
Weiwei HE
@WeiweiHe_123
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Biophysics, AI4Science, Machine learning, Guest editor @Biomol_MDPI, Postdoc @KirmizialtinL lab, Ph.D. @nyuchemistry with @skirmizialtin
New York, NY
Joined April 2016
💡 Call for Papers – @Biomol_MDPI Special Issue.📖 Nucleic Acid–Lipid Interactions: Bridging Molecular Insights with Therapeutic Applications.🗓 Deadline: 31 Jan 2026. 🔗 Full details: We look forward to receiving your valuable contributions!
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RT @MeixiaZhao: We’ll be hosting the Bioinformatics Summer Workshop from August 11–15. The workshop is completely free and held 100% online….
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We designed a reversible, photoswitchable RNA modification strategy using both experimental and computational methods. Light-induced trans–cis isomerization of an engineered photoswitch enables remote control over RNA structure and function for therapeutic applications.
Designing Reversible Photoswitching Azobenzene-Modified Nucleotide for Controlling Biological Function | Journal of the American Chemical Society
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RT @UWanglab: Super excited to share that our recent work on photoswitchable oligonucleotide is online now! Check it out.
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Great to see our HB-CUFIX force field being validated across different systems! HB-CUFIX, developed to improve the accuracy of structural dynamics in RNA simulations, is available here: [10.1021/acs.jpclett.2c00359].
Our paper on the use of enhanced sampling to compare different RNA force fields, including HB-CUFIX, is now available. Kudos to Akshaya on the great work.
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In this work, we resolve single-stranded RNA structures by coupling atomistic simulations with FRET and SAXS. Our approach, enabling high-resolution insights into solution studies, identifies the sequence-dependent conformational states of A-/C-rich and poly-rU ssRNAs.
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In this work we have systematically demonstrated the factors inducing the spontaneous condensation of DNA within the confines of membrane. It is potentially helpful for the gene vector design.
Check out our recent work studying the mechanism of membrane induced DNA condensation. Mechanism of Cationic Lipid Induced DNA Condensation: Lipid–DNA Coordination and Divalent Cation Charge Fluctuations | Biomacromolecules
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RT @KirmizialtinL: Check out our new publication on the mechanism of Water Harvesting using MOF-303.
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RT @BussiGio: You missed the @cecamEvents workshop on #RNA dynamics organized in June 2023 in Paris by @BonomiMax @bussigio @evi_gkeka and ….
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RT @KirmizialtinL: Pleased to share our new article on the solution structure of the SARS-CoV-2 pseudoknot from SAXS-driven molecular dyna….
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Happy to share our computational study on the mechanisms driving sequence-dependent DNA self-assembly and condensation. It has been selected to feature on the cover.
#HighlightOfTheWeek Simulations to investigate DNA–DNA interactions in the presence of Mg ions. #compchem.
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RT @KirmizialtinL: Happy to share our computational work on the mechanism of different faces of DNA condensation.
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RT @GroupTuckerman: With the Kirmizialtin group during my visit to NYU Abu Dhabi. And yes, on the first day of summer, it feels like a sau….
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RT @Huang_Nanopore: 🎉New Huang lab pubilcation at ACS Nano. Discrimination of Ribonucleoside Mono-, Di-, and Triphosphates Using an Enginee….
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RT @GroupTuckerman: Our new approach for predicting structures of molecular crystal hydrates, inspired by the WaterMap approach and includi….
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RT @ProfDaveLeigh: In @Nature, a tape-reading molecule that reads stereochemistry rather than nucleotide codons😃 Co….
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RT @NobelPrize: BREAKING NEWS: .The Royal Swedish Academy of Sciences has decided to award the 2022 #NobelPrize in Chemistry to Carolyn R.….
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