GSTDTAP

浏览/检索结果: 共12条,第1-10条 帮助

限定条件                
已选(0)清除 条数/页:   排序方式:
Global maps of soil temperature 期刊论文
Global Change Biology, 2022
作者:  Jonas J. Lembrechts;  Johan van den Hoogen;  Juha Aalto;  Michael B. Ashcroft;  Pieter De Frenne;  Julia Kemppinen;  Martin Kopecký;  Miska Luoto;  Ilya M. D. Maclean;  Thomas W. Crowther;  Joseph J. Bailey;  Stef Haesen;  David H. Klinges;  Pekka Niittynen;  Brett R. Scheffers;  Koenraad Van Meerbeek;  Peter Aartsma;  Otar Abdalaze;  Mehdi Abedi;  Rien Aerts;  Negar Ahmadian;  Antje Ahrends;  Juha M. Alatalo;  Jake M. Alexander;  Camille Nina Allonsius;  Jan Altman;  Christof Ammann;  Christian Andres;  Christopher Andrews;  Jonas Ardö;  Nicola Arriga;  Alberto Arzac;  Valeria Aschero;  Rafael L. Assis;  Jakob Johann Assmann;  Maaike Y. Bader;  Khadijeh Bahalkeh;  Peter Baranč;  ok;  Isabel C. Barrio;  Agustina Barros;  Matti Barthel;  Edmund W. Basham;  Marijn Bauters;  Manuele Bazzichetto;  Luca Belelli Marchesini;  Michael C. Bell;  Juan C. Benavides;  José;  Luis Benito Alonso;  Bernd J. Berauer;  Jarle W. Bjerke;  Robert G. Bjö;  rk;  Mats P. Bjö;  rkman;  Katrin Bjö;  rnsdó;  ttir;  Benjamin Blonder;  Pascal Boeckx;  Julia Boike;  Stef Bokhorst;  ;  rbara N. S. Brum;  Josef Brů;  na;  Nina Buchmann;  Pauline Buysse;  José;  Luí;  s Camargo;  Otá;  vio C. Campoe;  Onur Candan;  Rafaella Canessa;  Nicoletta Cannone;  Michele Carbognani;  Jofre Carnicer;  Angé;  lica Casanova-Katny;  Simone Cesarz;  Bogdan Chojnicki;  Philippe Choler;  Steven L. Chown;  Edgar F. Cifuentes;  Marek Č;  iliak;  Tamara Contador;  Peter Convey;  Elisabeth J. Cooper;  Edoardo Cremonese;  Salvatore R. Curasi;  Robin Curtis;  Maurizio Cutini;  C. Johan Dahlberg;  Gergana N. Daskalova;  Miguel Angel de Pablo;  Stefano Della Chiesa;  ;  rgen Dengler;  Bart Deronde;  Patrice Descombes;  Valter Di Cecco;  Michele Di Musciano;  Jan Dick;  Romina D. Dimarco;  Jiri Dolezal;  Ellen Dorrepaal;  Jiř;  í;  Duš;  ek;  Nico Eisenhauer;  Lars Eklundh;  Todd E. Erickson;  Brigitta Erschbamer;  Werner Eugster;  Robert M. Ewers;  Dan A. Exton;  Nicolas Fanin;  Fatih Fazlioglu;  Iris Feigenwinter;  Giuseppe Fenu;  Olga Ferlian;  M. Rosa Ferná;  ndez Calzado;  Eduardo Ferná;  ndez-Pascual;  Manfred Finckh;  Rebecca Finger Higgens;  T'ai G. W. Forte;  Erika C. Freeman;  Esther R. Frei;  Eduardo Fuentes-Lillo;  Rafael A. Garcí;  a;  Marí;  a B. Garcí;  a;  Charly Gé;  ron;  Mana Gharun;  Dany Ghosn;  Khatuna Gigauri;  Anne Gobin;  Ignacio Goded;  Mathias