GSTDTAP

浏览/检索结果: 共20条,第1-10条 帮助

已选(0)清除 条数/页:   排序方式:
Inhibition of prostaglandin-degrading enzyme 15-PGDH rejuvenates aged muscle mass and strength 期刊论文
Science, 2021
作者:  A. R. Palla;  M. Ravichandran;  Y. X. Wang;  L. Alexandrova;  A. V. Yang;  P. Kraft;  C. A. Holbrook;  C. M. Schürch;  A. T. V. Ho;  H. M. Blau
收藏  |  浏览/下载:11/0  |  提交时间:2021/02/17
Three western pacific typhoons strengthened fire weather in the recent northwest U.S. conflagration 期刊论文
Geophysical Research Letters, 2020
作者:  Jacob Stuivenvolt Allen;  S.‐;  Y. Simon Wang;  Matthew D. LaPlante;  Jin‐;  Ho Yoon
收藏  |  浏览/下载:8/0  |  提交时间:2020/12/22
Dating the emergence of human pathogens 期刊论文
Science, 2020
作者:  Simon Y. W. Ho;  Sebastián Duchêne
收藏  |  浏览/下载:4/0  |  提交时间:2020/06/22
Gas chromatography–mass spectrometry analyses of encapsulated stable perovskite solar cells 期刊论文
Science, 2020
作者:  Lei Shi;  Martin P. Bucknall;  Trevor L. Young;  Meng Zhang;  Long Hu;  Jueming Bing;  Da Seul Lee;  Jincheol Kim;  Tom Wu;  Noboru Takamure;  David R. McKenzie;  Shujuan Huang;  Martin A. Green;  Anita W. Y. Ho-Baillie
收藏  |  浏览/下载:7/0  |  提交时间:2020/06/22
The water lily genome and the early evolution of flowering plants 期刊论文
NATURE, 2020, 577 (7788) : 79-+
作者:  Zhang, Liangsheng;  Chen, Fei;  Zhang, Xingtan;  Li, Zhen;  Zhao, Yiyong;  Lohaus, Rolf;  Chang, Xiaojun;  Dong, Wei;  Ho, Simon Y. W.;  Liu, Xing;  Song, Aixia;  Chen, Junhao;  Guo, Wenlei;  Wang, Zhengjia;  Zhuang, Yingyu;  Wang, Haifeng;  Chen, Xuequn;  Hu, Juan;  Liu, Yanhui;  Qin, Yuan;  Wang, Kai;  Dong, Shanshan;  Liu, Yang;  Zhang, Shouzhou;  Yu, Xianxian;  Wu, Qian;  Wang, Liangsheng;  Yan, Xueqing;  Jiao, Yuannian;  Kong, Hongzhi;  Zhou, Xiaofan;  Yu, Cuiwei;  Chen, Yuchu;  Li, Fan;  Wang, Jihua;  Chen, Wei;  Chen, Xinlu;  Jia, Qidong;  Zhang, Chi;  Jiang, Yifan;  Zhang, Wanbo;  Liu, Guanhua;  Fu, Jianyu;  Chen, Feng;  Ma, Hong;  Van de Peer, Yves;  Tang, Haibao
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Water lilies belong to the angiosperm order Nymphaeales. Amborellales, Nymphaeales and Austrobaileyales together form the so-called ANA-grade of angiosperms, which are extant representatives of lineages that diverged the earliest from the lineage leading to the extant mesangiosperms(1-3). Here we report the 409-megabase genome sequence of the blue-petal water lily (Nymphaea colorata). Our phylogenomic analyses support Amborellales and Nymphaeales as successive sister lineages to all other extant angiosperms. The N. colorata genome and 19 other water lily transcriptomes reveal a Nymphaealean whole-genome duplication event, which is shared by Nymphaeaceae and possibly Cabombaceae. Among the genes retained from this whole-genome duplication are homologues of genes that regulate flowering transition and flower development. The broad expression of homologues of floral ABCE genes in N. colorata might support a similarly broadly active ancestral ABCE model of floral organ determination in early angiosperms. Water lilies have evolved attractive floral scents and colours, which are features shared with mesangiosperms, and we identified their putative biosynthetic genes in N. colorata. The chemical compounds and biosynthetic genes behind floral scents suggest that they have evolved in parallel to those in mesangiosperms. Because of its unique phylogenetic position, the N. colorata genome sheds light on the early evolution of angiosperms.


