Zhang Chonghe, He Hao, Dai Jianing, Li Yunxia, He Jing, Yang Wu, Dai Jialin, Han Feng, Kong Wenyan, Wang Xiaohong, Zheng Xiangjian, Zhou Jing, Pan Weijun, Chen Zhongwen, Singhal Mahak, Zhang Yaoyang, Guo Feng, Hu Junhao
Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, China (C.Z., H.H., J.D., J. He, W.Y., J.D., F.H., W.K., Z.C., Y.Z., J. Hu).
University of Chinese Academy of Sciences, Beijing, China (C.Z., H.H., J.H., W.Y., J.D., Z.C., Y.Z., J. Hu).
Arterioscler Thromb Vasc Biol. 2022 Jun;42(6):772-788. doi: 10.1161/ATVBAHA.122.317711. Epub 2022 Apr 28.
Arteriogenesis plays a critical role in maintaining adequate tissue blood supply and is related to a favorable prognosis in arterial occlusive diseases. Strategies aimed at promoting arteriogenesis have thus far not been successful because the factors involved in arteriogenesis remain incompletely understood. Previous studies suggest that evolutionarily conserved KANK4 (KN motif and ankyrin repeat domain-containing proteins 4) might involve in vertebrate vessel development. However, how the KANK4 regulates vessel function remains unknown. We aim to determine the role of endothelial cell-specifically expressed KANK4 in arteriogenesis.
The role of KANK4 in regulating arteriogenesis was evaluated using and mice. Molecular mechanisms underlying KANK4-potentiated arteriogenesis were investigated by employing RNA transcriptomic profiling and mass spectrometry analysis.
By analyzing reporter mice, we showed that KANK4 was specifically expressed in endothelial cells. In particular, KANK4 displayed a dynamic expression pattern from being ubiquitously expressed in all endothelial cells of the developing vasculature to being explicitly expressed in the endothelial cells of arterioles and arteries in matured vessels. In vitro microfluidic chip-based vascular morphology analysis and in vivo hindlimb ischemia assays using and mice demonstrated that deletion of KANK4 impaired collateral artery growth and the recovery of blood perfusion, whereas KANK4 overexpression leads to increased vessel caliber and blood perfusion. Bulk RNA sequencing and Co-immunoprecipitation/mass spectrometry (Co-IP/MS) analysis identified that KANK4 promoted EC proliferation and collateral artery remodeling through coupling VEGFR2 (vascular endothelial growth factor receptor 2) to TALIN-1, which augmented the activation of the VEGFR2 signaling cascade.
This study reveals a novel role for KANK4 in arteriogenesis in response to ischemia. KANK4 links VEGFR2 to TALIN-1, resulting in enhanced VEGFR2 activation and increased EC proliferation, highlighting that KANK4 is a potential therapeutic target for promoting arteriogenesis for arterial occlusive diseases.
动脉生成在维持充足的组织血液供应中起关键作用,并且与动脉闭塞性疾病的良好预后相关。迄今为止,旨在促进动脉生成的策略尚未成功,因为动脉生成所涉及的因素仍未完全了解。先前的研究表明,进化上保守的KANK4(含KN基序和锚蛋白重复结构域的蛋白4)可能参与脊椎动物血管发育。然而,KANK4如何调节血管功能仍不清楚。我们旨在确定内皮细胞特异性表达的KANK4在动脉生成中的作用。
使用 和 小鼠评估KANK4在调节动脉生成中的作用。通过RNA转录组分析和质谱分析研究KANK4增强动脉生成的分子机制。
通过分析 报告基因小鼠,我们发现KANK4在内皮细胞中特异性表达。特别是,KANK4呈现出一种动态表达模式,从在发育中的脉管系统的所有内皮细胞中普遍表达,到在成熟血管的小动脉和动脉的内皮细胞中明确表达。使用 和 小鼠进行的体外基于微流控芯片的血管形态分析和体内后肢缺血试验表明,KANK4的缺失会损害侧支动脉生长和血液灌注的恢复,而KANK4的过表达会导致血管口径和血液灌注增加。大量RNA测序和免疫共沉淀/质谱(Co-IP/MS)分析确定,KANK4通过将VEGFR2(血管内皮生长因子受体2)与TALIN-1偶联来促进内皮细胞增殖和侧支动脉重塑,从而增强VEGFR2信号级联的激活。
本研究揭示了KANK4在缺血反应性动脉生成中的新作用。KANK4将VEGFR2与TALIN-1连接起来,导致VEGFR2激活增强和内皮细胞增殖增加,突出表明KANK4是促进动脉闭塞性疾病动脉生成的潜在治疗靶点。