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Identifying dominant environmental predictors of freshwater wetland methane fluxes across diurnal to seasonal time scales 期刊论文
Global Change Biology, 2021
作者:  Sara H. Knox;  Sheel Bansal;  Gavin McNicol;  Karina Schafer;  Cove Sturtevant;  Masahito Ueyama;  Alex C. Valach;  Dennis Baldocchi;  Kyle Delwiche;  Ankur R. Desai;  Eugenie Euskirchen;  Jinxun Liu;  Annalea Lohila;  Avni Malhotra;  Lulie Melling;  William Riley;  Benjamin R. K. Runkle;  Jessica Turner;  Rodrigo Vargas;  Qing Zhu;  Tuula Alto;  Etienne Fluet-Chouinard;  Mathias Goeckede;  Joe R. Melton;  Oliver Sonnentag;  Timo Vesala;  Eric Ward;  Zhen Zhang;  Sarah Feron;  Zutao Ouyang;  Pavel Alekseychik;  Mika Aurela;  Gil Bohrer;  David I. Campbell;  Jiquan Chen;  Housen Chu;  Higo J. Dalmagro;  Jordan P. Goodrich;  Pia Gottschalk;  Takashi Hirano;  Hiroki Iwata;  Gerald Jurasinski;  Minseok Kang;  Franziska Koebsch;  Ivan Mammarella;  Mats B. Nilsson;  Keisuke Ono;  Matthias Peichl;  Olli Peltola;  Youngryel Ryu;  Torsten Sachs;  Ayaka Sakabe;  Jed P. Sparks;  Eeva-Stiina Tuittila;  George L. Vourlitis;  Guan X. Wong;  Lisamarie Windham-Myers;  Benjamin Poulter;  Robert B. Jackson
收藏  |  浏览/下载:22/0  |  提交时间:2021/06/07
Designed proteins assemble antibodies into modular nanocages 期刊论文
Science, 2021
作者:  Robby Divine;  Ha V. Dang;  George Ueda;  Jorge A. Fallas;  Ivan Vulovic;  William Sheffler;  Shally Saini;  Yan Ting Zhao;  Infencia Xavier Raj;  Peter A. Morawski;  Madeleine F. Jennewein;  Leah J. Homad;  Yu-Hsin Wan;  Marti R. Tooley;  Franziska Seeger;  Ali Etemadi;  Mitchell L. Fahning;  James Lazarovits;  Alex Roederer;  Alexandra C. Walls;  Lance Stewart;  Mohammadali Mazloomi;  Neil P. King;  Daniel J. Campbell;  Andrew T. McGuire;  Leonidas Stamatatos;  Hannele Ruohola-Baker;  Julie Mathieu;  David Veesler;  David Baker
收藏  |  浏览/下载:15/0  |  提交时间:2021/04/06
Core commitments for field trials of gene drive organisms 期刊论文
Science, 2020
作者:  Kanya C. Long;  Luke Alphey;  George J. Annas;  Cinnamon S. Bloss;  Karl J. Campbell;  Jackson Champer;  Chun-Hong Chen;  Amit Choudhary;  George M. Church;  James P. Collins;  Kimberly L. Cooper;  Jason A. Delborne;  Owain R. Edwards;  Claudia I. Emerson;  Kevin Esvelt;  Sam Weiss Evans;  Robert M. Friedman;  Valentino M. Gantz;  Fred Gould;  Sarah Hartley;  Elizabeth Heitman;  Janet Hemingway;  Hirotaka Kanuka;  Jennifer Kuzma;  James V. Lavery;  Yoosook Lee;  Marce Lorenzen;  Jeantine E. Lunshof;  John M. Marshall;  Philipp W. Messer;  Craig Montell;  Kenneth A. Oye;  Megan J. Palmer;  Philippos Aris Papathanos;  Prasad N. Paradkar;  Antoinette J. Piaggio;  Jason L. Rasgon;  Gordana Rašić;  Larisa Rudenko;  J. Royden Saah;  Maxwell J. Scott;  Jolene T. Sutton;  Adam E. Vorsino;  Omar S. Akbari
收藏  |  浏览/下载:23/0  |  提交时间:2020/12/22
Comparative host-coronavirus protein interaction networks reveal pan-viral disease mechanisms 期刊论文
Science, 2020
