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Zebra stripe patterns in energetic ion spectra at Saturn 期刊论文
Geophysical Research Letters, 2022
作者:  Y. X. Sun;  Y. X Hao;  E Roussos;  Q. -G. Zong;  Y. Liu;  X. -Z Zhou;  C Yue;  N. Krupp
收藏  |  浏览/下载:15/0  |  提交时间:2022/02/23
Rewetting does not return drained fen peatlands to their old selves 期刊论文
Nature Communications, 2021
作者:  Kreyling, J.;  Tanneberger, F.;  Jansen, F.;  van der Linden, S.;  Aggenbach, C.;  Blü;  ml, V.;  Couwenberg, J.;  Emsens, W-J;  Joosten, H.;  Klimkowska, A.;  Kotowski, W.;  Kozub, L.;  Lennartz, B.;  Liczner, Y.;  Liu, H.;  Michaelis, D.;  Oehmke, C.;  Parakenings, K.;  Pleyl, E.;  Poyda, A.;  Raabe, S.;  ;  hl, M.;  ;  cker, K.;  Schneider, A.;  Schrautzer, J.;  Schrö;  der, C.;  Schug, F.;  Seeber, E.;  Thiel, F.;  Thiele, S.;  Tiemeyer, B.;  Timmermann, T.;  Urich, T.;  van Diggelen, R.;  Vegelin, K.;  Verbruggen, E.;  Wilmking, M.;  Wrage-Mö;  nnig, N.;  Woł;  ejko, L.;  Zak, D.;  Jurasinski, G.
收藏  |  浏览/下载:12/0  |  提交时间:2021/10/22
Peta–electron volt gamma-ray emission from the Crab Nebula 期刊论文
Science, 2021
作者:  The LHAASO Collaboration*†;  Zhen Cao;  F. Aharonian;  Q. An;  Axikegu;  L. X. Bai;  Y. X. Bai;  Y. W. Bao;  D. Bastieri;  X. J. Bi;  Y. J. Bi;  H. Cai;  J. T. Cai;  Zhe Cao;  J. Chang;  J. F. Chang;  B. M. Chen;  E. S. Chen;  J. Chen;  Liang Chen;  Liang Chen;  Long Chen;  M. J. Chen;  M. L. Chen;  Q. H. Chen;  S. H. Chen;  S. Z. Chen;  T. L. Chen;  X. L. Chen;  Y. Chen;  N. Cheng;  Y. D. Cheng;  S. W. Cui;  X. H. Cui;  Y. D. Cui;  B. D’Ettorre Piazzoli;  B. Z. Dai;  H. L. Dai;  Z. G. Dai;  Danzengluobu;  D. della Volpe;  X. J. Dong;  K. K. Duan;  J. H. Fan;  Y. Z. Fan;  Z. X. Fan;  J. Fang;  K. Fang;  C. F. Feng;  L. Feng;  S. H. Feng;  Y. L. Feng;  B. Gao;  C. D. Gao;  L. Q. Gao;  Q. Gao;  W. Gao;  M. M. Ge;  L. S. Geng;  G. H. Gong;  Q. B. Gou;  M. H. Gu;  F. L. Guo;  J. G. Guo;  X. L. Guo;  Y. Q. Guo;  Y. Y. Guo;  Y. A. Han;  H. H. He;  H. N. He;  J. C. He;  S. L. He;  X. B. He;  Y. He;  M. Heller;  Y. K. Hor;  C. Hou;  X. Hou;  H. B. Hu;  S. Hu;  S. C. Hu;  X. J. Hu;  D. H. Huang;  Q. L. Huang;  W. H. Huang;  X. T. Huang;  X. Y. Huang;  Z. C. Huang;  F. Ji;  X. L. Ji;  H. Y. Jia;  K. Jiang;  Z. J. Jiang;  C. Jin;  T. Ke;  D. Kuleshov;  K. Levochkin;  B. B. Li;  Cheng Li;  Cong Li;  F. Li;  H. B. Li;  H. C. Li;  H. Y. Li;  Jian Li;  Jie Li;  K. Li;  W. L. Li;  X. R. Li;  Xin Li;  Xin Li;  Y. Li;  Y. Z. Li;  Zhe Li;  Zhuo Li;  E. W. Liang;  Y. F. Liang;  S. J. Lin;  B. Liu;  C. Liu;  D. Liu;  H. Liu;  H. D. Liu;  J. Liu;  J. L. Liu;  J. S. Liu;  J. Y. Liu;  M. Y. Liu;  R. Y. Liu;  S. M. Liu;  W. Liu;  Y. Liu;  Y. N. Liu;  Z. X. Liu;  W. J. Long;  R. Lu;  H. K. Lv;  B. Q. Ma;  L. L. Ma;  X. H. Ma;  J. R. Mao;  A. Masood;  Z. Min;  W. Mitthumsiri;  T. Montaruli;  Y. C. Nan;  B. Y. Pang;  P. Pattarakijwanich;  Z. Y. Pei;  M. Y. Qi;  