  
Rapid reconstruction of SARS-CoV-2 using a synthetic genomics platform 期刊论文
NATURE, 2020
作者:  Touat, Mehdi;  Li, Yvonne Y.;  Boynton, Adam N.;  Spurr, Liam F.;  Iorgulescu, J. Bryan;  Bohrson, Craig L.;  Cortes-Ciriano, Isidro;  Birzu, Cristina;  Geduldig, Jack E.;  Pelton, Kristine;  Lim-Fat, Mary Jane;  Pal, Sangita;  Ferrer-Luna, Ruben;  Ramkissoon, Shakti H.;  Dubois, Frank;  Bellamy, Charlotte;  Currimjee, Naomi;  Bonardi, Juliana;  Qian Kenin;  Ho, Patricia;  Malinowski, Seth;  Taquet, Leon;  Jones, Robert E.;  Shetty, Aniket;  Chow, Kin-Hoe;  Sharaf, Radwa;  Pavlick, Dean;  Albacker, Lee A.;  Younan, Nadia;  Baldini, Capucine;  Verreault, Maite;  Giry, Marine;  Guillerm, Erell;  Ammari, Samy;  Beuvon, Frederic;  Mokhtari, Karima;  Alentorn, Agusti;  Dehais, Caroline;  Houillier, Caroline;  Laigle-Donadey, Florence;  Psimaras, Dimitri;  Lee, Eudocia Q.;  Nayak, Lakshmi;  McFaline-Figueroa, J. Ricardo;  Carpentier, Alexandre;  Cornu, Philippe;  Capelle, Laurent;  Mathon, Bertrand;  Barnholtz-Sloan, Jill S.;  Chakravarti, Arnab;  Bi, Wenya Linda;  Chiocca, E. Antonio;  Fehnel, Katie Pricola;  Alexandrescu, Sanda;  Chi, Susan N.;  Haas-Kogan, Daphne;  Batchelor, Tracy T.;  Frampton, Garrett M.;  Alexander, Brian M.;  Huang, Raymond Y.;  Ligon, Azra H.;  Coulet, Florence;  Delattre, Jean-Yves;  Hoang-Xuan, Khe;  Meredith, David M.;  Santagata, Sandro;  Duval, Alex;  Sanson, Marc;  Cherniack, Andrew D.;  Wen, Patrick Y.;  Reardon, David A.;  Marabelle, Aurelien;  Park, Peter J.;  Idbaih, Ahmed;  Beroukhim, Rameen;  Bandopadhayay, Pratiti;  Bielle, Franck;  Ligon, Keith L.
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03

Reverse genetics has been an indispensable tool to gain insights into viral pathogenesis and vaccine development. The genomes of large RNA viruses, such as those from coronaviruses, are cumbersome to clone and manipulate inEscherichia coliowing to the size and occasional instability of the genome(1-3). Therefore, an alternative rapid and robust reverse-genetics platform for RNA viruses would benefit the research community. Here we show the full functionality of a yeast-based synthetic genomics platform to genetically reconstruct diverse RNA viruses, including members of theCoronaviridae,FlaviviridaeandPneumoviridaefamilies. Viral subgenomic fragments were generated using viral isolates, cloned viral DNA, clinical samples or synthetic DNA, and these fragments were then reassembled in one step inSaccharomyces cerevisiaeusing transformation-associated recombination cloning to maintain the genome as a yeast artificial chromosome. T7 RNA polymerase was then used to generate infectious RNA to rescue viable virus. Using this platform, we were able to engineer and generate chemically synthesized clones of the virus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)(4), which has caused the recent pandemic of coronavirus disease (COVID-19), in only a week after receipt of the synthetic DNA fragments. The technical advance that we describe here facilitates rapid responses to emerging viruses as it enables the real-time generation and functional characterization of evolving RNA virus variants during an outbreak.


