GSTDTAP

浏览/检索结果: 共17条,第1-10条 帮助

限定条件                    
已选(0)清除 条数/页:   排序方式:
Neutrophils self-limit swarming to contain bacterial growth in vivo 期刊论文
Science, 2021
作者:  Korbinian Kienle;  Katharina M. Glaser;  Sarah Eickhoff;  Michael Mihlan;  Konrad Knöpper;  Eduardo Reátegui;  Maximilian W. Epple;  Matthias Gunzer;  Ralf Baumeister;  Teresa K. Tarrant;  Ronald N. Germain;  Daniel Irimia;  Wolfgang Kastenmüller;  Tim Lämmermann
收藏  |  浏览/下载:7/0  |  提交时间:2021/06/24
Tracking, targeting, and conserving soil biodiversity 期刊论文
Science, 2021
作者:  Carlos A. Guerra;  Richard D. Bardgett;  Lucrezia Caon;  Thomas W. Crowther;  Manuel Delgado-Baquerizo;  Luca Montanarella;  Laetitia M. Navarro;  Alberto Orgiazzi;  Brajesh K. Singh;  Leho Tedersoo;  Ronald Vargas-Rojas;  Maria J. I. Briones;  François Buscot;  Erin K. Cameron;  Simone Cesarz;  Antonis Chatzinotas;  Don A. Cowan;  Ika Djukic;  Johan van den Hoogen;  Anika Lehmann;  Fernando T. Maestre;  César Marín;  Thomas Reitz;  Matthias C. Rillig;  Linnea C. Smith;  Franciska T. de Vries;  Alexandra Weigelt;  Diana H. Wall;  Nico Eisenhauer
收藏  |  浏览/下载:34/0  |  提交时间:2021/01/22
A ubiquitous tire rubber–derived chemical induces acute mortality in coho salmon 期刊论文
Science, 2021
作者:  Zhenyu Tian;  Haoqi Zhao;  Katherine T. Peter;  Melissa Gonzalez;  Jill Wetzel;  Christopher Wu;  Ximin Hu;  Jasmine Prat;  Emma Mudrock;  Rachel Hettinger;  Allan E. Cortina;  Rajshree Ghosh Biswas;  Flávio Vinicius Crizóstomo Kock;  Ronald Soong;  Amy Jenne;  Bowen Du;  Fan Hou;  Huan He;  Rachel Lundeen;  Alicia Gilbreath;  Rebecca Sutton;  Nathaniel L. Scholz;  Jay W. Davis;  Michael C. Dodd;  Andre Simpson;  Jenifer K. McIntyre;  Edward P. Kolodziej
收藏  |  浏览/下载:11/0  |  提交时间:2021/01/15
Long-term thermal sensitivity of Earth’s tropical forests 期刊论文
Science, 2020
作者:  Martin J. P. Sullivan;  Simon L. Lewis;  Kofi Affum-Baffoe;  Carolina Castilho;  Flávia Costa;  Aida Cuni Sanchez;  Corneille E. N. Ewango;  Wannes Hubau;  Beatriz Marimon;  Abel Monteagudo-Mendoza;  Lan Qie;  Bonaventure Sonké;  Rodolfo Vasquez Martinez;  Timothy R. Baker;  Roel J. W. Brienen;  Ted R. Feldpausch;  David Galbraith;  Manuel Gloor;  Yadvinder Malhi;  Shin-Ichiro Aiba;  Miguel N. Alexiades;  Everton C. Almeida;  Edmar Almeida de Oliveira;  Esteban Álvarez Dávila;  Patricia Alvarez Loayza;  Ana Andrade;  Simone Aparecida Vieira;  Luiz E. O. C. Aragão;  Alejandro Araujo-Murakami;  Eric J. M. M. Arets;  Luzmila Arroyo;  Peter Ashton;  Gerardo Aymard C.;  Fabrício B. Baccaro;  Lindsay F. Banin;  Christopher Baraloto;  Plínio Barbosa Camargo;  Jos Barlow;  Jorcely Barroso;  Jean-François Bastin;  Sarah A. Batterman;  Hans Beeckman;  Serge K. Begne;  Amy C. Bennett;  Erika Berenguer;  Nicholas Berry;  Lilian Blanc;  Pascal Boeckx;  Jan Bogaert;  Damien Bonal;  Frans Bongers;  Matt Bradford;  Francis Q. Brearley;  Terry Brncic;  Foster Brown;  Benoit Burban;  José Luís Camargo;  Wendeson Castro;  Carlos Céron;  Sabina Cerruto Ribeiro;  Victor Chama Moscoso;  Jerôme Chave;  Eric Chezeaux;  Connie J. Clark;  Fernanda Coelho de Souza;  Murray Collins;  James A. Comiskey;  Fernando Cornejo Valverde;  Massiel Corrales Medina;  Lola da Costa;  Martin Dančák;  Greta C. Dargie;  Stuart Davies;  Nallaret Davila Cardozo;  Thales de Haulleville;  Marcelo Brilhante de Medeiros;  Jhon del Aguila Pasquel;  Géraldine Derroire;  Anthony Di Fiore;  Jean-Louis Doucet;  Aurélie Dourdain;  Vincent Droissant;  Luisa Fernanda Duque;  Romeo Ekoungoulou;  Fernando Elias;  Terry Erwin;  Adriane Esquivel-Muelbert;  Sophie Fauset;  Joice Ferreira;  Gerardo Flores Llampazo;  Ernest Foli;  Andrew Ford;  Martin Gilpin;  Jefferson S. Hall;  Keith C. Hamer;  Alan C. Hamilton;  David J. Harris;  Terese B. Hart;  