,PAR2,PAR3和PAR4)在其N-末端具有预测的信号肽,其由单独的外显子编码,表明PRAS的信号肽可以服务于重要和独特的功能,具体参见。在本报告中,我们表明PAR2信号肽,当融合到IgG-Fc的N-末端时,有效地诱导IgG-Fc分泌到培养基中,从而表现得像经典信号肽。 PAR2信号肽的存在对PAR2细胞表面表达具有很强的影响,因为信号肽(PAR2ΔSP)的缺失导致细胞表面表达的显着降低和对胰蛋白酶或合成肽配体(SLIGKV)的响应降低。然而,在N-末端的束缚配体区(Sligkv)进一步缺失拯救了细胞表面受体表达和对合成肽配体的响应,表明PAR2的信号肽可以涉及预防以前的细胞内蛋白酶活化的PAR2到达细胞表面。支持该假设,PAR2ΔSP上的ARG36ALA突变,禁用胰蛋白酶活化位点,增加受体细胞表面表达和对配体刺激的响应。当用蛋白酶抑制剂处理PAR2ΔSP细胞时,观察到类似的效果。我们的研究结果表明,PAR2信号肽的作用是在到达细胞表面之前,PAR2信号肽在预防细胞内蛋白酶切割中的过早激活PAR2。相同的机制也可能适用于PAR1,PAR3和PAR4。

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