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Structure and mechanism of human diacylglycerol O-acyltransferase 1 期刊论文
NATURE, 2020, 581 (7808) : 329-+
作者:  Wu, Fan;  Zhao, Su;  Yu, Bin;  Chen, Yan-Mei;  Wang, Wen;  Song, Zhi-Gang;  Hu, Yi;  Tao, Zhao-Wu;  Tian, Jun-Hua;  Pei, Yuan-Yuan;  Yuan, Ming-Li;  Zhang, Yu-Ling;  Dai, Fa-Hui;  Liu, Yi;  Wang, Qi-Min;  Zheng, Jiao-Jiao;  Xu, Lin;  Holmes, Edward C.;  Zhang, Yong-Zhen
收藏  |  浏览/下载:24/0  |  提交时间:2020/07/03

The structure of human diacylglycerol O-acyltransferase 1, a membrane protein that synthesizes triacylglycerides, is solved with cryo-electron microscopy, providing insight into its function and mechanism of enzymatic activity.


Diacylglycerol O-acyltransferase 1 (DGAT1) synthesizes triacylglycerides and is required for dietary fat absorption and fat storage in humans(1). DGAT1 belongs to the membrane-bound O-acyltransferase (MBOAT) superfamily, members of which are found in all kingdoms of life and are involved in the acylation of lipids and proteins(2,3). How human DGAT1 and other mammalian members of the MBOAT family recognize their substrates and catalyse their reactions is unknown. The absence of three-dimensional structures also hampers rational targeting of DGAT1 for therapeutic purposes. Here we present the cryo-electron microscopy structure of human DGAT1 in complex with an oleoyl-CoA substrate. Each DGAT1 protomer has nine transmembrane helices, eight of which form a conserved structural fold that we name the MBOAT fold. The MBOAT fold in DGAT1 forms a hollow chamber in the membrane that encloses highly conserved catalytic residues. The chamber has separate entrances for each of the two substrates, fatty acyl-CoA and diacylglycerol. DGAT1 can exist as either a homodimer or a homotetramer and the two forms have similar enzymatic activity. The N terminus of DGAT1 interacts with the neighbouring protomer and these interactions are required for enzymatic activity.


  
The online competition between pro- and anti-vaccination views 期刊论文
NATURE, 2020, 582 (7811) : 230-+
作者:  Wu, Fan;  Zhao, Su;  Yu, Bin;  Chen, Yan-Mei;  Wang, Wen;  Song, Zhi-Gang;  Hu, Yi;  Tao, Zhao-Wu;  Tian, Jun-Hua;  Pei, Yuan-Yuan;  Yuan, Ming-Li;  Zhang, Yu-Ling;  Dai, Fa-Hui;  Liu, Yi;  Wang, Qi-Min;  Zheng, Jiao-Jiao;  Xu, Lin;  Holmes, Edward C.;  Zhang, Yong-Zhen
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/03

Insights into the interactions between pro- and anti-vaccination clusters on Facebook can enable policies and approaches that attempt to interrupt the shift to anti-vaccination views and persuade undecided individuals to adopt a pro-vaccination stance.


Distrust in scientific expertise(1-14) is dangerous. Opposition to vaccination with a future vaccine against SARS-CoV-2, the causal agent of COVID-19, for example, could amplify outbreaks(2-4), as happened for measles in 2019(5,6). Homemade remedies(7,8) and falsehoods are being shared widely on the Internet, as well as dismissals of expert advice(9-11). There is a lack of understanding about how this distrust evolves at the system level(13,14). Here we provide a map of the contention surrounding vaccines that has emerged from the global pool of around three billion Facebook users. Its core reveals a multi-sided landscape of unprecedented intricacy that involves nearly 100 million individuals partitioned into highly dynamic, interconnected clusters across cities, countries, continents and languages. Although smaller in overall size, anti-vaccination clusters manage to become highly entangled with undecided clusters in the main online network, whereas pro-vaccination clusters are more peripheral. Our theoretical framework reproduces the recent explosive growth in anti-vaccination views, and predicts that these views will dominate in a decade. Insights provided by this framework can inform new policies and approaches to interrupt this shift to negative views. Our results challenge the conventional thinking about undecided individuals in issues of contention surrounding health, shed light on other issues of contention such as climate change(11), and highlight the key role of network cluster dynamics in multi-species ecologies(15).