Radim Hédl;  Bruno Herault;  Rafael Herrera;  Niro Higuchi;  Annette Hladik;  Eurídice Honorio Coronado;  Isau Huamantupa-Chuquimaco;  Walter Huaraca Huasco;  Kathryn J. Jeffery;  Eliana Jimenez-Rojas;  Michelle Kalamandeen;  Marie Noël Kamdem Djuikouo;  Elizabeth Kearsley;  Ricardo Keichi Umetsu;  Lip Khoon Kho;  Timothy Killeen;  Kanehiro Kitayama;  Bente Klitgaard;  Alexander Koch;  Nicolas Labrière;  William Laurance;  Susan Laurance;  Miguel E. Leal;  Aurora Levesley;  Adriano J. N. Lima;  Janvier Lisingo;  Aline P. Lopes;  Gabriela Lopez-Gonzalez;  Tom Lovejoy;  Jon C. Lovett;  Richard Lowe;  William E. Magnusson;  Jagoba Malumbres-Olarte;  Ângelo Gilberto Manzatto;  Ben Hur Marimon;  Andrew R. Marshall;  Toby Marthews;  Simone Matias de Almeida Reis;  Colin Maycock;  Karina Melgaço;  Casimiro Mendoza;  Faizah Metali;  Vianet Mihindou;  William Milliken;  Edward T. A. Mitchard;  Paulo S. Morandi;  Hannah L. Mossman;  Laszlo Nagy;  Henrique Nascimento;  David Neill;  Reuben Nilus;  Percy Núñez Vargas;  Walter Palacios;  Nadir Pallqui Camacho;  Julie Peacock;  Colin Pendry;  Maria Cristina Peñuela Mora;  Georgia C. Pickavance;  John Pipoly;  Nigel Pitman;  Maureen Playfair;  Lourens Poorter;  John R. Poulsen;  Axel Dalberg Poulsen;  Richard Preziosi;  Adriana Prieto;  Richard B. Primack;  Hirma Ramírez-Angulo;  Jan Reitsma;  Maxime Réjou-Méchain;  Zorayda Restrepo Correa;  Thaiane Rodrigues de Sousa;  Lily Rodriguez Bayona;  Anand Roopsind;  Agustín Rudas;  Ervan Rutishauser;  Kamariah Abu Salim;  Rafael P. Salomão;  Juliana Schietti;  Douglas Sheil;  Richarlly C. Silva;  Javier Silva Espejo;  Camila Silva Valeria;  Marcos Silveira;  Murielle Simo-Droissart;  Marcelo Fragomeni Simon;  James Singh;  Yahn Carlos Soto Shareva;  Clement Stahl;  Juliana Stropp;  Rahayu Sukri;  Terry Sunderland;  Martin Svátek;  Michael D. Swaine;  Varun Swamy;  Hermann Taedoumg;  Joey Talbot;  James Taplin;  David Taylor;  Hans ter Steege;  John Terborgh;  Raquel Thomas;  Sean C. Thomas;  Armando Torres-Lezama;  Peter Umunay;  Luis Valenzuela Gamarra;  Geertje van der Heijden;  Peter van der Hout;  Peter van der Meer;  Mark van Nieuwstadt;  Hans Verbeeck;  Ronald Vernimmen;  Alberto Vicentini;  Ima Célia Guimarães Vieira;  Emilio Vilanova Torre;  Jason Vleminckx;  Vincent Vos;  Ophelia Wang;  Lee J. T. White;  Simon Willcock;  John T. Woods;  Verginia Wortel;  Kenneth Young;  Roderick Zagt;  Lise Zemagho;  Pieter A. Zuidema;  Joeri A. Zwerts;  Oliver L. Phillips
收藏  |  浏览/下载:28/0  |  提交时间:2020/05/25
Experimental demonstration of memory-enhanced quantum communication 期刊论文
NATURE, 2020
作者:  Quinn, Robert A.;  Melnik, Alexey, V;  Vrbanac, Alison;  Fu, Ting;  Patras, Kathryn A.;  Christy, Mitchell P.;  Bodai, Zsolt;  Belda-Ferre, Pedro;  Tripathi, Anupriya;  Chung, Lawton K.;  Downes, Michael;  Welch, Ryan D.;  Quinn, Melissa;  Humphrey, Greg;  Panitchpakdi, Morgan;  Weldon, Kelly C.;  Aksenov, Alexander;  da Silva, Ricardo;  Avila-Pacheco, Julian;  Clish, Clary;  Bae, Sena;  Mallick, Himel;  Franzosa, Eric A.;  Lloyd-Price, Jason;  Bussell, Robert;  Thron, Taren;  Nelson, Andrew T.;  Wang, Mingxun;  Leszczynski, Eric;  Vargas, Fernando;  Gauglitz, Julia M.;  Meehan, Michael J.;  Gentry, Emily;  Arthur, Timothy D.;  Komor, Alexis C.;  Poulsen, Orit;  Boland, Brigid S.;  Chang, John T.;  Sandborn, William J.;  Lim, Meerana;  Garg, Neha;  Lumeng, Julie C.;  Xavier, Ramnik J.;  Kazmierczak, Barbara, I;  Jain, Ruchi;  Egan, Marie;  Rhee, Kyung E.;  Ferguson, David;  Raffatellu, Manuela;  Vlamakis, Hera;  Haddad, Gabriel G.;  Siegel, Dionicio;  Huttenhower, Curtis;  Mazmanian, Sarkis K.;  Evans, Ronald M.;  Nizet, Victor;  Knight, Rob;  Dorrestein, Pieter C.
收藏  |  浏览/下载:36/0  |  提交时间:2020/07/03

