首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Small Cytoskeleton-Associated Molecule Fibroblast Growth Factor Receptor 1 Oncogene Partner 2/Wound Inducible Transcript-3.0 (FGFR1OP2/wit3.0) Facilitates Fibroblast-Driven Wound Closure
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Small Cytoskeleton-Associated Molecule Fibroblast Growth Factor Receptor 1 Oncogene Partner 2/Wound Inducible Transcript-3.0 (FGFR1OP2/wit3.0) Facilitates Fibroblast-Driven Wound Closure

机译:小细胞骨架相关分子成纤维细胞生长因子受体1癌基因伴侣2 /创伤诱导转录本3.0(FGFR1OP2 / wit3.0)促进成纤维细胞驱动的伤口闭合

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摘要

Wounds created in the oral cavity heal rapidly and leave minimal scarring. We have examined a role of a previously isolated cDNA from oral wounds encoding wound inducible transcript-3.0 (wit3.0), also known as fibroblast growth factor receptor 1 oncogene partner 2 (FGFR1OP2). FGFR1OP2/wit3.0 was highly expressed in oral wound fibroblasts without noticeable up-regulation of α-smooth muscle actin. In silico analyses, denaturing and nondenaturing gel Western blot, and immunocytology together demonstrated that FGFR1OP2/wit3.0 were able to dimerize and oligomerize through coiled-coil structures and appeared to associate with cytoskeleton networks in oral wound fibroblasts. Overexpression of FGFR1OP2/wit3.0 increased the floating collagen gel contraction of naïve oral fibroblasts to the level of oral wound fibroblasts, which was in turn attenuated by small-interfering RNA knockdown. The FGFR1OP2/wit3.0 synthesis did not affect the expression of collagen I as well as procontractile peptides such as α-smooth muscle actin, and transforming growth factor-β1 had no effect on FGFR1OP2/wit3.0 expression. Fibroblastic cells derived from embryonic stem cells carrying FGFR1OP2/wit3.0 (+/−) mutation showed significant retardation in cell migration. Thus, we postulate that FGFR1OP2/wit3.0 may regulate cell motility and stimulate wound closure. FGFR1OP2/wit3.0 was not up-regulated during skin wound healing; however, when treated with FGFR1OP2/wit3.0 -expression vector, the skin wound closure was significantly accelerated, resulting in the limited granulation tissue formation. Our data suggest that FGFR1OP2/wit3.0 may possess a therapeutic potential for wound management.
机译:口腔中产生的伤口迅速愈合,并留下最小的疤痕。我们已经检查了以前从口腔伤口中分离的cDNA的作用,该基因编码了伤口诱导转录本3.0(wit3.0),也称为成纤维细胞生长因子受体1癌基因伴侣2(FGFR1OP2)。 FGFR1OP2 / wit3.0在口腔创面成纤维细胞中高表达,而α-平滑肌肌动蛋白没有明显上调。在计算机分析中,变性和非变性凝胶蛋白质印迹以及免疫细胞学研究共同表明,FGFR1OP2 / wit3.0能够通过卷曲螺旋结构二聚和寡聚,并且似乎与口腔伤口成纤维细胞中的细胞骨架网络相关。 FGFR1OP2 / wit3.0的过表达将幼稚的口腔成纤维细胞的浮动胶原凝胶收缩增加到口腔伤口成纤维细胞的水平,而后者又被小干扰RNA敲低而减弱。 FGFR1OP2 / wit3.0的合成不影响胶原蛋白I的表达,也不影响α-平滑肌肌动蛋白等收缩肽,转化生长因子-β1对FGFR1OP2 / wit3.0的表达没有影响。衍生自带有FGFR1OP2 / wit3.0(+/-)突变的胚胎干细胞的成纤维细胞在细胞迁移中表现出明显的延迟。因此,我们假定FGFR1OP2 / wit3.0可能调节细胞运动并刺激伤口闭合。在皮肤伤口愈合过程中,FGFR1OP2 / wit3.0没有上调;然而,当用FGFR10P2 / wit3.0表达载体处理时,皮肤伤口闭合明显加速,导致肉芽组织形成受限。我们的数据表明,FGFR1OP2 / wit3.0可能具有治疗伤口的潜力。

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