Goeckede;  Felix Gottschall;  Keith Goulding;  Sanne Govaert;  Bente Jessen Graae;  Sarah Greenwood;  Caroline Greiser;  Achim Grelle;  Benoit Gué;  nard;  Mauro Guglielmin;  Joannè;  s Guillemot;  Peter Haase;  Sylvia Haider;  Aud H. Halbritter;  Maroof Hamid;  Albin Hammerle;  Arndt Hampe;  Siri V. Haugum;  Lucia Hederová;  Bernard Heinesch;  Carole Helfter;  Daniel Hepenstrick;  Maximiliane Herberich;  Mathias Herbst;  Luise Hermanutz;  David S. Hik;  Raú;  l Hoffré;  n;  ;  rgen Homeier;  Lukas Hö;  rtnagl;  Toke T. Hø;  ye;  Filip Hrbacek;  Kristoffer Hylander;  Hiroki Iwata;  Marcin Antoni Jackowicz-Korczynski;  Hervé;  Jactel;  ;  rvi Jä;  rveoja;  Szymon Jastrzę;  bowski;  Anke Jentsch;  Juan J. Jimé;  nez;  Ingibjö;  rg S. Jó;  nsdó;  ttir;  Tommaso Jucker;  Alistair S. Jump;  Radoslaw Juszczak;  ;  bert Kanka;  ;  t Kaš;  par;  George Kazakis;  Julia Kelly;  Anzar A. Khuroo;  Leif Klemedtsson;  Marcin Klisz;  Natascha Kljun;  Alexander Knohl;  Johannes Kobler;  Jozef Kollá;  r;  Martyna M. Kotowska;  Bence Ková;  cs;  Juergen Kreyling;  Andrea Lamprecht;  Simone I. Lang;  Christian Larson;  Keith Larson;  Kamil Laska;  Guerric le Maire;  Rachel I. Leihy;  Luc Lens;  Bengt Liljebladh;  Annalea Lohila;  Juan Lorite;  Benjamin Loubet;  Joshua Lynn;  Martin Macek;  Roy Mackenzie;  Enzo Magliulo;  Regine Maier;  Francesco Malfasi;  Františ;  ek Má;  liš;  Matě;  j Man;  Giovanni Manca;  Antonio Manco;  Tanguy Manise;  Paraskevi Manolaki;  Felipe Marciniak;  Radim Matula;  Ana Clara Mazzolari;  Sergiy Medinets;  Volodymyr Medinets;  Camille Meeussen;  Sonia Merinero;  Rita de Cá;  ssia Guimarã;  es Mesquita;  Katrin Meusburger;  Filip J. R. Meysman;  Sean T. Michaletz;  Ann Milbau;  Dmitry Moiseev;  Pavel Moiseev;  Andrea Mondoni;  Ruth Monfries;  Leonardo Montagnani;  Mikel Moriana-Armendariz;  Umberto Morra di Cella;  Martin Mö;  rsdorf;  Jonathan R. Mosedale;  Lena Muffler;  Miriam Muñ;  oz-Rojas;  Jonathan A. Myers;  Isla H. Myers-Smith;  Laszlo Nagy;  Marianna Nardino;  Ilona Naujokaitis-Lewis;  Emily Newling;  Lena Nicklas;  Georg Niedrist;  Armin Niessner;  Mats B. Nilsson;  Signe Normand;  Marcelo D. Nosetto;  Yann Nouvellon;  Martin A. Nuñ;  ez;  Romà;  Ogaya;  ;  ;  me Ogé;  e;  Joseph Okello;  Janusz Olejnik;  ;  rgen Eivind Olesen;  Ø;  ystein H. Opedal;  Simone Orsenigo;  Andrej Palaj;  Timo Pampuch;  Alexey V. Panov;  Meelis Pä;  rtel;  Ada Pastor;  Aní;  bal Pauchard;  Harald Pauli;  Marian Pavelka;  William D. Pearse;  Matthias Peichl;  Loï;  c