  
Dualities and non-Abelian mechanics 期刊论文
NATURE, 2020, 577 (7792) : 636-+
作者:  Song, Xinyang;  Sun, Ximei;  Oh, Sungwhan F.;  Wu, Meng;  Zhang, Yanbo;  Zheng, Wen;  Geva-Zatorsky, Naama;  Jupp, Ray;  Mathis, Diane;  Benoist, Christophe;  Kasper, Dennis L.
收藏  |  浏览/下载:13/0  |  提交时间:2020/07/03

Dualities-mathematical mappings between different systems-can act as hidden symmetries that enable materials design beyond that suggested by crystallographic space groups.


Dualities are mathematical mappings that reveal links between apparently unrelated systems in virtually every branch of physics(1-8). Systems mapped onto themselves by a duality transformation are called self-dual and exhibit remarkable properties, as exemplified by the scale invariance of an Ising magnet at the critical point. Here we show how dualities can enhance the symmetries of a dynamical matrix (or Hamiltonian), enabling the design of metamaterials with emergent properties that escape a standard group theory analysis. As an illustration, we consider twisted kagome lattices(9-15), reconfigurable mechanical structures that change shape by means of a collapse mechanism(9). We observe that pairs of distinct configurations along the mechanism exhibit the same vibrational spectrum and related elastic moduli. We show that these puzzling properties arise from a duality between pairs of configurations on either side of a mechanical critical point. The critical point corresponds to a self-dual structure with isotropic elasticity even in the absence of spatial symmetries and a twofold-degenerate spectrum over the entire Brillouin zone. The spectral degeneracy originates from a version of Kramers'  theorem(16,17) in which fermionic time-reversal invariance is replaced by a hidden symmetry emerging at the self-dual point. The normal modes of the self-dual systems exhibit non-Abelian geometric phases(18,19) that affect the semiclassical propagation of wavepackets(20), leading to non-commuting mechanical responses. Our results hold promise for holonomic computation(21) and mechanical spintronics by allowing on-the-fly manipulation of synthetic spins carried by phonons.