作者:  David E. Gordon;  Joseph Hiatt;  Mehdi Bouhaddou;  Veronica V. Rezelj;  Svenja Ulferts;  Hannes Braberg;  Alexander S. Jureka;  Kirsten Obernier;  Jeffrey Z. Guo;  Jyoti Batra;  Robyn M. Kaake;  Andrew R. Weckstein;  Tristan W. Owens;  Meghna Gupta;  Sergei Pourmal;  Erron W. Titus;  Merve Cakir;  Margaret Soucheray;  Michael McGregor;  Zeynep Cakir;  Gwendolyn Jang;  Matthew J. O’Meara;  Tia A. Tummino;  Ziyang Zhang;  Helene Foussard;  Ajda Rojc;  Yuan Zhou;  Dmitry Kuchenov;  Ruth Hüttenhain;  Jiewei Xu;  Manon Eckhardt;  Danielle L. Swaney;  Jacqueline M. Fabius;  Manisha Ummadi;  Beril Tutuncuoglu;  Ujjwal Rathore;  Maya Modak;  Paige Haas;  Kelsey M. Haas;  Zun Zar Chi Naing;  Ernst H. Pulido;  Ying Shi;  Inigo Barrio-Hernandez;  Danish Memon;  Eirini Petsalaki;  Alistair Dunham;  Miguel Correa Marrero;  David Burke;  Cassandra Koh;  Thomas Vallet;  Jesus A. Silvas;  Caleigh M. Azumaya;  Christian Billesbølle;  Axel F. Brilot;  Melody G. Campbell;  Amy Diallo;  Miles Sasha Dickinson;  Devan Diwanji;  Nadia Herrera;  Nick Hoppe;  Huong T. Kratochvil;  Yanxin Liu;  Gregory E. Merz;  Michelle Moritz;  Henry C. Nguyen;  Carlos Nowotny;  Cristina Puchades;  Alexandrea N. Rizo;  Ursula Schulze-Gahmen;  Amber M. Smith;  Ming Sun;  Iris D. Young;  Jianhua Zhao;  Daniel Asarnow;  Justin Biel;  Alisa Bowen;  Julian R. Braxton;  Jen Chen;  Cynthia M. Chio;  Un Seng Chio;  Ishan Deshpande;  Loan Doan;  Bryan Faust;  Sebastian Flores;  Mingliang Jin;  Kate Kim;  Victor L. Lam;  Fei Li;  Junrui Li;  Yen-Li Li;  Yang Li;  Xi Liu;  Megan Lo;  Kyle E. Lopez;  Arthur A. Melo;  Frank R. Moss;  Phuong Nguyen;  Joana Paulino;  Komal Ishwar Pawar;  Jessica K. Peters;  Thomas H. Pospiech;  Maliheh Safari;  Smriti Sangwan;  Kaitlin Schaefer;  Paul V. Thomas;  Aye C. Thwin;  Raphael Trenker;  Eric Tse;  Tsz Kin Martin Tsui;  Feng Wang;  Natalie Whitis;  Zanlin Yu;  Kaihua Zhang;  Yang Zhang;  Fengbo Zhou;  Daniel Saltzberg;  QCRG Structural Biology Consortium12†;  Anthony J. Hodder;  Amber S. Shun-Shion;  Daniel M. Williams;  Kris M. White;  Romel Rosales;  Thomas Kehrer;  Lisa Miorin;  Elena Moreno;  Arvind H. Patel;  Suzannah Rihn;  Mir M. Khalid;  Albert Vallejo-Gracia;  Parinaz Fozouni;  Camille R. Simoneau;  Theodore L. Roth;  David Wu;  Mohd Anisul Karim;  Maya Ghoussaini;  Ian Dunham;  Francesco Berardi;  Sebastian Weigang;  Maxime Chazal;  Jisoo Park;  James Logue;  Marisa McGrath;  Stuart Weston;  Robert Haupt;  C. James Hastie;  Matthew Elliott;  Fiona Brown;  Kerry A. Burness;  Elaine Reid;  Mark Dorward;  Clare Johnson;  Stuart G. Wilkinson;  Anna Geyer;  Daniel M. Giesel;  Carla Baillie;  Samantha Raggett;  Hannah Leech;  Rachel Toth;  Nicola Goodman;  Kathleen C. Keough;  Abigail L. Lind;  Zoonomia Consortium‡;  Reyna J. Klesh;  Kafi R. Hemphill;  Jared Carlson-Stevermer;  Jennifer Oki;  Kevin Holden;  Travis Maures;  Katherine S. Pollard;  Andrej Sali;  David A. Agard;  Yifan Cheng;  James S. Fraser;  