Pellissier;  Rachel M. Penczykowski;  Josep Penuelas;  Matteo Petit Bon;  Alessandro Petraglia;  Shyam S. Phartyal;  Gareth K. Phoenix;  Casimiro Pio;  Andrea Pitacco;  Camille Pitteloud;  Roman Plichta;  Francesco Porro;  Miguel Portillo-Estrada;  ;  ;  me Poulenard;  Rafael Poyatos;  Anatoly S. Prokushkin;  Radoslaw Puchalka;  Mihai Puș;  caș;  Dajana Radujković;  Krystal Randall;  Amanda Ratier Backes;  Sabine Remmele;  Wolfram Remmers;  David Renault;  Anita C. Risch;  Christian Rixen;  Sharon A. Robinson;  Bjorn J. M. Robroek;  Adrian V. Rocha;  Christian Rossi;  Graziano Rossi;  Olivier Roupsard;  Alexey V. Rubtsov;  Patrick Saccone;  Clotilde Sagot;  Jhonatan Sallo Bravo;  Cinthya C. Santos;  Judith M. Sarneel;  Tobias Scharnweber;  Jonas Schmeddes;  Marius Schmidt;  Thomas Scholten;  Max Schuchardt;  Naomi Schwartz;  Tony Scott;  Julia Seeber;  Ana Cristina Segalin de Andrade;  Tim Seipel;  Philipp Semenchuk;  Rebecca A. Senior;  Josep M. Serra-Diaz;  Piotr Sewerniak;  Ankit Shekhar;  Nikita V. Sidenko;  Lukas Siebicke;  Laura Siegwart Collier;  Elizabeth Simpson;  David P. Siqueira;  Zuzana Sitková;  Johan Six;  Marko Smiljanic;  Stuart W. Smith;  Sarah Smith-Tripp;  Ben Somers;  Mia Vedel Sø;  rensen;  José;  Joã;  o L. L. Souza;  Bartolomeu Israel Souza;  Arildo Souza Dias;  Marko J. Spasojevic;  James D. M. Speed;  Fabien Spicher;  Angela Stanisci;  Klaus Steinbauer;  Rainer Steinbrecher;  Michael Steinwandter;  Michael Stemkovski;  ;  rg G. Stephan;  Christian Stiegler;  Stefan Stoll;  Martin Svá;  tek;  Miroslav Svoboda;  Torbern Tagesson;  Andrew J. Tanentzap;  Franziska Tanneberger;  Jean-Paul Theurillat;  Haydn J. D. Thomas;  Andrew D. Thomas;  Katja Tielbö;  rger;  Marcello Tomaselli;  Urs Albert Treier;  Mario Trouillier;  Pavel Dan Turtureanu;  Rosamond Tutton;  Vilna A. Tyystjä;  rvi;  Masahito Ueyama;  Karol Ujhá;  zy;  Mariana Ujhá;  zyová;  Domas Uogintas;  Anastasiya V. Urban;  Josef Urban;  Marek Urbaniak;  Tudor-Mihai Ursu;  Francesco Primo Vaccari;  Stijn Van de Vondel;  Liesbeth van den Brink;  Maarten Van Geel;  Vigdis Vandvik;  Pieter Vangansbeke;  Andrej Varlagin;  G. F. Veen;  Elmar Veenendaal;  Susanna E. Venn;  Hans Verbeeck;  Erik Verbrugggen;  Frank G. A. Verheijen;  Luis Villar;  Luca Vitale;  Pascal Vittoz;  Maria Vives-Ingla;  Jonathan von Oppen;  Josefine Walz;  Runxi Wang;  Yifeng Wang;  Robert G. Way;  Ronja E. M. Wedegä;  rtner;  Robert Weigel;  Jan Wild;  Matthew Wilkinson;  Martin Wilmking;  Lisa Wingate;  Manuela Winkler;  Sonja Wipf;  Georg Wohlfahrt;  Georgios Xenakis;  Yan Yang;  Zicheng Yu;  Kailiang Yu;  Florian Zellweger;  Jian Zhang;  Zhaochen Zhang;  Peng Zhao;  Klaudia Ziembliń;  ska;  Reiner Zimmermann;  Shengwei Zong;  Viacheslav I. Zyryanov;  Ivan Nijs;  Jonathan Lenoir
