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Sequencing of 640,000 exomes identifies GPR75 variants associated with protection from obesity 期刊论文
Science, 2021
作者:  Parsa Akbari;  Ankit Gilani;  Olukayode Sosina;  Jack A. Kosmicki;  Lori Khrimian;  Yi-Ya Fang;  Trikaldarshi Persaud;  Victor Garcia;  Dylan Sun;  Alexander Li;  Joelle Mbatchou;  Adam E. Locke;  Christian Benner;  Niek Verweij;  Nan Lin;  Sakib Hossain;  Kevin Agostinucci;  Jonathan V. Pascale;  Ercument Dirice;  Michael Dunn;  Regeneron Genetics Center‡;  DiscovEHR Collaboration‡;  William E. Kraus;  Svati H. Shah;  Yii-Der I. Chen;  Jerome I. Rotter;  Daniel J. Rader;  Olle Melander;  Christopher D. Still;  Tooraj Mirshahi;  David J. Carey;  Jaime Berumen-Campos;  Pablo Kuri-Morales;  Jesus Alegre-Díaz;  Jason M. Torres;  Jonathan R. Emberson;  Rory Collins;  Suganthi Balasubramanian;  Alicia Hawes;  Marcus Jones;  Brian Zambrowicz;  Andrew J. Murphy;  Charles Paulding;  Giovanni Coppola;  John D. Overton;  Jeffrey G. Reid;  Alan R. Shuldiner;  Michael Cantor;  Hyun M. Kang;  Goncalo R. Abecasis;  Katia Karalis;  Aris N. Economides;  Jonathan Marchini;  George D. Yancopoulos;  Mark W. Sleeman;  Judith Altarejos;  Giusy Della Gatta;  Roberto Tapia-Conyer;  Michal L. Schwartzman;  Aris Baras;  Manuel A. R. Ferreira;  Luca A. Lotta
收藏  |  浏览/下载:64/0  |  提交时间:2021/07/27
De novo design of transmembrane β barrels 期刊论文
Science, 2021
作者:  Anastassia A. Vorobieva;  Paul White;  Binyong Liang;  Jim E. Horne;  Asim K. Bera;  Cameron M. Chow;  Stacey Gerben;  Sinduja Marx;  Alex Kang;  Alyssa Q. Stiving;  Sophie R. Harvey;  Dagan C. Marx;  G. Nasir Khan;  Karen G. Fleming;  Vicki H. Wysocki;  David J. Brockwell;  Lukas K. Tamm;  Sheena E. Radford;  David Baker
收藏  |  浏览/下载:27/0  |  提交时间:2021/02/22
Two‐phase fluid flow properties of rough fractures with heterogeneous wettability: analysis with lattice Boltzmann simulations 期刊论文
Water Resources Research, 2020
作者:  Eric J. Guiltinan;  J. E. Santos;  M. Bayani Cardenas;  D. Nicolas Espinoza;  Qinjun Kang
收藏  |  浏览/下载:27/0  |  提交时间:2020/12/22
Near-real-time monitoring of global CO2 emissions reveals the effects of the COVID-19 pandemic 期刊论文
Nature Communications, 2020
作者:  Zhu Liu;  Philippe Ciais;  Zhu Deng;  Ruixue Lei;  Steven J. Davis;  Sha Feng;  Bo Zheng;  Duo Cui;  Xinyu Dou;  Biqing Zhu;  Rui Guo;  Piyu Ke;  Taochun Sun;  Chenxi Lu;  Pan He;  Yuan Wang;  Xu Yue;  Yilong Wang;  Yadong Lei;  Hao Zhou;  Zhaonan Cai;  Yuhui Wu;  Runtao Guo;  Tingxuan Han;  Jinjun Xue;  Olivier Boucher;  Eulalie Boucher;  Fré;  ;  ric Chevallier;  Katsumasa Tanaka;  Yimin Wei;  Haiwang Zhong;  Chongqing Kang;  Ning Zhang;  Bin Chen;  Fengming Xi;  Miaomiao Liu;  Franç;  ois-Marie Bré;  on;  Yonglong Lu;  Qiang Zhang;  Dabo Guan;  Peng Gong;  Daniel M. Kammen;  Kebin He;  Hans Joachim Schellnhuber
收藏  |  浏览/下载:62/0  |  提交时间:2020/10/20
Methane emissions from natural gas vehicles in China 期刊论文
Nature Communications, 2020
作者:  Da Pan;  Lei Tao;  Kang Sun;  Levi M. Golston;  David J. Miller;  Tong Zhu;  Yue Qin;  Yan Zhang;  Denise L. Mauzerall;  Mark A. Zondlo
收藏  |  浏览/下载:43/0  |  提交时间:2020/09/14
A nature-inspired hydrogen-bonded supramolecular complex for selective copper ion removal from water 期刊论文
Nature Communications, 2020
作者:  Ngoc T. Bui;  Hyungmook Kang;  Simon J. Teat;  Gregory M. Su;  Chih-Wen Pao;  Yi-Sheng Liu;  Edmond W. Zaia;  Jinghua Guo;  Jeng-Lung Chen;  Katie R. Meihaus;  Chaochao Dun;  Tracy M. Mattox;  Jeffrey R. Long;  Peter Fiske;  Robert Kostecki;  Jeffrey J. Urban
收藏  |  浏览/下载:32/0  |  提交时间:2020/08/18
ECOSTRESS: NASA's Next Generation Mission to Measure Evapotranspiration From the International Space Station 期刊论文
WATER RESOURCES RESEARCH, 2020, 56 (4)
作者:  Fisher, Joshua B.;  Lee, Brian;  Purdy, Adam J.;  Halverson, Gregory H.;  Dohlen, Matthew B.;  Cawse-Nicholson, Kerry;  Wang, Audrey;  Anderson, Ray G.;  Aragon, Bruno;  Arain, M. Altaf;  Baldocchi, Dennis D.;  Baker, John M.;  Barral, Helene;  Bernacchi, Carl J.;  Bernhofer, Christian;  Biraud, Sebastien C.;  Bohrer, Gil;  Brunsell, Nathaniel;  Cappelaere, Bernard;  Castro-Contreras, Saulo;  Chun, Junghwa;  Conrad, Bryan J.;  Cremonese, Edoardo;  Demarty, Jerome;  Desai, Ankur R.;  De Ligne, Anne;  Foltynova, Lenka;  Goulden, Michael L.;  Griffis, Timothy J.;  Gruenwald, Thomas;  Johnson, Mark S.;  Kang, Minseok;  Kelbe, Dave;  Kowalska, Natalia;  Lim, Jong-Hwan;  Mainassara, Ibrahim;  McCabe, Matthew F.;  Missik, Justine E. C.;  Mohanty, Binayak P.;  Moore, Caitlin E.;  Morillas, Laura;  Morrison, Ross;  Munger, J. William;  Posse, Gabriela;  Richardson, Andrew D.;  Russell, Eric S.;  Ryu, Youngryel;  Sanchez-Azofeifa, Arturo;  Schmidt, Marius;  Schwartz, Efrat;  Sharp, Iain;  Sigut, Ladislav;  Tang, Yao;  Hulley, Glynn;  Anderson, Martha;  Hain, Christopher;  French, Andrew;  Wood, Eric;  Hook, Simon
收藏  |  浏览/下载:59/0  |  提交时间:2020/07/02
ECOSTRESS  eddy covariance  evapotranspiration  latent heat flux  satellite  validation  
Simulation of Hubbard model physics in WSe2/WS2 moire superlattices 期刊论文
NATURE, 2020, 579 (7799) : 353-+
作者:  Stein, Reed M.;  Kang, Hye Jin;  McCorvy, John D.;  Glatfelter, Grant C.;  Jones, Anthony J.;  Che, Tao;  Slocum, Samuel;  Huang, Xi-Ping;  Savych, Olena;  Moroz, Yurii S.;  Stauch, Benjamin;  Johansson, Linda C.;  Cherezov, Vadim;  Kenakin, Terry;  Irwin, John J.;  Shoichet, Brian K.;  Roth, Bryan L.;  Dubocovich, Margarita L.
收藏  |  浏览/下载:32/0  |  提交时间:2020/07/03