Y. Q. Qi;  B. Q. Qiao;  J. J. Qin;  D. Ruffolo;  V. Rulev;  A. Saiz;  L. Shao;  O. Shchegolev;  X. D. Sheng;  J. Y. Shi;  H. C. Song;  Yu. V. Stenkin;  V. Stepanov;  Y. Su;  Q. N. Sun;  X. N. Sun;  Z. B. Sun;  P. H. T. Tam;  Z. B. Tang;  W. W. Tian;  B. D. Wang;  C. Wang;  H. Wang;  H. G. Wang;  J. C. Wang;  J. S. Wang;  L. P. Wang;  L. Y. Wang;  R. N. Wang;  Wei Wang;  Wei Wang;  X. G. Wang;  X. J. Wang;  X. Y. Wang;  Y. Wang;  Y. D. Wang;  Y. J. Wang;  Y. P. Wang;  Z. H. Wang;  Z. X. Wang;  Zhen Wang;  Zheng Wang;  D. M. Wei;  J. J. Wei;  Y. J. Wei;  T. Wen;  C. Y. Wu;  H. R. Wu;  S. Wu;  W. X. Wu;  X. F. Wu;  S. Q. Xi;  J. Xia;  J. J. Xia;  G. M. Xiang;  D. X. Xiao;  G. Xiao;  H. B. Xiao;  G. G. Xin;  Y. L. Xin;  Y. Xing;  D. L. Xu;  R. X. Xu;  L. Xue;  D. H. Yan;  J. Z. Yan;  C. W. Yang;  F. F. Yang;  J. Y. Yang;  L. L. Yang;  M. J. Yang;  R. Z. Yang;  S. B. Yang;  Y. H. Yao;  Z. G. Yao;  Y. M. Ye;  L. Q. Yin;  N. Yin;  X. H. You;  Z. Y. You;  Y. H. Yu;  Q. Yuan;  H. D. Zeng;  T. X. Zeng;  W. Zeng;  Z. K. Zeng;  M. Zha;  X. X. Zhai;  B. B. Zhang;  H. M. Zhang;  H. Y. Zhang;  J. L. Zhang;  J. W. Zhang;  L. X. Zhang;  Li Zhang;  Lu Zhang;  P. F. Zhang;  P. P. Zhang;  R. Zhang;  S. R. Zhang;  S. S. Zhang;  X. Zhang;  X. P. Zhang;  Y. F. Zhang;  Y. L. Zhang;  Yi Zhang;  Yong Zhang;  B. Zhao;  J. Zhao;  L. Zhao;  L. Z. Zhao;  S. P. Zhao;  F. Zheng;  Y. Zheng;  B. Zhou;  H. Zhou;  J. N. Zhou;  P. Zhou;  R. Zhou;  X. X. Zhou;  C. G. Zhu;  F. R. Zhu;  H. Zhu;  K. J. Zhu;  X. Zuo
收藏  |  浏览/下载:14/0  |  提交时间:2021/07/27
Approaching the motional ground state of a 10-kg object 期刊论文
Science, 2021
作者:  Chris Whittle;  Evan D. Hall;  Sheila Dwyer;  Nergis Mavalvala;  Vivishek Sudhir;  R. Abbott;  A. Ananyeva;  C. Austin;  L. Barsotti;  J. Betzwieser;  C. D. Blair;  A. F. Brooks;  D. D. Brown;  A. Buikema;  C. Cahillane;  J. C. Driggers;  A. Effler;  A. Fernandez-Galiana;  P. Fritschel;  V. V. Frolov;  T. Hardwick;  M. Kasprzack;  K. Kawabe;  N. Kijbunchoo;  J. S. Kissel;  G. L. Mansell;  F. Matichard;  L. McCuller;  T. McRae;  A. Mullavey;  A. Pele;  R. M. S. Schofield;  D. Sigg;  M. Tse;  G. Vajente;  D. C. Vander-Hyde;  Hang Yu;  Haocun Yu;  C. Adams;  R. X. Adhikari;  S. Appert;  K. Arai;  J. S. Areeda;  Y. Asali;  S. M. Aston;  A. M. Baer;  M. Ball;  S. W. Ballmer;  S. Banagiri;  D. Barker;  J. Bartlett;  B. K. Berger;  D. Bhattacharjee;  G. Billingsley;  S. Biscans;  R. M. Blair;  N. Bode;  P. Booker;  R. Bork;  A. Bramley;  K. C. Cannon;  X. Chen;  A. A. Ciobanu;  F. Clara;  C. M. Compton;  S. J. Cooper;  K. R. Corley;  S. T. Countryman;  P. B. Covas;  D. C. Coyne;  L. E. H. Datrier;  D. Davis;  C. Di Fronzo;  K. L. Dooley;  P. Dupej;  T. Etzel;  M. Evans;  T. M. Evans;  J. Feicht;  P. Fulda;  M. Fyffe;  J. A. Giaime;  K. D. Giardina;  P. Godwin;  E. Goetz;  S. Gras;  C. Gray;  R. Gray;  A. C. Green;  E. K. Gustafson;  R. Gustafson;  J. Hanks;  