收藏  |  浏览/下载:38/0  |  提交时间:2022/02/23
Toroidal polar topology in strained ferroelectric polymer 期刊论文
Science, 2021
作者:  Mengfan Guo;  Changqing Guo;  Jian Han;  Shulin Chen;  Shan He;  Tongxiang Tang;  Qian Li;  Joseph Strzalka;  Jing Ma;  Di Yi;  Ke Wang;  Ben Xu;  Peng Gao;  Houbing Huang;  Long-Qing Chen;  Shujun Zhang;  Yuan-Hua Lin;  Ce-Wen Nan;  Yang Shen
收藏  |  浏览/下载:13/0  |  提交时间:2021/03/12
Divergent synthesis of complex diterpenes through a hybrid oxidative approach 期刊论文
Science, 2020
作者:  Xiao Zhang;  Emma King-Smith;  Liao-Bin Dong;  Li-Cheng Yang;  Jeffrey D. Rudolf;  Ben Shen;  Hans Renata
收藏  |  浏览/下载:6/0  |  提交时间:2020/08/18
An investigation of transmission control measures during the first 50 days of the COVID-19 epidemic in China 期刊论文
Science, 2020
作者:  Huaiyu Tian;  Yonghong Liu;  Yidan Li;  Chieh-Hsi Wu;  Bin Chen;  Moritz U. G. Kraemer;  Bingying Li;  Jun Cai;  Bo Xu;  Qiqi Yang;  Ben Wang;  Peng Yang;  Yujun Cui;  Yimeng Song;  Pai Zheng;  Quanyi Wang;  Ottar N. Bjornstad;  Ruifu Yang;  Bryan T. Grenfell;  Oliver G. Pybus;  Christopher Dye
收藏  |  浏览/下载:10/0  |  提交时间:2020/05/13
Pharmacologic fibroblast reprogramming into photoreceptors restores vision 期刊论文
NATURE, 2020, 581 (7806) : 83-+
作者:  Jiang, Mingkai;  Medlyn, Belinda E.;  Drake, John E.;  Duursma, Remko A.;  Anderson, Ian C.;  Barton, Craig V. M.;  Boer, Matthias M.;  Carrillo, Yolima;  Castaneda-Gomez, Laura;  Collins, Luke;  Crous, Kristine Y.;  De Kauwe, Martin G.;  dos Santos, Bruna M.;  Emmerson, Kathryn M.;  Facey, Sarah L.;  Gherlenda, Andrew N.;  Gimeno, Teresa E.;  Hasegawa, Shun;  Johnson, Scott N.;  Kannaste, Astrid;  Macdonald, Catriona A.;  Mahmud, Kashif;  Moore, Ben D.;  Nazaries, Loic;  Neilson, Elizabeth H. J.;  Nielsen, Uffe N.;  Niinemets, Ulo;  Noh, Nam Jin;  Ochoa-Hueso, Raul;  Pathare, Varsha S.;  Pendall, Elise;  Pihlblad, Johanna;  Pineiro, Juan;  Powell, Jeff R.;  Power, Sally A.;  Reich, Peter B.;  Renchon, Alexandre A.;  Riegler, Markus;  Rinnan, Riikka;  Rymer, Paul D.;  Salomon, Roberto L.;  Singh, Brajesh K.;  Smith, Benjamin;  Tjoelker, Mark G.;  Walker, Jennifer K. M.;  Wujeska-Klause, Agnieszka;  Yang, Jinyan;  Zaehle, Soenke;  Ellsworth, David S.
收藏  |  浏览/下载:45/0  |  提交时间:2020/07/03

