An antibody that inhibits TGF-β1 release from latent extracellular matrix complexes attenuates the progression of renal fibrosis

细胞外基质 转化生长因子 纤维化 抗体 表位 化学 癌症研究 细胞生物学 医学 免疫学 分子生物学 生物 内科学
作者
Justin Jackson,Frederick C. Streich,Ajai Pal,George Coricor,Chris Boston,Christopher Brueckner,Kaleigh Canonico,Christopher Chapron,Shaun Cote,Kevin B. Dagbay,Francis T. Danehy,Mania Kavosi,Sandeep Kumar,Susan Lin,Christopher Littlefield,Kailyn Looby,Rohan Manohar,Constance J. Martin,Marcie Wood,Agatha Zawadzka,Stefan Wawersik,Samantha B. Nicholls,Abhishek Datta,Alan Buckler,Thomas Schürpf,Gregory J. Carven,Mohammed Qatanani,Adam I. Fogel
出处
期刊:Science Signaling [American Association for the Advancement of Science (AAAS)]
卷期号:17 (844) 被引量:1
标识
DOI:10.1126/scisignal.adn6052
摘要

Inhibitors of the transforming growth factor–β (TGF-β) pathway are potentially promising antifibrotic therapies, but nonselective simultaneous inhibition of all three TGF-β homologs has safety liabilities. TGF-β1 is noncovalently bound to a latency-associated peptide that is, in turn, covalently bound to different presenting molecules within large latent complexes. The latent TGF-β–binding proteins (LTBPs) present TGF-β1 in the extracellular matrix, and TGF-β1 is presented on immune cells by two transmembrane proteins, glycoprotein A repetitions predominant (GARP) and leucine-rich repeat protein 33 (LRRC33). Here, we describe LTBP-49247, an antibody that selectively bound to and inhibited the activation of TGF-β1 presented by LTBPs but did not bind to TGF-β1 presented by GARP or LRRC33. Structural studies demonstrated that LTBP-49247 recognized an epitope on LTBP-presented TGF-β1 that is not accessible on GARP- or LRRC33-presented TGF-β1, explaining the antibody’s selectivity for LTBP-complexed TGF-β1. In two rodent models of kidney fibrosis of different etiologies, LTBP-49247 attenuated fibrotic progression, indicating the central role of LTBP-presented TGF-β1 in renal fibrosis. In mice, LTBP-49247 did not have the toxic effects associated with less selective TGF-β inhibitors. These results establish the feasibility of selectively targeting LTBP-bound TGF-β1 as an approach for treating fibrosis.
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