The ability to communicate quantum information over long distances is of central importance in quantum science and engineering(1). Although some applications of quantum communication such as secure quantum key distribution(2,3) are already being successfully deployed(4-7), their range is currently limited by photon losses and cannot be extended using straightforward measure-and-repeat strategies without compromising unconditional security(8). Alternatively, quantum repeaters(9), which utilize intermediate quantum memory nodes and error correction techniques, can extend the range of quantum channels. However, their implementation remains an outstanding challenge(10-16), requiring a combination of efficient and high-fidelity quantum memories, gate operations, and measurements. Here we use a single solid-state spin memory integrated in a nanophotonic diamond resonator(17-19) to implement asynchronous photonic Bell-state measurements, which are a key component of quantum repeaters. In a proof-of-principle experiment, we demonstrate high-fidelity operation that effectively enables quantum communication at a rate that surpasses the ideal loss-equivalent direct-transmission method while operating at megahertz clock speeds. These results represent a crucial step towards practical quantum repeaters and large-scale quantum networks(20,21).


A solid-state spin memory is used to demonstrate quantum repeater functionality, which has the potential to overcome photon losses involved in long-distance transmission of quantum information.


  
Bile acid metabolites control T(H)17 and T-reg cell differentiation (vol 576, pg 148, 2019) 期刊论文
NATURE, 2020, 579 (7798) : E7-E7
作者:  Su, Jie;  Morgani, Sophie M.;  David, Charles J.;  Wang, Qiong;  Er, Ekrem Emrah;  Huang, Yun-Han;  Basnet, Harihar;  Zou, Yilong;  Shu, Weiping;  Soni, Rajesh K.;  Hendrickson, Ronald C.;  Hadjantonakis, Anna-Katerina;  Massague, Joan
收藏  |  浏览/下载:11/0  |  提交时间:2020/07/03
Hydrogen peroxide sensor HPCA1 is an LRR receptor kinase in Arabidopsis 期刊论文
NATURE, 2020, 578 (7796) : 577-+
作者:  Bogomilov, M.;  Tsenov, R.;  Vankova-Kirilova, G.;  Song, Y. P.;  Tang, J. Y.;  Li, Z. H.;  Bertoni, R.;  Bonesini, M.;  Chignoli, F.;  Mazza, R.;  Palladino, V;  de Bari, A.;  Orestano, D.;  Tortora, L.;  Kuno, Y.;  Sakamoto, H.;  Sato, A.;  Ishimoto, S.;  Chung, M.;  Sung, C. K.;  Filthaut, F.;  Jokovic, D.;  Maletic, D.;  Savic, M.;  Jovancevic, N.;  Nikolov, J.;  Vretenar, M.;  Ramberger, S.;  Asfandiyarov, R.;  Blondel, A.;  Drielsma, F.;  Karadzhov, Y.;  Boyd, S.;  Greis, J. R.;  Lord, T.;  Pidcott, C.;  Taylor, I;  Charnley, G.;  Collomb, N.;  Dumbell, K.;  Gallagher, A.;  Grant, A.;  Griffiths, S.;  Hartnett, T.;  Martlew, B.;  Moss, A.;  Muir, A.;  Mullacrane, I;  Oates, A.;  Owens, P.;  Stokes, G.;  Warburton, P.;  