Department of Endocrinology, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China.
FASEB J. 2022 Mar;36(3):e22235. doi: 10.1096/fj.202101438RR.
Matricellular proteins, a group of extracellular matrix (ECM) proteins, are key regulators of skin repair and their dysregulation impairs wound healing in diabetes. Tubulointerstitial nephritis antigen like 1 (TINAGL1) is a new member of matricellular protein family, and the understanding of its functional role is still relatively limited. In the current study, we detected the expression of TINAGL1 in diabetic skin wound tissues through RT-PCR, ELISA and Western blot analysis, investigated the contribution of TINAGL1 to wound healing through cutaneous administration of recombinant TINAGL1 protein, and characterized its regulation by hyperglycemia through RNA-seq and signal pathway inhibition assay. We showed that TINAGL1 expression has dynamic change and reaching a peak on day-9 after wound during the wound healing process in wild-type (WT) mice. Interestingly, decreased TINAGL1 expression is detected in skin tissues of diabetic patients and mice after wound. Then, we found that high glucose (HG), an important factor that impairs wound healing, reduces the expression of TINAGL1 in fibroblasts through JNK pathway. Notably, the histology analysis, Masson trichrome assay and IHC assay showed that exogenous TINAGL1 promotes wound healing in diabetic mice by accelerating the formation of granulation tissues. Our study provides evidence that TINAGL1 has an essential role in diabetic wound healing, and meanwhile, indicates that manipulation of TINAGL1 might be a possible therapeutic approach.
基质细胞蛋白是细胞外基质(ECM)蛋白的一个群组,是皮肤修复的关键调节因子,其失调会损害糖尿病患者的伤口愈合。肾小管间质性肾炎抗原样 1(TINAGL1)是基质细胞蛋白家族的新成员,其功能作用的理解仍相对有限。在本研究中,我们通过 RT-PCR、ELISA 和 Western blot 分析检测了糖尿病皮肤伤口组织中 TINAGL1 的表达,通过皮肤给予重组 TINAGL1 蛋白研究了 TINAGL1 对伤口愈合的贡献,并通过 RNA-seq 和信号通路抑制试验研究了其受高血糖的调节情况。结果表明,在野生型(WT)小鼠的伤口愈合过程中,TINAGL1 的表达呈动态变化,在第 9 天达到峰值。有趣的是,在糖尿病患者和小鼠的伤口皮肤组织中检测到 TINAGL1 表达减少。然后,我们发现高糖(HG)作为一种损害伤口愈合的重要因素,通过 JNK 通路降低成纤维细胞中 TINAGL1 的表达。值得注意的是,组织学分析、Masson 三色染色和 IHC 分析表明,外源性 TINAGL1 通过加速肉芽组织的形成促进糖尿病小鼠的伤口愈合。本研究为 TINAGL1 在糖尿病伤口愈合中具有重要作用提供了证据,同时表明 TINAGL1 的调控可能是一种潜在的治疗方法。