J. Hanson;  R. K. Hasskew;  M. C. Heintze;  A. F. Helmling-Cornell;  N. A. Holland;  J. D. Jones;  S. Kandhasamy;  S. Karki;  P. J. King;  Rahul Kumar;  M. Landry;  B. B. Lane;  B. Lantz;  M. Laxen;  Y. K. Lecoeuche;  J. Leviton;  J. Liu;  M. Lormand;  A. P. Lundgren;  R. Macas;  M. MacInnis;  D. M. Macleod;  S. Márka;  Z. Márka;  D. V. Martynov;  K. Mason;  T. J. Massinger;  R. McCarthy;  D. E. McClelland;  S. McCormick;  J. McIver;  G. Mendell;  K. Merfeld;  E. L. Merilh;  F. Meylahn;  T. Mistry;  R. Mittleman;  G. Moreno;  C. M. Mow-Lowry;  S. Mozzon;  T. J. N. Nelson;  P. Nguyen;  L. K. Nuttall;  J. Oberling;  Richard J. Oram;  C. Osthelder;  D. J. Ottaway;  H. Overmier;  J. R. Palamos;  W. Parker;  E. Payne;  R. Penhorwood;  C. J. Perez;  M. Pirello;  H. Radkins;  K. E. Ramirez;  J. W. Richardson;  K. Riles;  N. A. Robertson;  J. G. Rollins;  C. L. Romel;  J. H. Romie;  M. P. Ross;  K. Ryan;  T. Sadecki;  E. J. Sanchez;  L. E. Sanchez;  T. R. Saravanan;  R. L. Savage;  D. Schaetz;  R. Schnabel;  E. Schwartz;  D. Sellers;  T. Shaffer;  B. J. J. Slagmolen;  J. R. Smith;  S. Soni;  B. Sorazu;  A. P. Spencer;  K. A. Strain;  L. Sun;  M. J. Szczepańczyk;  M. Thomas;  P. Thomas;  K. A. Thorne;  K. Toland;  C. I. Torrie;  G. Traylor;  A. L. Urban;  G. Valdes;  P. J. Veitch;  K. Venkateswara;  G. Venugopalan;  A. D. Viets;  T. Vo;  C. Vorvick;  M. Wade;  R. L. Ward;  J. Warner;  B. Weaver;  R. Weiss;  B. Willke;  C. C. Wipf;  L. Xiao;  H. Yamamoto;  L. Zhang;  M. E. Zucker;  J. Zweizig
收藏  |  浏览/下载:16/0  |  提交时间:2021/06/24
An ultrapotent synthetic nanobody neutralizes SARS-CoV-2 by stabilizing inactive Spike 期刊论文
Science, 2020
作者:  Michael Schoof;  Bryan Faust;  Reuben A. Saunders;  Smriti Sangwan;  Veronica Rezelj;  Nick Hoppe;  Morgane Boone;  Christian B. Billesbølle;  Cristina Puchades;  Caleigh M. Azumaya;  Huong T. Kratochvil;  Marcell Zimanyi;  Ishan Deshpande;  Jiahao Liang;  Sasha Dickinson;  Henry C. Nguyen;  Cynthia M. Chio;  Gregory E. Merz;  Michael C. Thompson;  Devan Diwanji;  Kaitlin Schaefer;  Aditya A. Anand;  Niv Dobzinski;  Beth Shoshana Zha;  Camille R. Simoneau;  Kristoffer Leon;  Kris M. White;  Un Seng Chio;  Meghna Gupta;  Mingliang Jin;  Fei Li;  Yanxin Liu;  Kaihua Zhang;  David Bulkley;  Ming Sun;  Amber M. Smith;  Alexandrea N. Rizo;  Frank Moss;  Axel F. Brilot;  Sergei Pourmal;  Raphael Trenker;  Thomas Pospiech;  Sayan Gupta;  Benjamin Barsi-Rhyne;  Vladislav Belyy;  Andrew W. Barile-Hill;  Silke Nock;  Yuwei Liu;  Nevan J. Krogan;  Corie Y. Ralston;  Danielle L. Swaney;  Adolfo García-Sastre;  Melanie Ott;  Marco Vignuzzi;  QCRG Structural Biology Consortium4‡;  Peter Walter;  Aashish Manglik
收藏  |  浏览/下载:14/0  |  提交时间:2020/12/22
Multifunctional products of isoprene oxidation in polluted atmosphere and their contribution to SOA 期刊论文
Geophysical Research Letters, 2020