Study of WSe2/WS2 moire superlattices reveals the phase diagram of the triangular-lattice Hubbard model, including a Mott insulating state at half-filling and a possible magnetic quantum phase transition near 0.6 filling.


The Hubbard model, formulated by physicist John Hubbard in the 1960s(1), is a simple theoretical model of interacting quantum particles in a lattice. The model is thought to capture the essential physics of high-temperature superconductors, magnetic insulators and other complex quantum many-body ground states(2,3). Although the Hubbard model provides a greatly simplified representation of most real materials, it is nevertheless difficult to solve accurately except in the one-dimensional case(2,3). Therefore, the physical realization of the Hubbard model in two or three dimensions, which can act as an analogue quantum simulator (that is, it can mimic the model and simulate its phase diagram and dynamics(4,5)), has a vital role in solving the strong-correlation puzzle, namely, revealing the physics of a large number of strongly interacting quantum particles. Here we obtain the phase diagram of the two-dimensional triangular-lattice Hubbard model by studying angle-aligned WSe2/WS2 bilayers, which form moire superlattices(6) because of the difference between the lattice constants of the two materials. We probe the charge and magnetic properties of the system by measuring the dependence of its optical response on an out-of-plane magnetic field and on the gate-tuned carrier density. At half-filling of the first hole moire superlattice band, we observe a Mott insulating state with antiferromagnetic Curie-Weiss behaviour, as expected for a Hubbard model in the strong-interaction regime(2,3,7-9). Above half-filling, our experiment suggests a possible quantum phase transition from an antiferromagnetic to a weak ferromagnetic state at filling factors near 0.6. Our results establish a new solid-state platform based on moire superlattices that can be used to simulate problems in strong-correlation physics that are described by triangular-lattice Hubbard models.