Adam Frost;  Natalia Jura;  Tanja Kortemme;  Aashish Manglik;  Daniel R. Southworth;  Robert M. Stroud;  Dario R. Alessi;  Paul Davies;  Matthew B. Frieman;  Trey Ideker;  Carmen Abate;  Nolwenn Jouvenet;  Georg Kochs;  Brian Shoichet;  Melanie Ott;  Massimo Palmarini;  Kevan M. Shokat;  Adolfo García-Sastre;  Jeremy A. Rassen;  Robert Grosse;  Oren S. Rosenberg;  Kliment A. Verba;  Christopher F. Basler;  Marco Vignuzzi;  Andrew A. Peden;  Pedro Beltrao;  Nevan J. Krogan
收藏  |  浏览/下载:25/0  |  提交时间:2020/12/07
Beyond ecosystem modeling: A roadmap to community cyberinfrastructure for ecological data‐model integration 期刊论文
Global Change Biology, 2020
作者:  Istem Fer;  Anthony K. Gardella;  Alexey N. Shiklomanov;  Eleanor E. Campbell;  Elizabeth M. Cowdery;  Martin G. De Kauwe;  Ankur Desai;  Matthew J. Duveneck;  Joshua B. Fisher;  Katherine D. Haynes;  Forrest M. Hoffman;  Miriam R. Johnston;  Rob Kooper;  David S. LeBauer;  Joshua Mantooth;  William J. Parton;  Benjamin Poulter;  Tristan Quaife;  Ann Raiho;  Kevin Schaefer;  Shawn P. Serbin;  James Simkins;  Kevin R. Wilcox;  Toni Viskari;  Michael C. Dietze
收藏  |  浏览/下载:14/0  |  提交时间:2020/11/09
Extensive heterogeneity in somatic mutation and selection in the human bladder 期刊论文
Science, 2020
作者:  Andrew R. J. Lawson;  Federico Abascal;  Tim H. H. Coorens;  Yvette Hooks;  Laura O’Neill;  Calli Latimer;  Keiran Raine;  Mathijs A. Sanders;  Anne Y. Warren;  Krishnaa T. A. Mahbubani;  Bethany Bareham;  Timothy M. Butler;  Luke M. R. Harvey;  Alex Cagan;  Andrew Menzies;  Luiza Moore;  Alexandra J. Colquhoun;  William Turner;  Benjamin Thomas;  Vincent Gnanapragasam;  Nicholas Williams;  Doris M. Rassl;  Harald Vöhringer;  Sonia Zumalave;  Jyoti Nangalia;  José M. C. Tubío;  Moritz Gerstung;  Kourosh Saeb-Parsy;  Michael R. Stratton;  Peter J. Campbell;  Thomas J. Mitchell;  Iñigo Martincorena
收藏  |  浏览/下载:20/0  |  提交时间:2020/10/12
Coherent optical clock down-conversion for microwave frequencies with 10−18 instability 期刊论文
Science, 2020
作者:  Takuma Nakamura;  Josue Davila-Rodriguez;  Holly Leopardi;  Jeff A. Sherman;  Tara M. Fortier;  Xiaojun Xie;  Joe C. Campbell;  William F. McGrew;  Xiaogang Zhang;  Youssef S. Hassan;  Daniele Nicolodi;  Kyle Beloy;  Andrew D. Ludlow;  Scott A. Diddams;  Franklyn Quinlan
收藏  |  浏览/下载:9/0  |  提交时间:2020/05/25
Femtosecond-to-millisecond structural changes in a light-driven sodium pump 期刊论文
NATURE, 2020, 583 (7815) : 314-+
作者:  Moore, Luiza;  Leongamornlert, Daniel;  Coorens, Tim H. H.;  Sanders, Mathijs A.;  Ellis, Peter;  Dentro, Stefan C.;  Dawson, Kevin J.;  Butler, Tim;  Rahbari, Raheleh;  Mitchell, Thomas J.;  Maura, Francesco;  Nangalia, Jyoti;  Tarpey, Patrick S.;  Brunner, Simon F.;  Lee-Six, Henry;  Hooks, Yvette;  Moody, Sarah;  Mahbubani, Krishnaa T.;  Jimenez-Linan, Mercedes;  Brosens, Jan J.;  Iacobuzio-Donahue, Christine A.;  Martincorena, Inigo;  Saeb-Parsy, Kourosh;  Campbell, Peter J.;  Stratton, Michael R.
