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Origin of complexity in haemoglobin evolution 期刊论文
NATURE, 2020
作者:  Cheema, Suraj S.;  Kwon, Daewoong;  Shanker, Nirmaan;  dos Reis, Roberto;  Hsu, Shang-Lin;  Xiao, Jun;  Zhang, Haigang;  Wagner, Ryan;  Datar, Adhiraj;  McCarter, Margaret R.;  Serrao, Claudy R.;  Yadav, Ajay K.;  Karbasian, Golnaz;  Hsu, Cheng-Hsiang;  Tan, Ava J.;  Wang, Li-Chen;  Thakare, Vishal;  Zhang, Xiang;  Mehta, Apurva;  Karapetrova, Evguenia;  Chopdekar, Rajesh, V;  Shafer, Padraic;  Arenholz, Elke;  Hu, Chenming;  Proksch, Roger;  Ramesh, Ramamoorthy;  Ciston, Jim;  Salahuddin, Sayeef
收藏  |  浏览/下载:50/0  |  提交时间:2020/07/03

Most proteins associate into multimeric complexes with specific architectures(1,2), which often have functional properties such as cooperative ligand binding or allosteric regulation(3). No detailed knowledge is available about how any multimer and its functions arose during evolution. Here we use ancestral protein reconstruction and biophysical assays to elucidate the origins of vertebrate haemoglobin, a heterotetramer of paralogous alpha- and beta-subunits that mediates respiratory oxygen transport and exchange by cooperatively binding oxygen with moderate affinity. We show that modern haemoglobin evolved from an ancient monomer and characterize the historical '  missing link'  through which the modern tetramer evolved-a noncooperative homodimer with high oxygen affinity that existed before the gene duplication that generated distinct alpha- and beta-subunits. Reintroducing just two post-duplication historical substitutions into the ancestral protein is sufficient to cause strong tetramerization by creating favourable contacts with more ancient residues on the opposing subunit. These surface substitutions markedly reduce oxygen affinity and even confer cooperativity, because an ancient linkage between the oxygen binding site and the multimerization interface was already an intrinsic feature of the protein'  s structure. Our findings establish that evolution can produce new complex molecular structures and functions via simple genetic mechanisms that recruit existing biophysical features into higher-level architectures.


Experimental analysis of reconstructed ancestral globins reveals that haemoglobin'  s complex tetrameric structure and oxygen-binding functions evolved by simple genetic and biophysical mechanisms.


  
Developing Robust Strategies for Climate Change and Other Risks: A Water Utility Framework 科技报告
来源:Rand Corporation. 出版年: 2014
作者:  David G. Groves;  Jordan R. Fischbach;  Nidhi Kalra;  Edmundo Molina-Perez;  David Yates;  David Purkey;  Amanda Fencl;  Vishal K. Mehta;  Ben Wright;  Grantley Pyke
收藏  |  浏览/下载:32/0  |  提交时间:2019/04/05
Alumni  Global Climate Change  Water Resources Management  Water Supply  Robust Decision Making  Students  
ꙸĿ뎈Ŀn Nolte, Annalijn Conklin, John L. Adams, MatthiaRonald G. MAddressing Climate Change in Local Water Agency Plans: Demonstrating a Simplified Robust Decision Making Approach in the California Sierra Foothills 科技报告
来源:Rand Corporation. 出版年: 2013
作者:  David G. Groves;  Evan Bloom;  David R. Johnson;  David Yates;  Vishal K. Mehta
收藏  |  浏览/下载:8/0  |  提交时间:2019/04/05
Global Climate Change  Water Resources Management  Robust Decision Making  
Addressing Climate Change in Local Water Agency Plans: Demonstrating a Simplified Robust Decision Making Approach in the California Sierra Foothills 科技报告
来源:Rand Corporation. 出版年: 2013
作者:  David G. Groves;  Evan Bloom;  David R. Johnson;  David Yates;  Vishal K. Mehta
收藏  |  浏览/下载:5/0  |  提交时间:2019/04/05
Global Climate Change  Water Resources Management  Robust Decision Making