  
A lysosomal switch triggers proteostasis renewal in the immortal C. elegans germ lineage (vol 551, pg 629, 2017) 期刊论文
NATURE, 2020, 580 (7802) : E5-E5
作者:  Lu, Zhihao;  Zou, Jianling;  Li, Shuang;  Topper, Michael J.;  Tao, Yong;  Zhang, Hao;  Jiao, Xi;  Xie, Wenbing;  Kong, Xiangqian;  Vaz, Michelle;  Li, Huili;  Cai, Yi;  Xia, Limin;  Huang, Peng;  Rodgers, Kristen;  Lee, Beverly;  Riemer, Joanne B.;  Day, Chi-Ping;  Yen, Ray-Whay Chiu;  Cui, Ying;  Wang, Yujiao;  Wang, Yanni;  Zhang, Weiqiang;  Easwaran, Hariharan;  Hulbert, Alicia;  Kim, KiBem;  Juergens, Rosalyn A.;  Yang, Stephen C.;  Battafarano, Richard J.;  Bush, Errol L.;  Broderick, Stephen R.;  Cattaneo, Stephen M.;  Brahmer, Julie R.;  Rudin, Charles M.;  Wrangle, John;  Mei, Yuping;  Kim, Young J.;  Zhang, Bin;  Wang, Ken Kang-Hsin;  Forde, Patrick M.;  Margolick, Joseph B.;  Nelkin, Barry D.;  Zahnow, Cynthia A.;  Pardoll, Drew M.;  Housseau, Franck;  Baylin, Stephen B.;  Shen, Lin;  Brock, Malcolm V.
收藏  |  浏览/下载:53/0  |  提交时间:2020/07/03
Nightside condensation of iron in an ultrahot giant exoplanet 期刊论文
NATURE, 2020, 580 (7805) : 597-+
作者:  Lu, Zhihao;  Zou, Jianling;  Li, Shuang;  Topper, Michael J.;  Tao, Yong;  Zhang, Hao;  Jiao, Xi;  Xie, Wenbing;  Kong, Xiangqian;  Vaz, Michelle;  Li, Huili;  Cai, Yi;  Xia, Limin;  Huang, Peng;  Rodgers, Kristen;  Lee, Beverly;  Riemer, Joanne B.;  Day, Chi-Ping;  Yen, Ray-Whay Chiu;  Cui, Ying;  Wang, Yujiao;  Wang, Yanni;  Zhang, Weiqiang;  Easwaran, Hariharan;  Hulbert, Alicia;  Kim, KiBem;  Juergens, Rosalyn A.;  Yang, Stephen C.;  Battafarano, Richard J.;  Bush, Errol L.;  Broderick, Stephen R.;  Cattaneo, Stephen M.;  Brahmer, Julie R.;  Rudin, Charles M.;  Wrangle, John;  Mei, Yuping;  Kim, Young J.;  Zhang, Bin;  Wang, Ken Kang-Hsin;  Forde, Patrick M.;  Margolick, Joseph B.;  Nelkin, Barry D.;  Zahnow, Cynthia A.;  Pardoll, Drew M.;  Housseau, Franck;  Baylin, Stephen B.;  Shen, Lin;  Brock, Malcolm V.
收藏  |  浏览/下载:98/0  |  提交时间:2020/07/03

Ultrahot giant exoplanets receive thousands of times Earth'  s insolation(1,2). Their high-temperature atmospheres (greater than 2,000 kelvin) are ideal laboratories for studying extreme planetary climates and chemistry(3-5). Daysides are predicted to be cloud-free, dominated by atomic species(6) and much hotter than nightsides(5,7,8). Atoms are expected to recombine into molecules over the nightside(9), resulting in different day and night chemistries. Although metallic elements and a large temperature contrast have been observed(10-14), no chemical gradient has been measured across the surface of such an exoplanet. Different atmospheric chemistry between the day-to-night ('  evening'  ) and night-to-day ('  morning'  ) terminators could, however, be revealed as an asymmetric absorption signature during transit(4,7,15). Here we report the detection of an asymmetric atmospheric signature in the ultrahot exoplanet WASP-76b. We spectrally and temporally resolve this signature using a combination of high-dispersion spectroscopy with a large photon-collecting area. The absorption signal, attributed to neutral iron, is blueshifted by -11 +/- 0.7 kilometres per second on the trailing limb, which can be explained by a combination of planetary rotation and wind blowing from the hot dayside(16). In contrast, no signal arises from the nightside close to the morning terminator, showing that atomic iron is not absorbing starlight there. We conclude that iron must therefore condense during its journey across the nightside.


Absorption lines of iron in the dayside atmosphere of an ultrahot giant exoplanet disappear after travelling across the nightside, showing that the iron has condensed during its travel.