White, C.;  Adams, D.;  Bayliss, V;  Boehm, J.;  Bradshaw, T. W.;  Brown, C.;  Courthold, M.;  Govans, J.;  Hills, M.;  Lagrange, J-B;  Macwaters, C.;  Nichols, A.;  Preece, R.;  Ricciardi, S.;  Rogers, C.;  Stanley, T.;  Tarrant, J.;  Tucker, M.;  Watson, S.;  Wilson, A.;  Bayes, R.;  Nugent, J. C.;  Soler, F. J. P.;  Chatzitheodoridis, G. T.;  Dick, A. J.;  Ronald, K.;  Whyte, C. G.;  Young, A. R.;  Gamet, R.;  Cooke, P.;  Blackmore, V. J.;  Colling, D.;  Dobbs, A.;  Dornan, P.;  Franchini, P.;  Hunt, C.;  Jurj, P. B.;  Kurup, A.;  Long, K.;  Martyniak, J.;  Middleton, S.;  Pasternak, J.;  Uchida, M. A.;  Cobb, J. H.;  Booth, C. N.;  Hodgson, P.;  Langlands, J.;  Overton, E.;  Pec, V;  Smith, P. J.;  Wilbur, S.;  Ellis, M.;  Gardener, R. B. S.;  Kyberd, P.;  Nebrensky, J. J.;  DeMello, A.;  Gourlay, S.;  Lambert, A.;  Li, D.;  Luo, T.;  Prestemon, S.;  Virostek, S.;  Palmer, M.;  Witte, H.;  Adey, D.;  Bross, A. D.;  Bowring, D.;  Liu, A.;  Neuffer, D.;  Popovic, M.;  Rubinov, P.;  Freemire, B.;  Hanlet, P.;  Kaplan, D. M.;  Mohayai, T. A.;  Rajaram, D.;  Snopok, P.;  Torun, Y.;  Cremaldi, L. M.;  Sanders, D. A.;  Summers, D. J.;  Coney, L. R.;  Hanson, G. G.;  Heidt, C.
收藏  |  浏览/下载:33/0  |  提交时间:2020/07/03

Hydrogen peroxide (H2O2) is a major reactive oxygen species in unicellular and multicellular organisms, and is produced extracellularly in response to external stresses and internal cues(1-4). H2O2 enters cells through aquaporin membrane proteins and covalently modifies cytoplasmic proteins to regulate signalling and cellular processes. However, whether sensors for H2O2 also exist on the cell surface remains unknown. In plant cells, H2O2 triggers an influx of Ca2+ ions, which is thought to be involved in H2O2 sensing and signalling. Here, by using forward genetic screens based on Ca2+ imaging, we isolated hydrogen-peroxide-induced Ca(2+)increases (hpca) mutants in Arabidopsis, and identified HPCA1 as a leucine-rich-repeat receptor kinase belonging to a previously uncharacterized subfamily that features two extra pairs of cysteine residues in the extracellular domain. HPCA1 is localized to the plasma membrane and is activated by H2O2 via covalent modification of extracellular cysteine residues, which leads to autophosphorylation of HPCA1. HPCA1 mediates H2O2-induced activation of Ca2+ channels in guard cells and is required for stomatal closure. Our findings help to identify how the perception of extracellular H2O2 is integrated with responses to various external stresses and internal cues in plants, and have implications for the design of crops with enhanced fitness.


HPCA1, a member of a previously uncharacterized subfamily of leucine-rich-repeat receptor-like kinases, is the hydrogen-peroxide sensor at the plasma membrane in Arabidopsis.


