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Notch signalling drives synovial fibroblast identity and arthritis pathology 期刊论文
NATURE, 2020, 582 (7811) : 259-+
作者:  Han, Xiaoping;  Zhou, Ziming;  Fei, Lijiang;  Sun, Huiyu;  Wang, Renying;  Chen, Yao;  Chen, Haide;  Wang, Jingjing;  Tang, Huanna;  Ge, Wenhao;  Zhou, Yincong;  Ye, Fang;  Jiang, Mengmeng;  Wu, Junqing;  Xiao, Yanyu;  Jia, Xiaoning;  Zhang, Tingyue;  Ma, Xiaojie;  Zhang, Qi;  Bai, Xueli;  Lai, Shujing;  Yu, Chengxuan;  Zhu, Lijun;  Lin, Rui;  Gao, Yuchi;  Wang, Min;  Wu, Yiqing;  Zhang, Jianming;  Zhan, Renya;  Zhu, Saiyong;  Hu, Hailan;  Wang, Changchun;  Chen, Ming;  Huang, He;  Liang, Tingbo;  Chen, Jianghua;  Wang, Weilin;  Zhang, Dan;  Guo, Guoji
收藏  |  浏览/下载:42/0  |  提交时间:2020/07/03

NOTCH3 signalling is shown to be the underlying driver of the differentiation and expansion of a subset of synovial fibroblasts implicated in the pathogenesis of rheumatoid arthritis.


The synovium is a mesenchymal tissue composed mainly of fibroblasts, with a lining and sublining that surround the joints. In rheumatoid arthritis the synovial tissue undergoes marked hyperplasia, becomes inflamed and invasive, and destroys the joint(1,2). It has recently been shown that a subset of fibroblasts in the sublining undergoes a major expansion in rheumatoid arthritis that is linked to disease activity(3-5)  however, the molecular mechanism by which these fibroblasts differentiate and expand is unknown. Here we identify a critical role for NOTCH3 signalling in the differentiation of perivascular and sublining fibroblasts that express CD90 (encoded by THY1). Using single-cell RNA sequencing and synovial tissue organoids, we found that NOTCH3 signalling drives both transcriptional and spatial gradients-emanating from vascular endothelial cells outwards-in fibroblasts. In active rheumatoid arthritis, NOTCH3 and Notch target genes are markedly upregulated in synovial fibroblasts. In mice, the genetic deletion of Notch3 or the blockade of NOTCH3 signalling attenuates inflammation and prevents joint damage in inflammatory arthritis. Our results indicate that synovial fibroblasts exhibit a positional identity that is regulated by endothelium-derived Notch signalling, and that this stromal crosstalk pathway underlies inflammation and pathology in inflammatory arthritis.


  
Global chemical effects of the microbiome include new bile-acid conjugations 期刊论文
NATURE, 2020, 579 (7797) : 123-+
作者:  Dossin, Francois;  Pinheiro, Ines;  Zylicz, Jan J.;  Roensch, Julia;  Collombet, Samuel;  Le Saux, Agnes;  Chelmicki, Tomasz;  Attia, Mikael;  Kapoor, Varun;  Zhan, Ye;  Dingli, Florent;  Loew, Damarys;  Mercher, Thomas;  Dekker, Job;  Heard, Edith
收藏  |  浏览/下载:31/0  |  提交时间:2020/07/03

Metabolomics data from germ-free and specific-pathogen-free mice reveal effects of the microbiome on host chemistry, identifying conjugations of bile acids that are also enriched in patients with inflammatory bowel disease or cystic fibrosis.


A mosaic of cross-phylum chemical interactions occurs between all metazoans and their microbiomes. A number of molecular families that are known to be produced by the microbiome have a marked effect on the balance between health and disease(1-9). Considering the diversity of the human microbiome (which numbers over 40,000 operational taxonomic units(10)), the effect of the microbiome on the chemistry of an entire animal remains underexplored. Here we use mass spectrometry informatics and data visualization approaches(11-13) to provide an assessment of the effects of the microbiome on the chemistry of an entire mammal by comparing metabolomics data from germ-free and specific-pathogen-free mice. We found that the microbiota affects the chemistry of all organs. This included the amino acid conjugations of host bile acids that were used to produce phenylalanocholic acid, tyrosocholic acid and leucocholic acid, which have not previously been characterized despite extensive research on bile-acid chemistry(14). These bile-acid conjugates were also found in humans, and were enriched in patients with inflammatory bowel disease or cystic fibrosis. These compounds agonized the farnesoid X receptor in vitro, and mice gavaged with the compounds showed reduced expression of bile-acid synthesis genes in vivo. Further studies are required to confirm whether these compounds have a physiological role in the host, and whether they contribute to gut diseases that are associated with microbiome dysbiosis.


  
A method to identify trace sulfated IgG N-glycans as biomarkers for rheumatoid arthritis 期刊论文
NATURE COMMUNICATIONS, 2017, 8
作者:  Wang, Jing-Rong;  Gao, Wei-Na;  Grimm, Rudolf;  Jiang, Shibo;  Liang, Yong;  Ye, Hua;  Li, Zhan-Guo;  Yau, Lee-Fong;  Huang, Hao;  Liu, Ju;  Jiang, Min;  Meng, Qiong;  Tong, Tian-Tian;  Huang, Hai-Hui;  Lee, Stephanie;  Zeng, Xing;  Liu, Liang;  Jiang, Zhi-Hong
收藏  |  浏览/下载:18/0  |  提交时间:2019/11/27
Mechanical-force-induced non-local collective ferroelastic switching in epitaxial lead-titanate thin films 期刊论文
NATURE COMMUNICATIONS, 2019, 10
作者:  Lu, Xiaoyan;  Chen, Zuhuang;  Cao, Ye;  Tang, Yunlong;  Xu, Ruijuan;  Saremi, Sahar;  Zhang, Zhan;  You, Lu;  Dong, Yongqi;  Das, Sujit;  Zhang, Hangbo;  Zheng, Limei;  Wu, Huaping;  Lv, Weiming;  Xie, Guoqiang;  Liu, Xingjun;  Li, Jiangyu;  Chen, Lang;  Chen, Long-Qing;  Cao, Wenwu;  Martin, Lane W.
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
Novel multistereogenic ligand-controlled catalytic asymmetric reactions 期刊论文
SCIENCE, 2018, 360 (6387) : 9-12
作者:  Xu, Zheng;  Bai, Xing-Feng;  Zheng, Long-Sheng;  Song, Tao;  Gao, Guang;  Lv, Ji-Yuan;  Ye, Fei;  Zheng, Zhan-Jiang;  Li, Li;  Yang, Ke-Fang;  Xu, Li-Wen
收藏  |  浏览/下载:8/0  |  提交时间:2019/11/27