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Neuropixels 2.0: A miniaturized high-density probe for stable, long-term brain recordings 期刊论文
Science, 2021
作者:  Nicholas A. Steinmetz;  Cagatay Aydin;  Anna Lebedeva;  Michael Okun;  Marius Pachitariu;  Marius Bauza;  Maxime Beau;  Jai Bhagat;  Claudia Böhm;  Martijn Broux;  Susu Chen;  Jennifer Colonell;  Richard J. Gardner;  Bill Karsh;  Fabian Kloosterman;  Dimitar Kostadinov;  Carolina Mora-Lopez;  John O’Callaghan;  Junchol Park;  Jan Putzeys;  Britton Sauerbrei;  Rik J. J. van Daal;  Abraham Z. Vollan;  Shiwei Wang;  Marleen Welkenhuysen;  Zhiwen Ye;  Joshua T. Dudman;  Barundeb Dutta;  Adam W. Hantman;  Kenneth D. Harris;  Albert K. Lee;  Edvard I. Moser;  John O’Keefe;  Alfonso Renart;  Karel Svoboda;  Michael Häusser;  Sebastian Haesler;  Matteo Carandini;  Timothy D. Harris
收藏  |  浏览/下载:14/0  |  提交时间:2021/04/20
An open-source drug discovery platform enables ultra-large virtual screens 期刊论文
NATURE, 2020, 580 (7805) : 663-+
作者:  Peron, Simon;  Pancholi, Ravi;  Voelcker, Bettina;  Wittenbach, Jason D.;  olafsdottir, H. Freyja;  Freeman, Jeremy;  Svoboda, Karel
收藏  |  浏览/下载:33/0  |  提交时间:2020/07/03

VirtualFlow, an open-source drug discovery platform, enables the efficient preparation and virtual screening of ultra-large ligand libraries to identify molecules that bind with high affinity to target proteins.


On average, an approved drug currently costs US$2-3 billion and takes more than 10 years to develop(1). In part, this is due to expensive and time-consuming wet-laboratory experiments, poor initial hit compounds and the high attrition rates in the (pre-)clinical phases. Structure-based virtual screening has the potential to mitigate these problems. With structure-based virtual screening, the quality of the hits improves with the number of compounds screened(2). However, despite the fact that large databases of compounds exist, the ability to carry out large-scale structure-based virtual screening on computer clusters in an accessible, efficient and flexible manner has remained difficult. Here we describe VirtualFlow, a highly automated and versatile open-source platform with perfect scaling behaviour that is able to prepare and efficiently screen ultra-large libraries of compounds. VirtualFlow is able to use a variety of the most powerful docking programs. Using VirtualFlow, we prepared one of the largest and freely available ready-to-dock ligand libraries, with more than 1.4 billion commercially available molecules. To demonstrate the power of VirtualFlow, we screened more than 1 billion compounds and identified a set of structurally diverse molecules that bind to KEAP1 with submicromolar affinity. One of the lead inhibitors (iKeap1) engages KEAP1 with nanomolar affinity (dissociation constant (K-d) = 114 nM) and disrupts the interaction between KEAP1 and the transcription factor NRF2. This illustrates the potential of VirtualFlow to access vast regions of the chemical space and identify molecules that bind with high affinity to target proteins.


  
Ball-and-chain inactivation in a calcium-gated potassium channel 期刊论文
NATURE, 2020, 580 (7802) : 288-+
作者:  Peron, Simon;  Pancholi, Ravi;  Voelcker, Bettina;  Wittenbach, Jason D.;  olafsdottir, H. Freyja;  Freeman, Jeremy;  Svoboda, Karel
收藏  |  浏览/下载:21/0  |  提交时间:2020/07/03

Cryo-electron microscopy structures and molecular dynamics simulations of the calcium-activated potassium channel MthK from Methanobacterium thermoautotrophicum are used to show that gating of this channel involves a ball-and-chain inactivation mechanism mediated by a previously unresolved N-terminal peptide.


Inactivation is the process by which ion channels terminate ion flux through their pores while the opening stimulus is still present(1). In neurons, inactivation of both sodium and potassium channels is crucial for the generation of action potentials and regulation of firing frequency(1,2). A cytoplasmic domain of either the channel or an accessory subunit is thought to plug the open pore to inactivate the channel via a '  ball-and-chain'  mechanism(3-7). Here we use cryo-electron microscopy to identify the molecular gating mechanism in calcium-activated potassium channels by obtaining structures of the MthK channel from Methanobacterium thermoautotrophicum-a purely calcium-gated and inactivating channel-in a lipid environment. In the absence of Ca2+, we obtained a single structure in a closed state, which was shown by atomistic simulations to be highly flexible in lipid bilayers at ambient temperature, with large rocking motions of the gating ring and bending of pore-lining helices. In Ca2+-bound conditions, we obtained several structures, including multiple open-inactivated conformations, further indication of a highly dynamic protein. These different channel conformations are distinguished by rocking of the gating rings with respect to the transmembrane region, indicating symmetry breakage across the channel. Furthermore, in all conformations displaying open channel pores, the N terminus of one subunit of the channel tetramer sticks into the pore and plugs it, with free energy simulations showing that this is a strong interaction. Deletion of this N terminus leads to functionally non-inactivating channels and structures of open states without a pore plug, indicating that this previously unresolved N-terminal peptide is responsible for a ball-and-chain inactivation mechanism.


  
Bright and photostable chemigenetic indicators for extended in vivo voltage imaging 期刊论文
SCIENCE, 2019, 365 (6454) : 699-+
作者:  Abdelfattah, Ahmed S.;  Kawashima, Takashi;  Singh, Amrita;  Novak, Ondrej;  Liu, Hui;  Shuai, Yichun;  Huang, Yi-Chieh;  Campagnola, Luke;  Seeman, Stephanie C.;  Yu, Jianing;  Zheng, Jihong;  Grimm, Jonathan B.;  Patel, Ronak;  Friedrich, Johannes;  Mensh, Brett D.;  Paninski, Liam;  Macklin, John J.;  Murphy, Gabe J.;  Podgorski, Kaspar;  Lin, Bei-Jung;  Chen, Tsai-Wen;  Turner, Glenn C.;  Liu, Zhe;  Koyama, Minoru;  Svoboda, Karel;  Ahrens, Misha B.;  Lavis, Luke D.;  Schreiter, Eric R.
收藏  |  浏览/下载:18/0  |  提交时间:2019/11/27