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Femtosecond-to-millisecond structural changes in a light-driven sodium pump 期刊论文
NATURE, 2020, 583 (7815) : 314-+
作者:  Moore, Luiza;  Leongamornlert, Daniel;  Coorens, Tim H. H.;  Sanders, Mathijs A.;  Ellis, Peter;  Dentro, Stefan C.;  Dawson, Kevin J.;  Butler, Tim;  Rahbari, Raheleh;  Mitchell, Thomas J.;  Maura, Francesco;  Nangalia, Jyoti;  Tarpey, Patrick S.;  Brunner, Simon F.;  Lee-Six, Henry;  Hooks, Yvette;  Moody, Sarah;  Mahbubani, Krishnaa T.;  Jimenez-Linan, Mercedes;  Brosens, Jan J.;  Iacobuzio-Donahue, Christine A.;  Martincorena, Inigo;  Saeb-Parsy, Kourosh;  Campbell, Peter J.;  Stratton, Michael R.
收藏  |  浏览/下载:17/0  |  提交时间:2020/07/03

Light-driven sodium pumps actively transport small cations across cellular membranes(1). These pumps are used by microorganisms to convert light into membrane potential and have become useful optogenetic tools with applications in neuroscience. Although the resting state structures of the prototypical sodium pump Krokinobacter eikastus rhodopsin 2 (KR2) have been solved(2,3), it is unclear how structural alterations overtime allow sodium to be translocated against a concentration gradient. Here, using the Swiss X-ray Free Electron Laser(4), we have collected serial crystallographic data at ten pump-probe delays from femtoseconds to milliseconds. High-resolution structural snapshots throughout the KR2 photocycle show how retinal isomerization is completed on the femtosecond timescale and changes the local structure of the binding pocket in the early nanoseconds. Subsequent rearrangements and deprotonation of the retinal Schiff base open an electrostatic gate in microseconds. Structural and spectroscopic data, in combination with quantum chemical calculations, indicate that a sodium ion bind stransiently close to the retinal within one millisecond. In the last structural intermediate, at 20 milliseconds after activation, we identified a potential second sodium-binding site close to the extracellular exit. These results provide direct molecular insight into the dynamics of active cation transport across biological membranes.


  
Investigating the Nutrient Landscape in a Coastal Upwelling Region and Its Relationship to the Biological Carbon Pump 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2020, 47 (6)
作者:  Stukel, M. R.;  Barbeau, K. A.
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
biological pump  iron  nitrate  nutrients  marine biogeochemistry  carbon export  
The nature of deep overturning and reconfigurations of the silicon cycle across the last deglaciation 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Dumont, M.;  Pichevin, L.;  Geibert, W.;  Crosta, X.;  Michel, E.;  Moreton, S.;  Dobby, K.;  Ganeshram, R.
收藏  |  浏览/下载:6/0  |  提交时间:2020/05/13
Vertical eddy iron fluxes support primary production in the open Southern Ocean 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Uchida, Takaya;  Balwada, Dhruv;  Abernathey, Ryan P.;  McKinley, Galen A.;  Smith, Shafer K.;  Levy, Marina
收藏  |  浏览/下载:5/0  |  提交时间:2020/05/13
Evolutionary temperature compensation of carbon fixation in marine phytoplankton 期刊论文
ECOLOGY LETTERS, 2020, 23 (4) : 722-733
作者:  Barton, Samuel;  Jenkins, James;  Buckling, Angus;  Schaum, C. -Elisa;  Smirnoff, Nicholas;  Raven, John A.;  Yvon-Durocher, Gabriel
收藏  |  浏览/下载:10/0  |  提交时间:2020/07/02
climate change  evolutionary ecology  metabolism  phytoplankton physiology  thermal performance curves