Augmentative effects of leukemia inhibitory factor reveal a critical role for TYK2 signaling in vascular calcification

白血病抑制因子受体 白血病抑制因子 血管平滑肌 内分泌学 钙化 信号转导 癌症研究 车站3 医学 化学 生物 内科学 细胞生物学 炎症 白细胞介素6 平滑肌
作者
Ioana Alesutan,Mehdi Razazian,Trang T. D. Luong,Misael Estepa,Lakmi Pitigala,Laura A. Henze,Jakob Obereigner,Gregor Mitter,Daniel Zickler,Mirjam Schuchardt,Christine Deisl,Manousos Makridakis,Can Gollmann‐Tepeköylü,Andreas Pasch,Daniel Cejka,Susanne Suessner,Marlies Antlanger,Bernhard Bielesz,Mathias Müller,Antonia Vlahou,Johannes Holfeld,Kai‐Uwe Eckardt,Jakob Voelkl
出处
期刊:Kidney International [Elsevier]
卷期号:106 (4): 611-624
标识
DOI:10.1016/j.kint.2024.07.011
摘要

Medial vascular calcification in chronic kidney disease (CKD) involves pro-inflammatory pathways induced by hyperphosphatemia. Several interleukin 6 family members have been associated with pro-calcific effects in vascular smooth muscle cells (VSMCs) and are considered as therapeutic targets. Therefore, we investigated the role of leukemia inhibitory factor (LIF) during VSMC calcification. LIF expression was found to be increased following phosphate exposure of VSMCs. LIF supplementation aggravated, while silencing of endogenous LIF or LIF receptor (LIFR) ameliorated the pro-calcific effects of phosphate in VSMCs. The soluble LIFR mediated antagonistic effects towards LIF and reduced VSMC calcification. Mechanistically, LIF induced phosphorylation of the non-receptor tyrosine-protein kinase 2 (TYK2) and signal transducer and activator of transcription-3 (STAT3) in VSMCs. TYK2 inhibition by deucravacitinib, a selective, allosteric oral immunosuppressant used in psoriasis treatment, not only blunted the effects of LIF, but also interfered with the pro-calcific effects induced by phosphate. Conversely, TYK2 overexpression aggravated VSMC calcification. Ex vivo calcification of mouse aortic rings was ameliorated by Tyk2 pharmacological inhibition and genetic deficiency. Cholecalciferol-induced vascular calcification in mice was improved by Tyk2 inhibition and in the Tyk2-deficient mice. Similarly, calcification was ameliorated in Abcc6/Tyk2-deficient mice after adenine/high phosphorus-induced CKD. Thus, our observations indicate a role for LIF in CKD-associated vascular calcification. Hence, the effects of LIF identify a central pro-calcific role of TYK2 signaling, which may be a future target to reduce the burden of vascular calcification in CKD.
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