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  3. Quantifying structural relationships of metal-binding sites suggests origins of biological electron transferiScience AdvancesC2022/01/14j [NEW!]@¦ˆų—pPDBƒf[ƒ^—į1a7di‰ŗŒfjE1a7eE2zwgE3awzE3ax0E1gteE1vjwi‰ŗŒfj‚Ł‚©

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  4. ”ŒŽ‚Ģ•ŖŽq 266: ƒIƒŠƒS“œ“]ˆŚy‘fiOligosaccharyltransferasejiPDBjC2022/02j [NEW!] b Molecule of the MonthiPDBj

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  5. Dual Engineering of Olivetolic Acid Cyclase and Tetraketide Synthase to Generate Longer Alkyl-Chain Olivetolic Acid AnalogsiOrganic LettersC2021/12/23j [NEW!]@¦2022/02/02ŒöŠJ7w6di‰ŗŒfjE7w6eE7w6fE7w6g

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  6. Structural basis for substrate binding and catalysis by a self-alkylating ribozymeiNature Chemical BiologyC2022/01/20j [NEW!]@¦2022/01/19ŒöŠJƒf[ƒ^6xjqi‰ŗŒfjE6xjwE6xjyE6xjz

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  7. Structure of the Mon1-Ccz1 complex reveals molecular basis of membrane binding for Rab7 activationiPNASC2022/02/08j [NEW!]@¦2022/02/09ŒöŠJ7qlai‰ŗŒfj

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  8. ©’Žƒzƒ‹ƒ‚ƒ“‚Ģ¶‡¬‚šŠh—‚·‚é‰į‚Ģ”­ˆē‘jŠQÜ‚Ģ”­Œ©@`ŠĀ‹«‚É—D‚µ‚¢”_–ņ‚ĢŠJ”­‚ÉŒü‚Ƃā`i“ś–{ˆć—ĆŒ¤‹†ŠJ”­‹@\C2022/02/17j [NEW!]@¦gNoppera-bo‚Ģ–¼‘O‚Ģ—R—ˆ‚ĶA‚±‚Ģƒ^ƒ“ƒpƒNŽæ‚Ģ‹@”\‚ŖŠ®‘S‚ÉŽø‚ķ‚ź‚½ƒVƒ‡ƒEƒWƒ‡ƒEƒoƒG‚Å‚ĶA–{—ˆćó‚Å”­’B‚·‚é‚ׂ«•\”ē‚Ģ\‘¢‚ŖŒ`¬‚³‚ź‚ø‚Ɂuƒcƒ‹ƒcƒ‹v‚ĢŒ©‚½–Ś‚É‚Č‚é‚½‚߁hB2022/01/26ŒöŠJ7ebtE7ebuE7ebvE7ebwi‰ŗŒfj

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  9. Identification of a novel target site for ATP-independent ERK2 inhibitorsiBiochemical and Biophysical Research CommunicationsC2022/02/19j [NEW!]@¦2022/02/23ŒöŠJƒf[ƒ^7w5oi‰ŗŒfj

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  10. High-pH structure of EmrE reveals the mechanism of proton-coupled substrate transportiNature CommunicationsC2022/02/18j [NEW!]@¦2022/03/02ŒöŠJƒf[ƒ^7sfqi‰ŗŒfj

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