A yeast-based synthetic genomics platform is used to reconstruct and characterize large RNA viruses from synthetic DNA fragments  this technique will facilitate the rapid analysis of RNA viruses, such as SARS-CoV-2, during an outbreak.


  
B cells and tertiary lymphoid structures promote immunotherapy response 期刊论文
NATURE, 2020, 577 (7791) : 549-+
作者:  Zhang, Liangsheng;  Chen, Fei;  Zhang, Xingtan;  Li, Zhen;  Zhao, Yiyong;  Lohaus, Rolf;  Chang, Xiaojun;  Dong, Wei;  Ho, Simon Y. W.;  Liu, Xing;  Song, Aixia;  Chen, Junhao;  Guo, Wenlei;  Wang, Zhengjia;  Zhuang, Yingyu;  Wang, Haifeng;  Chen, Xuequn;  Hu, Juan;  Liu, Yanhui;  Qin, Yuan;  Wang, Kai;  Dong, Shanshan;  Liu, Yang;  Zhang, Shouzhou;  Yu, Xianxian;  Wu, Qian;  Wang, Liangsheng;  Yan, Xueqing;  Jiao, Yuannian;  Kong, Hongzhi;  Zhou, Xiaofan;  Yu, Cuiwei;  Chen, Yuchu;  Li, Fan;  Wang, Jihua;  Chen, Wei;  Chen, Xinlu;  Jia, Qidong;  Zhang, Chi;  Jiang, Yifan;  Zhang, Wanbo;  Liu, Guanhua;  Fu, Jianyu;  Chen, Feng;  Ma, Hong;  Van de Peer, Yves;  Tang, Haibao
收藏  |  浏览/下载:41/0  |  提交时间:2020/07/03

Multiomic profiling of several cohorts of patients treated with immune checkpoint blockade highlights the presence and potential role of B cells and tertiary lymphoid structures in promoting therapy response.


Treatment with immune checkpoint blockade (ICB) has revolutionized cancer therapy. Until now, predictive biomarkers(1-10) and strategies to augment clinical response have largely focused on the T cell compartment. However, other immune subsets may also contribute to anti-tumour immunity(11-15), although these have been less well-studied in ICB treatment(16). A previously conducted neoadjuvant ICB trial in patients with melanoma showed via targeted expression profiling(17) that B cell signatures were enriched in the tumours of patients who respond to treatment versus non-responding patients. To build on this, here we performed bulk RNA sequencing and found that B cell markers were the most differentially expressed genes in the tumours of responders versus non-responders. Our findings were corroborated using a computational method (MCP-counter(18)) to estimate the immune and stromal composition in this and two other ICB-treated cohorts (patients with melanoma and renal cell carcinoma). Histological evaluation highlighted the localization of B cells within tertiary lymphoid structures. We assessed the potential functional contributions of B cells via bulk and single-cell RNA sequencing, which demonstrate clonal expansion and unique functional states of B cells in responders. Mass cytometry showed that switched memory B cells were enriched in the tumours of responders. Together, these data provide insights into the potential role of B cells and tertiary lymphoid structures in the response to ICB treatment, with implications for the development of biomarkers and therapeutic targets.