Photoreceptor loss is the final common endpoint in most retinopathies that lead to irreversible blindness, and there are no effective treatments to restore vision(1,2). Chemical reprogramming of fibroblasts offers an opportunity to reverse vision loss  however, the generation of sensory neuronal subtypes such as photoreceptors remains a challenge. Here we report that the administration of a set of five small molecules can chemically induce the transformation of fibroblasts into rod photoreceptor-like cells. The transplantation of these chemically induced photoreceptor-like cells (CiPCs) into the subretinal space of rod degeneration mice (homozygous for rd1, also known as Pde6b) leads to partial restoration of the pupil reflex and visual function. We show that mitonuclear communication is a key determining factor for the reprogramming of fibroblasts into CiPCs. Specifically, treatment with these five compounds leads to the translocation of AXIN2 to the mitochondria, which results in the production of reactive oxygen species, the activation of NF-kappa B and the upregulation of Ascl1. We anticipate that CiPCs could have therapeutic potential for restoring vision.


A set of five small molecules can induce the transformation of fibroblasts into rod photoreceptor-like cells, which can partially restore pupil reflex and visual function when transplanted into a rod degeneration mouse model.


  
Recycling and metabolic flexibility dictate life in the lower oceanic crust 期刊论文
NATURE, 2020, 579 (7798) : 250-+
作者:  Zhou, Peng;  Yang, Xing-Lou;  Wang, Xian-Guang;  Hu, Ben;  Zhang, Lei;  Zhang, Wei;  Si, Hao-Rui;  Zhu, Yan;  Li, Bei;  Huang, Chao-Lin;  Chen, Hui-Dong;  Chen, Jing;  Luo, Yun;  Guo, Hua;  Jiang, Ren-Di;  Liu, Mei-Qin;  Chen, Ying;  Shen, Xu-Rui;  Wang, Xi;  Zheng, Xiao-Shuang;  Zhao, Kai;  Chen, Quan-Jiao;  Deng, Fei;  Liu, Lin-Lin;  Yan, Bing;  Zhan, Fa-Xian;  Wang, Yan-Yi;  Xiao, Geng-Fu;  Shi, Zheng-Li
收藏  |  浏览/下载:37/0  |  提交时间:2020/05/13

The lithified lower oceanic crust is one of Earth'  s last biological frontiers as it is difficult to access. It is challenging for microbiota that live in marine subsurface sediments or igneous basement to obtain sufficient carbon resources and energy to support growth(1-3) or to meet basal power requirements(4) during periods of resource scarcity. Here we show how limited and unpredictable sources of carbon and energy dictate survival strategies used by low-biomass microbial communities that live 10-750 m below the seafloor at Atlantis Bank, Indian Ocean, where Earth'  s lower crust is exposed at the seafloor. Assays of enzyme activities, lipid biomarkers, marker genes and microscopy indicate heterogeneously distributed and viable biomass with ultralow cell densities (fewer than 2,000 cells per cm(3)). Expression of genes involved in unexpected heterotrophic processes includes those with a role in the degradation of polyaromatic hydrocarbons, use of polyhydroxyalkanoates as carbon-storage molecules and recycling of amino acids to produce compounds that can participate in redox reactions and energy production. Our study provides insights into how microorganisms in the plutonic crust are able to survive within fractures or porous substrates by coupling sources of energy to organic and inorganic carbon resources that are probably delivered through the circulation of subseafloor fluids or seawater.


  
Selective loading and processing of prespacers for precise CRISPR adaptation 期刊论文
NATURE, 2020
作者:  Liu, Guoxia;  Papa, Arianne;  Katchman, Alexander N.;  Zakharov, Sergey I.;  Roybal, Daniel;  Hennessey, Jessica A.;  Kushner, Jared;  Yang, Lin;  Chen, Bi-Xing;  Kushnir, Alexander;  Dangas, Katerina;  Gygi, Steven P.;  Pitt, Geoffrey S.;  Colecraft, Henry M.;  Ben-Johny, Manu;  Kalocsay, Marian;  Marx, Steven O.
收藏  |  浏览/下载:5/0  |  提交时间:2020/07/03

CRISPR-Cas immunity protects prokaryotes against invading genetic elements(1). It uses the highly conserved Cas1-Cas2 complex to establish inheritable memory (spacers)(2-5). How Cas1-Cas2 acquires spacers from foreign DNA fragments (prespacers) and integrates them into the CRISPR locus in the correct orientation is unclear(6,7). Here, using the high spatiotemporal resolution of single-molecule fluorescence, we show that Cas1-Cas2 selects precursors of prespacers from DNA in various forms-including single-stranded DNA and partial duplexes-in a manner that depends on both the length of the DNA strand and the presence of a protospacer adjacent motif (PAM) sequence. We also identify DnaQ exonucleases as enzymes that process the Cas1-Cas2-loaded prespacer precursors into mature prespacers of a suitable size for integration. Cas1-Cas2 protects the PAM sequence from maturation, which results in the production of asymmetrically trimmed prespacers and the subsequent integration of spacers in the correct orientation. Our results demonstrate the kinetic coordination of prespacer precursor selection and PAM trimming, providing insight into the mechanisms that underlie the integration of functional spacers in the CRISPR loci.


