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Constructing protein polyhedra via orthogonal chemical interactions 期刊论文
NATURE, 2020, 578 (7793) : 172-+
作者:  Mooley, K. P.;  Deller, A. T.;  Gottlieb, O.;  Nakar, E.;  Hallinan, G.;  Bourke, S.;  Frail, D. A.;  Horesh, A.;  Corsi, A.;  Hotokezaka, K.
收藏  |  浏览/下载:7/0  |  提交时间:2020/07/03

Many proteins exist naturally as symmetrical homooligomers or homopolymers(1). The emergent structural and functional properties of such protein assemblies have inspired extensive efforts in biomolecular design(2-5). As synthesized by ribosomes, proteins are inherently asymmetric. Thus, they must acquire multiple surface patches that selectively associate to generate the different symmetry elements needed to form higher-order architectures(1,6)-a daunting task for protein design. Here we address this problem using an inorganic chemical approach, whereby multiple modes of protein-protein interactions and symmetry are simultaneously achieved by selective, '  one-pot'  coordination of soft and hard metal ions. We show that a monomeric protein (protomer) appropriately modified with biologically inspired hydroxamate groups and zinc-binding motifs assembles through concurrent Fe3+ and Zn2+ coordination into discrete dodecameric and hexameric cages. Our cages closely resemble natural polyhedral protein architectures(7,8) and are, to our knowledge, unique among designed systems(9-13) in that they possess tightly packed shells devoid of large apertures. At the same time, they can assemble and disassemble in response to diverse stimuli, owing to their heterobimetallic construction on minimal interprotein-bonding footprints. With stoichiometries ranging from [2 Fe:9 Zn:6 protomers] to [8 Fe:21 Zn:12 protomers], these protein cages represent some of the compositionally most complex protein assemblies-or inorganic coordination complexes-obtained by design.


An inorganic chemical approach to biomolecular design is used to generate '  cages'  that can simultaneously promote symmetry and multiple modes of protein interactions.


  
Non-uniform seasonal warming regulates vegetation greening and atmospheric CO2 amplification over northern lands 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (12)
作者:  Li, Zhao;  Xia, Jianyang;  Ahlstrom, Anders;  Rinke, Annette;  Koven, Charles;  Hayes, Daniel J.;  Ji, Duoying;  Zhang, Geli;  Krinner, Gerhard;  Chen, Guangsheng;  Cheng, Wanying;  Dong, Jinwei;  Liang, Junyi;  Moore, John C.;  Jiang, Lifen;  Yan, Liming;  Ciais, Philippe;  Peng, Shushi;  Wang, Ying-Ping;  Xiao, Xiangming;  Shi, Zheng;  McGuire, A. David;  Luo, Yiqi
收藏  |  浏览/下载:8/0  |  提交时间:2019/04/09
slowed down  asymmetric response  non-uniform seasonal warming  atmospheric CO2 amplitude  
Inconsistent Responses of Hot Extremes to Historical Land Use and Cover Change Among the Selected CMIP5 Models 期刊论文
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2018, 123 (7) : 3497-3512
作者:  Li, Xing;  Chen, Haishan;  Wei, Jiangfeng;  Hua, Wenjian;  Sun, Shanlei;  Ma, Hedi;  Li, Xiao;  Li, Jingping
收藏  |  浏览/下载:3/0  |  提交时间:2019/04/09
land use and cover change  asymmetric response  temperature extremes  CMIP5  
The asymmetric response of Yangtze river basin summer rainfall to El Nino/La Nina 期刊论文
ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (2)
作者:  Hardiman, Steven C.;  Dunstone, Nick J.;  Scaife, Adam A.;  Bett, Philip E.;  Li, Chaofan;  Lu, Bo;  Ren, Hong-Li;  Smith, Doug M.;  Stephan, Claudia C.
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
seasonal forecasting  Yangtze basin rainfall  ENSO  asymmetric rainfall response  Indian Ocean