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/03

Light-driven sodium pumps actively transport small cations across cellular membranes(1). These pumps are used by microorganisms to convert light into membrane potential and have become useful optogenetic tools with applications in neuroscience. Although the resting state structures of the prototypical sodium pump Krokinobacter eikastus rhodopsin 2 (KR2) have been solved(2,3), it is unclear how structural alterations overtime allow sodium to be translocated against a concentration gradient. Here, using the Swiss X-ray Free Electron Laser(4), we have collected serial crystallographic data at ten pump-probe delays from femtoseconds to milliseconds. High-resolution structural snapshots throughout the KR2 photocycle show how retinal isomerization is completed on the femtosecond timescale and changes the local structure of the binding pocket in the early nanoseconds. Subsequent rearrangements and deprotonation of the retinal Schiff base open an electrostatic gate in microseconds. Structural and spectroscopic data, in combination with quantum chemical calculations, indicate that a sodium ion bind stransiently close to the retinal within one millisecond. In the last structural intermediate, at 20 milliseconds after activation, we identified a potential second sodium-binding site close to the extracellular exit. These results provide direct molecular insight into the dynamics of active cation transport across biological membranes.


  
Neuronal programming by microbiota regulates intestinal physiology 期刊论文
NATURE, 2020, 578 (7794) : 284-+
作者:  Li, Yilong;  Roberts, Nicola D.;  Wala, Jeremiah A.;  Shapira, Ofer;  Schumacher, Steven E.;  Kumar, Kiran;  Khurana, Ekta;  Waszak, Sebastian;  Korbel, Jan O.;  Haber, James E.;  Imielinski, Marcin;  Weischenfeldt, Joachim;  Beroukhim, Rameen;  Campbell, Peter J.;  Akdemir, Kadir C.;  Alvarez, Eva G.;  Baez-Ortega, Adrian;  Boutros, Paul C.;  Bowtell, David D. L.;  Brors, Benedikt;  Burns, Kathleen H.;  Chan, Kin;  Chen, Ken;  Cortes-Ciriano, Isidro;  Dueso-Barroso, Ana;  Dunford, Andrew J.;  Edwards, Paul A.;  Estivill, Xavier;  Etemadmoghadam, Dariush;  Feuerbach, Lars;  Fink, J. Lynn;  Frenkel-Morgenstern, Milana;  Garsed, Dale W.;  Gerstein, Mark;  Gordenin, Dmitry A.;  Haan, David;  Hess, Julian M.;  Hutter, Barbara;  Jones, David T. W.;  Ju, Young Seok;  Kazanov, Marat D.;  Klimczak, Leszek J.;  Koh, Youngil;  Lee, Eunjung Alice;  Lee, Jake June-Koo;  Lynch, Andy G.;  Macintyre, Geoff;  Markowetz, Florian;  Martincorena, Inigo;  Martinez-Fundichely, Alexander;  Meyerson, Matthew;  Miyano, Satoru;  Nakagawa, Hidewaki;  Navarro, Fabio C. P.;  Ossowski, Stephan;  Park, Peter J.;  Pearson, John, V;  Puiggros, Montserrat;  Rippe, Karsten;  Roberts, Steven A.;  Rodriguez-Martin, Bernardo;  Scully, Ralph;  Shackleton, Mark;  Sidiropoulos, Nikos;  Sieverling, Lina;  Stewart, Chip;  Torrents, David;  Tubio, Jose M. C.;  Villasante, Izar;  Waddell, Nicola;  Yang, Lixing;  Yao, Xiaotong;  Yoon, Sung-Soo;  Zamora, Jorge;  Zhang, Cheng-Zhong
收藏  |  浏览/下载:39/0  |  提交时间:2020/07/03

Neural control of the function of visceral organs is essential for homeostasis and health. Intestinal peristalsis is critical for digestive physiology and host defence, and is often dysregulated in gastrointestinal disorders(1). Luminal factors, such as diet and microbiota, regulate neurogenic programs of gut motility(2-5), but the underlying molecular mechanisms remain unclear. Here we show that the transcription factor aryl hydrocarbon receptor (AHR) functions as a biosensor in intestinal neural circuits, linking their functional output to the microbial environment of the gut lumen. Using nuclear RNA sequencing of mouse enteric neurons that represent distinct intestinal segments and microbiota states, we demonstrate that the intrinsic neural networks of the colon exhibit unique transcriptional profiles that are controlled by the combined effects of host genetic programs and microbial colonization. Microbiota-induced expression of AHR in neurons of the distal gastrointestinal tract enables these neurons to respond to the luminal environment and to induce expression of neuron-specific effector mechanisms. Neuron-specific deletion of Ahr, or constitutive overexpression of its negative feedback regulator CYP1A1, results in reduced peristaltic activity of the colon, similar to that observed in microbiota-depleted mice. Finally, expression of Ahr in the enteric neurons of mice treated with antibiotics partially restores intestinal motility. Together, our experiments identify AHR signalling in enteric neurons as a regulatory node that integrates the luminal environment with the physiological output of intestinal neural circuits to maintain gut homeostasis and health.


