Shota Suzuki
@structure_bio36Science Tokyo. Project assistant professor Structural biology/GPCR/Channel/ATPase/RNA/Cryo-EM/MD-simulation (beginner)/Structural based drug design
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We are happy to share our latest paper published in Nature Communications. We report the structures of HCA2-Gi and HCA3-Gi with multiple compounds. See 👇"Structural basis of hydroxycarboxylic acid receptor signaling mechanisms through ligand binding" nature.com/articles/s4146…
Happy to share our work on the AlphaFold-based analysis of the conformational dynamics of CNNM/CorC Mg2+ transporters. Great collaboration with Miki lab at Kyoto Univ and Wang lab at Fudan. Congrats to Ma and all others! Here is the downloadable link. sciencedirect.com/science/articl…
@3DRNA_CryoEM: Cryo-EM structure of raiA ncRNA from Clostridium reveals a new RNA 3D fold sciencedirect.com/science/articl… @JMolBiol Thanks @SOLARIS_science for the great microscope facility. 3D model illustration made with @proteinimaging
あまりにもPCRうまくいかないので増幅祈願できる祠つくった。両脇にいるのはポリメラーゼ。サーマルサイクラーにいれる前にチューブをセットしてお祈りする。
"Structural basis for ligand recognition of the human hydroxycarboxylic acid receptor HCAR3" cell.com/cell-reports/f…
Excited to share the first membrane protein structure from our lab! We found that TMEM63B acts as a scramblase, triggered by membrane changes like thickness and curvature. nature.com/articles/s4159…
論文が @NatureComms に掲載されました。ウニ幼生に光をあてるとウンチをする!という発見から光が肛門開口を制御している仕組みを明らかにした仕事です nature.com/articles/s4146…
Our lab @MRC_LMB is seeking a passionate PhD student to explore transcription-coupled splicing! Join our team for an exciting project to understand human gene regulation 🧬 Feel free to get in touch directly #PhD #cryoEM #biochemistry
ColabFoldを使った簡単なタンパク質構造予測方法のプロトコル論文がリリースされました。私はlocal版の部分と"Conformation sampling of ASCT2" (P.15)あたりの記述を担当しました。対象タンパク質は違いますが、この部分の日本語記事は qiita.com/Ag_smith/items… をご参照ください。
Learn how to predict mono-, multi-mers and conformations with the ColabFold-AlphaFold2 protocol now out in @NatureProtocols Right in time for the Nobel Prize! It covers workflows for beginners and advanced concepts. 🚀rdcu.be/dWViQ 📄nature.com/articles/s4159… 1/6🧵
"Ever wondered how α-latrotoxin, the black widow spider's 🕷️ neurotoxin, turns into a cation-selective channel? Check out our latest manuscript! rdcu.be/dWez3 @NatureComms #Neuroscience #Toxin #cryoEM @Sfb1348 @uni_muenster
Have you ever wanted to design protein binders with ease? Today we present 𝑩𝒊𝒏𝒅𝑪𝒓𝒂𝒇𝒕, a user-friendly and open-source pipeline that allows to anyone to create protein binders de novo with high experimental success rates. @befcorreia @sokrypton biorxiv.org/content/10.110…
CryoEM structure of the human Connexin-43 gap junction channel (PDB code: 8QKO) #scivis #molecularart #sciart @dzine_ai @proteinimaging behance.net/gallery/209149…
Improved higher resolution cryo-EM structures reveal the binding modes of hERG channel inhibitors | Structure cell.com/structure/full…
M1依田くん、柳川准教授らの一分子観察の技術開発に関する論文成果がBPPB誌に掲載されました。 doi.org/10.2142/biophy… 膜表面の受容体タンパク質を標識するF-HiBiT法と、4種類の蛍光色素を一分子追跡できる顕微鏡システムを開発しました。今後、シグナル因子との同時計測による展開が楽しみです。
医薬品開発の非臨床試験において、動物モデルの使用にはやはり限界があると、外的妥当性の観点から主張したReview論文。 動物とヒトの種差の問題はよく耳にするが、どこまで解決できて、限界はどこにあるのかについて深堀していて勉強になった。 …nslational-medicine.biomedcentral.com/articles/10.11…
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