A human histidyl-tRNA synthetase splice variant therapeutic targets NRP2 to resolve lung inflammation and fibrosis

促炎细胞因子 炎症 免疫系统 纤维化 医学 癌症研究 免疫学 生物 病理
作者
Leslie A. Nangle,Zhiwen Xu,David Siefker,Christoph Burkart,Yeeting E. Chong,Liting Zhai,Yanyan Geng,Clara Polizzi,Lauren Guy,Lisa Eide,Yao Tong,Sofia Klopp-Savino,Michaela Ferrer,Kaitlyn Rauch,Anthony Hu Wang,Kristina Hamel,Steve P. Crampton,Suzanne Paz,Kyle P. Chiang,T. Minh‐Ha
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:17 (789): eadp4754-eadp4754 被引量:3
标识
DOI:10.1126/scitranslmed.adp4754
摘要

Interstitial lung disease (ILD) consists of a group of immune-mediated disorders that can cause inflammation and progressive fibrosis of the lungs, representing an area of unmet medical need given the lack of disease-modifying therapies and toxicities associated with current treatment options. Tissue-specific splice variants (SVs) of human aminoacyl-tRNA synthetases (aaRSs) are catalytic nulls thought to confer regulatory functions. One example from human histidyl-tRNA synthetase (HARS), termed HARS WHEP because the splicing event resulted in a protein encompassing the WHEP-TRS domain of HARS (a structurally conserved domain found in multiple aaRSs), is enriched in human lung and up-regulated by inflammatory cytokines in lung and immune cells. Structural analysis of HARS WHEP confirmed a well-organized helix-turn-helix motif. This motif bound specifically and selectively to neuropilin-2 (NRP2), a receptor expressed by myeloid cells in active sites of inflammation, to inhibit expression of proinflammatory receptors and cytokines and to down-regulate inflammatory pathways in primary human macrophages. In animal models of lung injury and ILD, including bleomycin treatment, silicosis, sarcoidosis, chronic hypersensitivity pneumonitis, systemic sclerosis, and rheumatoid arthritis–ILD, HARS WHEP reduced lung inflammation, immune cell infiltration, and fibrosis. In patients with sarcoidosis, efzofitimod treatment resulted in down-regulation of gene expression for inflammatory pathways in peripheral immune cells and stabilization of inflammatory biomarkers in serum after steroid tapering. We demonstrate the immunomodulatory activity of HARS WHEP and present preclinical data supporting ongoing clinical development of the biologic efzofitimod based on HARS WHEP in ILD.
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