Translational Research of Diabetes Key Laboratory of Chongqing Education Commission of China, Department of Endocrinology, Second Affiliated Hospital of Army Medical University, Chongqing, China.
Department of Respiratory and Critical Care Medicine, General Hospital of Western Theater Command, Chengdu, China.
Diabetes. 2021 May;70(5):1170-1184. doi: 10.2337/db20-1008. Epub 2021 Feb 24.
Cutaneous wound healing is a fundamental biologic and coordinated process, and failure to maintain this process contributes to the dysfunction of tissue homeostasis, increasing the global burden of diabetic foot ulcerations. However, the factors that mediate this process are not fully understood. Here, we identify the pivotal role of dedicator of cytokinesis 5 (Dock5) in keratinocyte functions contributing to the process of skin wound healing. Specifically, Dock5 is highly upregulated during the proliferative phase of wound repair and is predominantly expressed in epidermal keratinocytes. It regulates keratinocyte adhesion, migration, and proliferation and influences the functions of extracellular matrix (ECM) deposition by facilitating the ubiquitination of transcription factor ZEB1 to activate laminin-332/integrin signaling. Genetic ablation of Dock5 in mice leads to attenuated reepithelialization and granulation tissue formation, and Dock5 overexpression-improved skin repair can be abrogated by LAMA3 knockdown. Importantly, Dock5 expression in the skin edge is reduced in patients and animal models of diabetes, further suggesting a direct correlation between its abundance and healing capability. The rescue of Dock5 expression in diabetic mice causes a significant improvement in reepithelialization, collagen deposition, ECM production, and granulation. Our study provides a potential therapeutic target for wound healing impairment during diabetes.
皮肤伤口愈合是一个基本的生物学和协调的过程,而未能维持这一过程会导致组织稳态的功能障碍,增加糖尿病足溃疡的全球负担。然而,介导这一过程的因素尚未完全了解。在这里,我们确定了有丝分裂胞器 5(Dock5)在角质形成细胞功能中的关键作用,这些功能有助于皮肤伤口愈合过程。具体来说,Dock5 在伤口修复的增殖期高度上调,主要在表皮角质形成细胞中表达。它调节角质形成细胞的黏附、迁移和增殖,并通过促进转录因子 ZEB1 的泛素化来影响细胞外基质(ECM)沉积的功能,从而激活层粘连蛋白-332/整合素信号。在小鼠中敲除 Dock5 会导致上皮再形成和肉芽组织形成减弱,而 LAMA3 敲低可使 Dock5 过表达改善的皮肤修复作用丧失。重要的是,糖尿病患者和动物模型皮肤边缘的 Dock5 表达减少,进一步表明其丰度与愈合能力之间存在直接相关性。在糖尿病小鼠中拯救 Dock5 的表达会导致上皮再形成、胶原沉积、ECM 产生和肉芽组织显著改善。我们的研究为糖尿病期间伤口愈合受损提供了一个潜在的治疗靶点。