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First topology of electron‐scale magnetic hole 期刊论文
Geophysical Research Letters, 2020
作者:  Y. Y. Liu;  H. S. Fu;  Q. G. Zong;  Z. Wang;  C. M. Liu;  S. Y. Huang;  Z. Z. Chen;  Y. Xu;  Q. Q. Shi;  S. T. Yao
收藏  |  浏览/下载:11/0  |  提交时间:2020/08/25
Broad neutralization of SARS-related viruses by human monoclonal antibodies 期刊论文
Science, 2020
作者:  Anna Z. Wec;  Daniel Wrapp;  Andrew S. Herbert;  Daniel P. Maurer;  Denise Haslwanter;  Mrunal Sakharkar;  Rohit K. Jangra;  M. Eugenia Dieterle;  Asparouh Lilov;  Deli Huang;  Longping V. Tse;  Nicole V. Johnson;  Ching-Lin Hsieh;  Nianshuang Wang;  Juergen H. Nett;  Elizabeth Champney;  Irina Burnina;  Michael Brown;  Shu Lin;  Melanie Sinclair;  Carl Johnson;  Sarat Pudi;  Robert Bortz;  Ariel S. Wirchnianski;  Ethan Laudermilch;  Catalina Florez;  J. Maximilian Fels;  Cecilia M. O’Brien;  Barney S. Graham;  David Nemazee;  Dennis R. Burton;  Ralph S. Baric;  James E. Voss;  Kartik Chandran;  John M. Dye;  Jason S. McLellan;  Laura M. Walker
收藏  |  浏览/下载:10/0  |  提交时间:2020/08/18
Observations of Electron Vortex at the Dipolarization Front 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (13)
作者:  Jiang, K.;  Huang, S. Y.;  Yuan, Z. G.;  Deng, X. H.;  Xu, S. B.;  Wei, Y. Y.;  He, L. H.;  Zhang, J.;  Zhang, Z. H.
收藏  |  浏览/下载:12/0  |  提交时间:2020/06/22
dipolarization front  electron vortex  small-scale plateau  asymmetric electric field  
Excitation of Whistler Waves Through the Bi‐directional Field‐Aligned Electron Beams with Electron Temperature Anisotropy: MMS Observations 期刊论文
Geophysical Research Letters, 2020
作者:  S. Y. Huang;  S. B. Xu;  L. H. He;  K. Jiang;  Z. G. Yuan;  X. H. Deng;  Y. Y. Wei;  J. Zhang;  Z. H. Zhang
收藏  |  浏览/下载:16/0  |  提交时间:2020/05/13
Ensuring meiotic DNA break formation in the mouse pseudoautosomal region 期刊论文
NATURE, 2020
作者:  Schuessler, R. X.;  Bekker, H.;  Brass, M.;  Cakir, H.;  Crespo Lopez-Urrutia, J. R.;  Door, M.;  Filianin, P.;  Harman, Z.;  Haverkort, M. W.;  Huang, W. J.;  Indelicato, P.;  Keitel, C. H.;  Koenig, C. M.;  Kromer, K.;  Mueller, M.;  Novikov, Y. N.;  Rischka, A.;  Schweiger, C.;  Sturm, S.;  Ulmer, S.;  Eliseev, S.;  Blaum, K.
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/03

In mice, the pseudoautosomal region of the sex chromosomes undergoes a dynamic structural rearrangement to promote a high rate of DNA double-strand breaks and to ensure X-Y recombination.


Sex chromosomes in males of most eutherian mammals share only a small homologous segment, the pseudoautosomal region (PAR), in which the formation of double-strand breaks (DSBs), pairing and crossing over must occur for correct meiotic segregation(1,2). How cells ensure that recombination occurs in the PAR is unknown. Here we present a dynamic ultrastructure of the PAR and identify controlling cis- and trans-acting factors that make the PAR the hottest segment for DSB formation in the male mouse genome. Before break formation, multiple DSB-promoting factors hyperaccumulate in the PAR, its chromosome axes elongate and the sister chromatids separate. These processes are linked to heterochromatic mo-2 minisatellite arrays, and require MEI4 and ANKRD31 proteins but not the axis components REC8 or HORMAD1. We propose that the repetitive DNA sequence of the PAR confers unique chromatin and higher-order structures that are crucial for recombination. Chromosome synapsis triggers collapse of the elongated PAR structure and, notably, oocytes can be reprogrammed to exhibit spermatocyte-like levels of DSBs in the PAR simply by delaying or preventing synapsis. Thus, the sexually dimorphic behaviour of the PAR is in part a result of kinetic differences between the sexes in a race between the maturation of the PAR structure, formation of DSBs and completion of pairing and synapsis. Our findings establish a mechanistic paradigm for the recombination of sex chromosomes during meiosis.