作者:  Z. N. Xu;  W. Nie;  X. G. Chi;  P. Sun;  D. D. Huang;  C. Yan;  J. Krechmer;  P. L. Ye;  Z. Xu;  X. M. Qi;  C.J. Zhu;  Y. L. Liu;  Y. Y. Li;  T. Y. Wang;  L. Wang;  X. Huang;  R. Z. Tang;  S. Guo;  G. L. Xiu;  Q. Y. Fu;  D. Worsnop;  A. J. Ding
收藏  |  浏览/下载:14/0  |  提交时间:2020/12/07
HBO1 is required for the maintenance of leukaemia stem cells 期刊论文
NATURE, 2020, 577 (7789) : 266-+
作者:  MacPherson, Laura;  Anokye, Juliana;  Yeung, Miriam M.;  Lam, Enid Y. N.;  Chan, Yih-Chih;  Weng, Chen-Fang;  Yeh, Paul;  Knezevic, Kathy;  Butler, Miriam S.;  Hoegl, Annabelle;  Chan, Kah-Lok;  Burr, Marian L.;  Gearing, Linden J.;  Willson, Tracy;  Liu, Joy;  Choi, Jarny;  Yang, Yuqing;  Bilardi, Rebecca A.;  Falk, Hendrik;  Nghi Nguyen;  Stupple, Paul A.;  Peat, Thomas S.;  Zhang, Ming;  de Silva, Melanie;  Carrasco-Pozo, Catalina;  Avery, Vicky M.;  Khoo, Poh Sim;  Dolezal, Olan;  Dennis, Matthew L.;  Nuttall, Stewart;  Surjadi, Regina;  Newman, Janet;  Ren, Bin;  Leaver, David J.;  Sun, Yuxin;  Baell, Jonathan B.;  Dovey, Oliver;  Vassiliou, George S.;  Grebien, Florian;  Dawson, Sarah-Jane;  Street, Ian P.;  Monahan, Brendon J.;  Burns, Christopher J.;  Choudhary, Chunaram;  Blewitt, Marnie E.;  Voss, Anne K.;  Thomas, Tim;  Dawson, Mark A.
收藏  |  浏览/下载:15/0  |  提交时间:2020/07/03

Acute myeloid leukaemia (AML) is a heterogeneous disease characterized by transcriptional dysregulation that results in a block in differentiation and increased malignant self-renewal. Various epigenetic therapies aimed at reversing these hallmarks of AML have progressed into clinical trials, but most show only modest efficacy owing to an inability to effectively eradicate leukaemia stem cells (LSCs)(1). Here, to specifically identify novel dependencies in LSCs, we screened a bespoke library of small hairpin RNAs that target chromatin regulators in a unique ex vivo mouse model of LSCs. We identify the MYST acetyltransferase HBO1 (also known as KAT7 or MYST2) and several known members of the HBO1 protein complex as critical regulators of LSC maintenance. Using CRISPR domain screening and quantitative mass spectrometry, we identified the histone acetyltransferase domain of HBO1 as being essential in the acetylation of histone H3 at K14. H3 acetylated at K14 (H3K14ac) facilitates the processivity of RNA polymerase II to maintain the high expression of key genes (including Hoxa9 and Hoxa10) that help to sustain the functional properties of LSCs. To leverage this dependency therapeutically, we developed a highly potent small-molecule inhibitor of HBO1 and demonstrate its mode of activity as a competitive analogue of acetyl-CoA. Inhibition of HBO1 phenocopied our genetic data and showed efficacy in a broad range of human cell lines and primary AML cells from patients. These biological, structural and chemical insights into a therapeutic target in AML will enable the clinical translation of these findings.