Cas1-Cas2 selects precursor prespacers from DNA fragments in a length- and PAM-sequence-dependent manner, and these precursors are trimmed by DnaQ exonucleases to enable integration into the CRISPR locus in the correct orientation.


  
Structural basis of ligand recognition and self-activation of orphan GPR52 期刊论文
NATURE, 2020
作者:  Liu, Guoxia;  Papa, Arianne;  Katchman, Alexander N.;  Zakharov, Sergey I.;  Roybal, Daniel;  Hennessey, Jessica A.;  Kushner, Jared;  Yang, Lin;  Chen, Bi-Xing;  Kushnir, Alexander;  Dangas, Katerina;  Gygi, Steven P.;  Pitt, Geoffrey S.;  Colecraft, Henry M.;  Ben-Johny, Manu;  Kalocsay, Marian;  Marx, Steven O.
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

Structures of the orphan G-protein-coupled receptor GPR52 in ligand-free, G-protein-coupled and ligand-bound states reveal that extracellular loop 2 occupies the orthosteric binding pocket and functions as a built-in agonist to activate the receptor.


GPR52 is a class-A orphan G-protein-coupled receptor that is highly expressed in the brain and represents a promising therapeutic target for the treatment of Huntington'  s disease and several psychiatric disorders(1,2). Pathological malfunction of GPR52 signalling occurs primarily through the heterotrimeric G(s) protein(2), but it is unclear how GPR52 and G(s) couple for signal transduction and whether a native ligand or other activating input is required. Here we present the high-resolution structures of human GPR52 in three states: a ligand-free state, a G(s)-coupled self-activation state and a potential allosteric ligand-bound state. Together, our structures reveal that extracellular loop 2 occupies the orthosteric binding pocket and operates as a built-in agonist, conferring an intrinsically high level of basal activity to GPR52(3). A fully active state is achieved when G(s) is coupled to GPR52 in the absence of an external agonist. The receptor also features a side pocket for ligand binding. These insights into the structure and function of GPR52 could improve our understanding of other self-activated GPCRs, enable the identification of endogenous and tool ligands, and guide drug discovery efforts that target GPR52.


  
Opposing reactions in coenzyme A metabolism sensitize Mycobacterium tuberculosis to enzyme inhibition 期刊论文
SCIENCE, 2019, 363 (6426) : 498-+
作者:  Ballinger, Elaine;  Mosior, John;  Hartman, Travis;  Burns-Huang, Kristin;  Gold, Ben;  Morris, Roxanne;  Goullieux, Laurent;  Blanc, Isabelle;  Vaubourgeix, Julien;  Lagrange, Sophie;  Fraisse, Laurent;  Sans, Stephanie;  Couturier, Cedric;  Bacque, Eric;  Rhee, Kyu;  Scarry, Sarah M.;  Aube, Jeffrey;  Yang, Guangbin;  Ouerfelli, Ouathek;  Schnappinger, Dirk;  Ioerger, Thomas R.;  Engelhart, Curtis A.;  McConnell, Jennifer A.;  McAulay, Kathrine;  Fay, Allison;  Roubert, Christine;  Sacchettini, James;  Nathan, Carl
收藏  |  浏览/下载:14/0  |  提交时间:2019/11/27
Separation of enantiomers by their enantiospecific interaction with achiral magnetic substrates 期刊论文
SCIENCE, 2018, 360 (6395) : 1331-1334
作者:  Banerjee-Ghosh, Koyel;  Ben Dor, Oren;  Tassinari, Francesco;  Capua, Eyal;  Yochelis, Shira;  Capua, Amir;  Yang, See-Hun;  Parkin, Stuart S. P.;  Sarkar, Soumyajit;  Kronik, Leeor;  Baczewski, Lech Tomasz;  Naaman, Ron;  Paltiel, Yossi
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27