  
Ultrahigh-energy density lead-free dielectric films via polymorphic nanodomain design 期刊论文
SCIENCE, 2019, 365 (6453) : 578-582
作者:  Pan, Hao;  Li, Fei;  Liu, Yao;  Zhang, Qinghua;  Wang, Meng;  Lan, Shun;  Zheng, Yunpeng;  Ma, Jing;  Gu, Lin;  Shen, Yang;  Yu, Pu;  Zhang, Shujun;  Chen, Long-Qing;  Lin, Yuan-Hua;  Nan, Ce-Wen
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
Genetic basis of ruminant headgear and rapid antler regeneration 期刊论文
SCIENCE, 2019, 364 (6446) : 1153-+
作者:  Wang, Yu;  Zhang, Chenzhou;  Wang, Nini;  Li, Zhipeng;  Heller, Rasmus;  Liu, Rong;  Zhao, Yue;  Han, Jiangang;  Pan, Xiangyu;  Zheng, Zhuqing;  Dai, Xueqin;  Chen, Ceshi;  Dou, Mingle;  Peng, Shujun;  Chen, Xianqing;  Liu, Jing;  Li, Ming;  Wang, Kun;  Liu, Chang;  Lin, Zeshan;  Chen, Lei;  Hao, Fei;  Zhu, Wenbo;  Song, Chengchuang;  Zhao, Chen;  Zheng, Chengli;  Wang, Jianming;  Hu, Shengwei;  Li, Cunyuan;  Yang, Hui;  Jiang, Lin;  Li, Guangyu;  Liu, Mingjun;  Sonstegard, Tad S.;  Zhang, Guojie;  Jiang, Yu;  Wang, Wen;  Qiu, Qiang
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
Evolution of Radiation Belt Electron Pitch Angle Distribution Due to Combined Scattering by Plasmaspheric Hiss and Magnetosonic Waves 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (6) : 3033-3042
作者:  Hua, Man;  Ni, Binbin;  Li, Wen;  Gu, Xudong;  Fu, Song;  Shi, Run;  Xiang, Zheng;  Cao, Xing;  Zhang, Wenxun;  Guo, Yingjie
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/26
resonant wave-particle interactions  parametric study  plasmaspheric hiss  magnetosonic waves  combined scattering  diffusion simulations  
Ground-to-satellite quantum teleportation 期刊论文
NATURE, 2017, 549 (7670) : 70-+
作者:  Ren, Ji-Gang;  Xu, Ping;  Yong, Hai-Lin;  Zhang, Liang;  Liao, Sheng-Kai;  Yin, Juan;  Liu, Wei-Yue;  Cai, Wen-Qi;  Yang, Meng;  Li, Li;  Yang, Kui-Xing;  Han, Xuan;  Yao, Yong-Qiang;  Li, Ji;  Wu, Hai-Yan;  Wan, Song;  Liu, Lei;  Liu, Ding-Quan;  Kuang, Yao-Wu;  He, Zhi-Ping;  Shang, Peng;  Guo, Cheng;  Zheng, Ru-Hua;  Tian, Kai;  Zhu, Zhen-Cai;  Liu, Nai-Le;  Lu, Chao-Yang;  Shu, Rong;  Chen, Yu-Ao;  Peng, Cheng-Zhi;  Wang, Jian-Yu;  Pan, Jian-Wei
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
Bug mapping and fitness testing of chemically synthesized chromosome X 期刊论文
SCIENCE, 2017, 355 (6329)
作者:  Wu, Yi;  Li, Bing-Zhi;  Zhao, Meng;  Mitchell, Leslie A.;  Xie, Ze-Xiong;  Lin, Qiu-Hui;  Wang, Xia;  Xiao, Wen-Hai;  Wang, Ying;  Zhou, Xiao;  Liu, Hong;  Li, Xia;  Ding, Ming-Zhu;  Liu, Duo;  Zhang, Lu;  Liu, Bao-Li;  Wu, Xiao-Le;  Li, Fei-Fei;  Dong, Xiu-Tao;  Jia, Bin;  Zhang, Wen-Zheng;  Jiang, Guo-Zhen;  Liu, Yue;  Bai, Xue;  Song, Tian-Qing;  Chen, Yan;  Zhou, Si-Jie;  Zhu, Rui-Ying;  Gao, Feng;  Kuang, Zheng;  Wang, Xuya;  Shen, Michael;  Yang, Kun;  Stracquadanio, Giovanni;  Richardson, Sarah M.;  Lin, Yicong;  Wang, Lihui;  Walker, Roy;  Luo, Yisha;  Ma, Ping-Sheng;  Yang, Huanming;  Cai, Yizhi;  Dai, Junbiao;  Bader, Joel S.;  Boeke, Jef D.;  Yuan, Ying-Jin
收藏  |  浏览/下载:16/0  |  提交时间:2019/11/27
"Perfect" designer chromosome V and behavior of a ring derivative 期刊论文
SCIENCE, 2017, 355 (6329)
作者:  Xie, Ze-Xiong;  Li, Bing-Zhi;  Mitchell, Leslie A.;  Wu, Yi;  Qi, Xin;  Jin, Zhu;  Jia, Bin;  Wang, Xia;  Zeng, Bo-Xuan;  Liu, Hui-Min;  Wu, Xiao-Le;  Feng, Qi;  Zhang, Wen-Zheng;  Liu, Wei;  Ding, Ming-Zhu;  Li, Xia;  Zhao, Guang-Rong;  Qiao, Jian-Jun;  Cheng, Jing-Sheng;  Zhao, Meng;  Kuang, Zheng;  Wang, Xuya;  Martin, J. Andrew;  Stracquadanio, Giovanni;  Yang, Kun;  Bai, Xue;  Zhao, Juan;  Hu, Meng-Long;  Lin, Qiu-Hui;  Zhang, Wen-Qian;  Shen, Ming-Hua;  Chen, Si;  etc
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27