  
Electrical manipulation of a topological antiferromagnetic state 期刊论文
NATURE, 2020, 580 (7805) : 608-+
作者:  Chabon, Jacob J.;  Hamilton, Emily G.;  Kurtz, David M.;  Esfahani, Mohammad S.;  Moding, Everett J.;  Stehr, Henning;  Schroers-Martin, Joseph;  Nabet, Barzin Y.;  Chen, Binbin;  Chaudhuri, Aadel A.;  Liu, Chih Long;  Hui, Angela B.;  Jin, Michael C.;  Azad, Tej D.;  Almanza, Diego;  Jeon, Young-Jun;  Nesselbush, Monica C.;  Keh, Lyron Co Ting;  Bonilla, Rene F.;  Yoo, Christopher H.;  Ko, Ryan B.;  Chen, Emily L.;  Merriott, David J.;  Massion, Pierre P.;  Mansfield, Aaron S.;  Jen, Jin;  Ren, Hong Z.;  Lin, Steven H.;  Costantino, Christina L.;  Burr, Risa;  Tibshirani, Robert;  Gambhir, Sanjiv S.;  Berry, Gerald J.;  Jensen, Kristin C.;  West, Robert B.;  Neal, Joel W.;  Wakelee, Heather A.;  Loo, Billy W., Jr.;  Kunder, Christian A.;  Leung, Ann N.;  Lui, Natalie S.;  Berry, Mark F.;  Shrager, Joseph B.;  Nair, Viswam S.;  Haber, Daniel A.;  Sequist, Lecia V.;  Alizadeh, Ash A.;  Diehn, Maximilian
收藏  |  浏览/下载:35/0  |  提交时间:2020/07/03

Room-temperature electrical switching of a topological antiferromagnetic state in polycrystalline Mn3Sn thin films is demonstrated using the same protocol as that used for conventional ferromagnetic metals.


Electrical manipulation of phenomena generated by nontrivial band topology is essential for the development of next-generation technology using topological protection. A Weyl semimetal is a three-dimensional gapless system that hosts Weyl fermions as low-energy quasiparticles(1-4). It has various exotic properties, such as a large anomalous Hall effect (AHE) and chiral anomaly, which are robust owing to the topologically protected Weyl nodes(1-16). To manipulate such phenomena, a magnetic version of Weyl semimetals would be useful for controlling the locations of Weyl nodes in the Brillouin zone. Moreover, electrical manipulation of antiferromagnetic Weyl metals would facilitate the use of antiferromagnetic spintronics to realize high-density devices with ultrafast operation(17,18). However, electrical control of a Weyl metal has not yet been reported. Here we demonstrate the electrical switching of a topological antiferromagnetic state and its detection by the AHE at room temperature in a polycrystalline thin film(19) of the antiferromagnetic Weyl metal Mn3Sn9,10,12,20, which exhibits zero-field AHE. Using bilayer devices composed of Mn3Sn and nonmagnetic metals, we find that an electrical current density of about 10(10) to 10(11) amperes per square metre induces magnetic switching in the nonmagnetic metals, with a large change in Hall voltage. In addition, the current polarity along the bias field and the sign of the spin Hall angle of the nonmagnetic metals-positive for Pt (ref. (21)), close to 0 for Cu and negative for W (ref. (22))-determines the sign of the Hall voltage. Notably, the electrical switching in the antiferromagnet is achieved with the same protocol as that used for ferromagnetic metals(23,24). Our results may lead to further scientific and technological advances in topological magnetism and antiferromagnetic spintronics.


  
Modeling the Fate of Pharmaceuticals in a Fourth-Order River Under Competing Assumptions of Transient Storage 期刊论文
WATER RESOURCES RESEARCH, 2020, 56 (3)
作者:  Liu, Y.;  Zarfl, C.;  Basu, N. B.;  Cirpka, O. A.
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/02
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.
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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.