  
Measuring magnetic field texture in correlated electron systems under extreme conditions 期刊论文
SCIENCE, 2019, 366 (6471) : 1355-+
作者:  Yip, King Yau;  Ho, Kin On;  Yu, King Yiu;  Chen, Yang;  Zhang, Wei;  Kasahara, S.;  Mizukami, Y.;  Shibauchi, T.;  Matsuda, Y.;  Goh, Swee K.;  Yang, Sen
收藏  |  浏览/下载:8/0  |  提交时间:2020/02/17
Images from the surface of asteroid Ryugu show rocks similar to carbonaceous chondrite meteorites 期刊论文
SCIENCE, 2019, 365 (6455) : 817-+
作者:  Jaumann, R.;  Schmitz, N.;  Ho, T. -M.;  Schroder, S. E.;  Otto, K. A.;  Stephan, K.;  Elgner, S.;  Krohn, K.;  Preusker, F.;  Scholten, F.;  Biele, J.;  Ulamec, S.;  Krause, C.;  Sugita, S.;  Matz, K. -D.;  Roatsch, T.;  Parekh, R.;  Mottola, S.;  Grott, M.;  Michel, P.;  Trauthan, F.;  Koncz, A.;  Michaelis, H.;  Lange, C.;  Grundmann, J. T.;  Maibaum, M.;  Sasaki, K.;  Wolff, F.;  Reill, J.;  Moussi-Soffys, A.;  Lorda, L.;  Neumann, W.;  Vincent, J. -B.;  Wagner, R.;  Bibring, J. -P.;  Kameda, S.;  Yano, H.;  Watanabe, S.;  Yoshikawa, M.;  Tsuda, Y.;  Okada, T.;  Yoshimitsu, T.;  Mimasu, Y.;  Saiki, T.;  Yabuta, H.;  Rauer, H.;  Honda, R.;  Morota, T.;  Yokota, Y.;  Kouyama, T.
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27
Hayabusa2 arrives at the carbonaceous asteroid 162173 Ryugu-A spinning top-shaped rubble pile 期刊论文
SCIENCE, 2019, 364 (6437) : 268-+
作者:  Watanabe, S.;  Hirabayashi, M.;  Hirata, N.;  Hirata, Na.;  Noguchi, R.;  Shimaki, Y.;  Ikeda, H.;  Tatsumi, E.;  Yoshikawa, M.;  Kikuchi, S.;  Yabuta, H.;  Nakamura, T.;  Tachibana, S.;  Ishihara, Y.;  Morota, T.;  Kitazato, K.;  Sakatani, N.;  Matsumoto, K.;  Wada, K.;  Senshu, H.;  Honda, C.;  Michikami, T.;  Takeuchi, H.;  Kouyama, T.;  Honda, R.;  Kameda, S.;  Fuse, T.;  Miyamoto, H.;  Komatsu, G.;  Sugita, S.;  Okada, T.;  Namiki, N.;  Arakawa, M.;  Ishiguro, M.;  Abe, M.;  Gaskell, R.;  Palmer, E.;  Barnouin, O. S.;  Michel, P.;  French, A. S.;  McMahon, J. W.;  Scheeres, D. J.;  Abell, P. A.;  Yamamoto, Y.;  Tanaka, S.;  Shirai, K.;  Matsuoka, M.;  Yamada, M.;  Yokota, Y.;  Suzuki, H.;  Yoshioka, K.;  Cho, Y.;  Tanaka, S.;  Nishikawa, N.;  Sugiyama, T.;  Kikuchi, H.;  Hemmi, R.;  Yamaguchi, T.;  Ogawa, N.;  Ono, G.;  Mimasu, Y.;  Yoshikawa, K.;  Takahashi, T.;  Takei, Y.;  Fujii, A.;  Hirose, C.;  Iwata, T.;  Hayakawa, M.;  Hosoda, S.;  Mori, O.;  Sawada, H.;  Shimada, T.;  Soldini, S.;  Yano, H.;  Tsukizaki, R.;  Ozaki, M.;  Iijima, Y.;  Ogawa, K.;  Fujimoto, M.;  Ho, T. -M.;  Moussi, A.;  Jaumann, R.;  Bibring, J. -P.;  Krause, C.;  Terui, F.;  Saiki, T.;  Nakazawa, S.;  Tsuda, Y.
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27