  
TGF-beta orchestrates fibrogenic and developmental EMTs via the RAS effector RREB1 期刊论文
NATURE, 2020, 577 (7791) : 566-+
作者:  Su, Jie;  Morgani, Sophie M.;  David, Charles J.;  Wang, Qiong;  Er, Ekrem Emrah;  Huang, Yun-Han;  Basnet, Harihar;  Zou, Yilong;  Shu, Weiping;  Soni, Rajesh K.;  Hendrickson, Ronald C.;  Hadjantonakis, Anna-Katerina;  Massague, Joan
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/03

Epithelial-to-mesenchymal transitions (EMTs) are phenotypic plasticity processes that confer migratory and invasive properties to epithelial cells during development, wound-healing, fibrosis and cancer(1-4). EMTs are driven by SNAIL, ZEB and TWIST transcription factors(5,6) together with microRNAs that balance this regulatory network(7,8). Transforming growth factor beta (TGF-beta) is a potent inducer of developmental and fibrogenic EMTs4,9,10. Aberrant TGF-beta signalling and EMT are implicated in the pathogenesis of renal fibrosis, alcoholic liver disease, non-alcoholic steatohepatitis, pulmonary fibrosis and cancer(4,11). TGF-beta depends on RAS and mitogen-activated protein kinase (MAPK) pathway inputs for the induction of EMTs12-19. Here we show how these signals coordinately trigger EMTs and integrate them with broader pathophysiological processes. We identify RAS-responsive element binding protein 1 (RREB1), a RAS transcriptional effector(20,21), as a key partner of TGF-beta-activated SMAD transcription factors in EMT. MAPK-activated RREB1 recruits TGF-beta-activated SMAD factors to SNAIL. Context-dependent chromatin accessibility dictates the ability of RREB1 and SMAD to activate additional genes that determine the nature of the resulting EMT. In carcinoma cells, TGF-beta-SMAD and RREB1 directly drive expression of SNAIL and fibrogenic factors stimulating myofibroblasts, promoting intratumoral fibrosis and supporting tumour growth. In mouse epiblast progenitors, Nodal-SMAD and RREB1 combine to induce expression of SNAIL and mesendoderm-differentiation genes that drive gastrulation. Thus, RREB1 provides a molecular link between RAS and TGF-beta pathways for coordinated induction of developmental and fibrogenic EMTs. These insights increase our understanding of the regulation of epithelial plasticity and its pathophysiological consequences in development, fibrosis and cancer.


RAS and TGF-beta pathways regulate distinct modes of epithelial-to-mesenchymal transition via RAS-responsive element binding protein 1.


  
Giant virus diversity and host interactions through global metagenomics 期刊论文
NATURE, 2020: 1-+
作者:  Su, Jie;  Morgani, Sophie M.;  David, Charles J.;  Wang, Qiong;  Er, Ekrem Emrah;  Huang, Yun-Han;  Basnet, Harihar;  Zou, Yilong;  Shu, Weiping;  Soni, Rajesh K.;  Hendrickson, Ronald C.;  Hadjantonakis, Anna-Katerina;  Massague, Joan
收藏  |  浏览/下载:20/0  |  提交时间:2020/07/03

Analysis of metagenomics data revealed that large and giant viruses are globally widely distributed and are associated with most major eukaryotic lineages.


Our current knowledge about nucleocytoplasmic large DNA viruses (NCLDVs) is largely derived from viral isolates that are co-cultivated with protists and algae. Here we reconstructed 2,074 NCLDV genomes from sampling sites across the globe by building on the rapidly increasing amount of publicly available metagenome data. This led to an 11-fold increase in phylogenetic diversity and a parallel 10-fold expansion in functional diversity. Analysis of 58,023 major capsid proteins from large and giant viruses using metagenomic data revealed the global distribution patterns and cosmopolitan nature of these viruses. The discovered viral genomes encoded a wide range of proteins with putative roles in photosynthesis and diverse substrate transport processes, indicating that host reprogramming is probably a common strategy in the NCLDVs. Furthermore, inferences of horizontal gene transfer connected viral lineages to diverse eukaryotic hosts. We anticipate that the global diversity of NCLDVs that we describe here will establish giant viruses-which are associated with most major eukaryotic lineages-as important players in ecosystems across Earth'  s biomes.


  
A loud quasi-periodic oscillation after a star is disrupted by a massive black hole 期刊论文
SCIENCE, 2019, 363 (6426) : 531-+
作者:  Pasham, Dheeraj R.;  Remillard, Ronald A.;  Fragile, P. Chris;  Franchini, Alessia;  Stone, Nicholas C.;  Lodato, Giuseppe;  Homan, Jeroen;  Chakrabarty, Deepto;  Baganoff, Frederick K.;  Steiner, James F.;  Coughlin, Eric R.;  Pasham, Nishanth R.
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27