Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, Seoul, Republic of Korea.
CK Regeon Inc., Seoul, Republic of Korea.
Clin Transl Med. 2022 Apr;12(4):e742. doi: 10.1002/ctm2.742.
Metabolic diseases, including type 2 diabetes, have long been considered incurable, chronic conditions resulting from a variety of pathological conditions in obese patients. Growing evidence suggests the Wnt/β-catenin pathway is a major pathway in adipose tissue remodelling, pancreatic β-cell regeneration and energy expenditure through regulation of key metabolic target genes in various tissues. CXXC5-type zinc finger protein 5 (CXXC5) is identified negative feedback regulator of the Wnt/β-catenin pathway that functions via Dishevelled (Dvl) binding.
Expression level of CXXC5 was characterised in clinical samples and diabetes-induced mice model. Diabetes-induced mice model was established by using high-fat diet (HFD). HFD-fed mice treated with KY19334, a small molecule inhibiting CXXC5-Dvl protein-protein interaction (PPI), was used to assess the role of CXXC5 in metabolic diseases.
Here, we show that CXXC5 is overexpressed with suppression of Wnt/β-catenin signalling in visceral adipose tissues of patients with obesity-related diabetes. Meanwhile, Cxxc5 mice fed an HFD exhibited resistance to metabolic dysregulation. KY19334 restores the lowered Wnt/β-catenin signalling and reverses metabolic abnormalities as observed in HFD-fed Cxxc5 mice. Administration of KY19334 on HFD-fed mice had a long-lasting glucose-controlling effect through remodelling of adipocytes and regeneration of pancreatic β-cells.
Overall, the inhibition of CXXC5 function by small molecule-mediated interference of Dvl binding is a potential therapeutic strategy for the treatment of obesity-related diabetes.
代谢疾病,包括 2 型糖尿病,长期以来一直被认为是不可治愈的慢性病,是肥胖患者多种病理状况导致的。越来越多的证据表明,Wnt/β-连环蛋白通路是脂肪组织重塑、胰岛β细胞再生和能量消耗的主要途径,通过调节各种组织中的关键代谢靶基因。CXXC5 型锌指蛋白 5(CXXC5)是 Wnt/β-连环蛋白通路的负反馈调节剂,通过与 Dishevelled(Dvl)结合发挥作用。
在临床样本和糖尿病诱导的小鼠模型中对 CXXC5 的表达水平进行了特征描述。通过使用高脂肪饮食(HFD)建立了糖尿病诱导的小鼠模型。用小分子 KY19334 处理 HFD 喂养的小鼠,该小分子抑制 CXXC5-Dvl 蛋白-蛋白相互作用(PPI),以评估 CXXC5 在代谢疾病中的作用。
在这里,我们显示 CXXC5 在肥胖相关糖尿病患者的内脏脂肪组织中过度表达,同时抑制 Wnt/β-连环蛋白信号通路。同时,用 HFD 喂养的 Cxxc5 小鼠表现出对代谢失调的抵抗力。KY19334 恢复了 HFD 喂养的 Cxxc5 小鼠中降低的 Wnt/β-连环蛋白信号,并逆转了观察到的代谢异常。KY19334 在 HFD 喂养的小鼠中的给药通过重塑脂肪细胞和胰岛β细胞的再生具有持久的葡萄糖控制作用。
总之,通过小分子介导的 Dvl 结合干扰抑制 CXXC5 功能是治疗肥胖相关糖尿病的一种潜在治疗策略。