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A metabolic pathway for bile acid dehydroxylation by the gut microbiome 期刊论文
NATURE, 2020
作者:  Zhong, Miao;  Tran, Kevin;  Min, Yimeng;  Wang, Chuanhao;  Wang, Ziyun;  Dinh, Cao-Thang;  De Luna, Phil;  Yu, Zongqian;  Rasouli, Armin Sedighian;  Brodersen, Peter;  Sun, Song;  Voznyy, Oleksandr;  Tan, Chih-Shan;  Askerka, Mikhail;  Che, Fanglin;  Liu, Min;  Seifitokaldani, Ali;  Pang, Yuanjie;  Lo, Shen-Chuan;  Ip, Alexander;  Ulissi, Zachary;  Sargent, Edward H.
收藏  |  浏览/下载:45/0  |  提交时间:2020/07/03

The biosynthetic pathway that produces the secondary bile acids DCA and LCA in human gut microbes has been fully characterized, engineered into another bacterial host, and used to confer DCA production in germ-free mice-an important proof-of-principle for the engineering of gut microbial pathways.


The gut microbiota synthesize hundreds of molecules, many of which influence host physiology. Among the most abundant metabolites are the secondary bile acids deoxycholic acid (DCA) and lithocholic acid (LCA), which accumulate at concentrations of around 500 mu M and are known to block the growth ofClostridium difficile(1), promote hepatocellular carcinoma(2)and modulate host metabolism via the G-protein-coupled receptor TGR5 (ref.(3)). More broadly, DCA, LCA and their derivatives are major components of the recirculating pool of bile acids(4)  the size and composition of this pool are a target of therapies for primary biliary cholangitis and nonalcoholic steatohepatitis. Nonetheless, despite the clear impact of DCA and LCA on host physiology, an incomplete knowledge of their biosynthetic genes and a lack of genetic tools to enable modification of their native microbial producers limit our ability to modulate secondary bile acid levels in the host. Here we complete the pathway to DCA and LCA by assigning and characterizing enzymes for each of the steps in its reductive arm, revealing a strategy in which the A-B rings of the steroid core are transiently converted into an electron acceptor for two reductive steps carried out by Fe-S flavoenzymes. Using anaerobic in vitro reconstitution, we establish that a set of six enzymes is necessary and sufficient for the eight-step conversion of cholic acid to DCA. We then engineer the pathway intoClostridium sporogenes, conferring production of DCA and LCA on a nonproducing commensal and demonstrating that a microbiome-derived pathway can be expressed and controlled heterologously. These data establish a complete pathway to two central components of the bile acid pool.


  
Characterization of PM2.5-bound nitrated and oxygenated polycyclic aromatic hydrocarbons in ambient air of Langfang during periods with and without traffic restriction 期刊论文
ATMOSPHERIC RESEARCH, 2018, 213: 302-308
作者:  Zhao, Jingbo;  Zhang, Jing;  Sun, Luna;  Liu, Yan;  Lin, Yingchao;  Li, Yuening;  Wang, Ting;  Mao, Hongjun
收藏  |  浏览/下载:32/0  |  提交时间:2019/04/09
nPAHs  oPAHs  PM2.5  Diurnal variation  Traffic restriction  
Rapid transition from continental breakup to igneous oceanic crust in the South China Sea 期刊论文
NATURE GEOSCIENCE, 2018, 11 (10) : 782-+
作者:  Larsen, H. C.;  Mohn, G.;  Nirrengarten, M.;  Sun, Z.;  Stock, J.;  Jian, Z.;  Klaus, A.;  Alvarez-Zarikian, C. A.;  Boaga, J.;  Bowden, S. A.;  Briais, A.;  Chen, Y.;  Cukur, D.;  Dadd, K.;  Ding, W.;  Dorais, M.;  Ferre, E. C.;  Ferreira, F.;  Furusawa, A.;  Gewecke, A.;  Hinojosa, J.;  Hofig, T. W.;  Hsiung, K. H.;  Huang, B.;  Huang, E.;  Huang, X. L.;  Jiang, S.;  Jin, H.;  Johnson, B. G.;  Kurzawski, R. M.;  Lei, C.;  Li, B.;  Li, L.;  Li, Y.;  Lin, J.;  Liu, C.;  Liu, Z.;  Luna, A. J.;  Lupi, C.;  McCarthy, A.;  Ningthoujam, L.;  Osono, N.;  Peate, D. W.;  Persaud, P.;  Qiu, N.;  Robinson, C.;  Satolli, S.;  Sauermilch, I;  Schindlbeck, J. C.;  Skinner, S.;  Straub, S.;  Su, X.;  Su, C.;  Tian, L.;  Van Der Zwan, F. M.;  Wan, S.;  Wu, H.;  Xiang, R.;  Yadav, R.;  Yi, L.;  Yu, P. S.;  Zhang, C.;  Zhang, J.;  Zhang, Y.;  Zhao, N.;  Zhong, G.;  Zhong, L.
收藏  |  浏览/下载:45/0  |  提交时间:2019/04/09