In a mouse model, aryl hydrocarbon receptor signalling in enteric neurons is revealed as a mechanism that helps to maintain gut homeostasis by integrating the luminal environment with the physiology of intestinal neural circuits.


  
Live-animal imaging of native haematopoietic stem and progenitor cells 期刊论文
NATURE, 2020, 578 (7794) : 278-+
作者:  Gerstung, Moritz;  Jolly, Clemency;  Leshchiner, Ignaty;  Dentro, Stefan C.;  Gonzalez, Santiago;  Rosebrock, Daniel;  Mitchell, Thomas J.;  Rubanova, Yulia;  Anur, Pavana;  Yu, Kaixian;  Tarabichi, Maxime;  Deshwar, Amit;  Wintersinger, Jeff;  Kleinheinz, Kortine;  Vazquez-Garcia, Ignacio;  Haase, Kerstin;  Jerman, Lara;  Sengupta, Subhajit;  Macintyre, Geoff;  Malikic, Salem;  Donmez, Nilgun;  Livitz, Dimitri G.;  Cmero, Marek;  Demeulemeester, Jonas;  Schumacher, Steven;  Fan, Yu;  Yao, Xiaotong;  Lee, Juhee;  Schlesner, Matthias;  Boutros, Paul C.;  Bowtell, David D.;  Zhu, Hongtu;  Getz, Gad;  Imielinski, Marcin;  Beroukhim, Rameen;  Sahinalp, S. Cenk;  Ji, Yuan;  Peifer, Martin;  Markowetz, Florian;  Mustonen, Ville;  Yuan, Ke;  Wang, Wenyi;  Morris, Quaid D.;  Spellman, Paul T.;  Wedge, David C.;  Van Loo, Peter;  Deshwar, Amit G.;  Adams, David J.;  Campbell, Peter J.;  Cao, Shaolong;  Christie, Elizabeth L.;  Cun, Yupeng;  Dawson, Kevin J.;  Drews, Ruben M.;  Eils, Roland;  Fittall, Matthew;  Garsed, Dale W.;  Ha, Gavin;  Lee-Six, Henry;  Martincorena, Inigo;  Oesper, Layla;  Peto, Myron;  Raphael, Benjamin J.;  Salcedo, Adriana;  Shi, Ruian;  Shin, Seung Jun;  Spiro, Oliver;  Stein, Lincoln D.;  Vembu, Shankar;  Wheeler, David A.;  Yang, Tsun-Po
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/03

The biology of haematopoietic stem cells (HSCs) has predominantly been studied under transplantation conditions(1,2). It has been particularly challenging to study dynamic HSC behaviour, given that the visualization of HSCs in the native niche in live animals has not, to our knowledge, been achieved. Here we describe a dual genetic strategy in mice that restricts reporter labelling to a subset of the most quiescent long-term HSCs (LT-HSCs) and that is compatible with current intravital imaging approaches in the calvarial bone marrow(3-5). We show that this subset of LT-HSCs resides close to both sinusoidal blood vessels and the endosteal surface. By contrast, multipotent progenitor cells (MPPs) show greater variation in distance from the endosteum and are more likely to be associated with transition zone vessels. LT-HSCs are not found in bone marrow niches with the deepest hypoxia and instead are found in hypoxic environments similar to those of MPPs. In vivo time-lapse imaging revealed that LT-HSCs at steady-state show limited motility. Activated LT-HSCs show heterogeneous responses, with some cells becoming highly motile and a fraction of HSCs expanding clonally within spatially restricted domains. These domains have defined characteristics, as HSC expansion is found almost exclusively in a subset of bone marrow cavities with bone-remodelling activity. By contrast, cavities with low bone-resorbing activity do not harbour expanding HSCs. These findings point to previously unknown heterogeneity within the bone marrow microenvironment, imposed by the stages of bone turnover. Our approach enables the direct visualization of HSC behaviours and dissection of heterogeneity in HSC niches.


A dual genetic strategy enables the labelling and in vivo imaging of native long-term haematopoietic stem cells in the mouse calvarial bone marrow.