
Justin Peruzzi
@jperuzz
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synthetic biologist interested in membrane biophysics & protein design | tech dev @ai_proteins | formerly @NUSynbio @NehaPKamat Lab, @UVAEngineers #gohoos
Boston, MA
Joined August 2016
RT @bahl_lab: We've got some very exciting news to share!. and here's a 🧵 about the journey from academia to @AI_P….
businesswire.com
AI Proteins, Inc., a biotechnology company that utilizes computational de novo protein design to create therapeutic miniproteins, today announced that it has...
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RT @ACSSynBio: #WeekendReading! Let's see if we can make #CellFreeSaturday happen 👀. Clark, Voigt, and Jewett coming in with a FANTASTIC Re….
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RT @NorthwesternEng: The advances produced by Professors Neha Kamat and Josh Leonard “get us one step closer to the ultimate goal of target….
mccormick.northwestern.edu
The advances produced by Professors Neha Kamat and Josh Leonard “get us one step closer to the ultimate goal of targeted biological drug delivery.”
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RT @taylor_gunnels: Happy to share our latest paper! So fun co-leading with @jperuzz and so rewarding to work with a group of great people….
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RT @NehaPKamat: Excited to share our work @NatureComms on biomembranes, lipid rafts, drug delivery, and extracellular vesicles (EVs). We us….
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RT @TheLeonardLab: One, two, Threehee EV surface proteins! If you’ve ever wanted to precisely count the number of proteins on the surface o….
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RT @NorthwesternEng: Research from Professor Neha Kamat uncovers how differences in the thickness of biological membranes and the proteins….
mccormick.northwestern.edu
Recent research from Professor Neha Kamat uncovers how differences in the thickness of biological membranes and the proteins within them can have a big impact on the protein’s ability to insert and...
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RT @synbio_papers: Improving Cell-Free Expression of Model Membrane Proteins by Tuning Ribosome Cotranslational Membrane Association and Na….
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RT @ja_steinkuehler: Work with us at the intersection of Neuromorphic Engineering and Synthetic Biology as doctoral student to recreate the….
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RT @bahl_lab: 🎉 I'm thrilled to announce the formation of @AI_Proteins Scientific Advisory Board, an exceptional group of scientists, physi….
businesswire.com
AI Proteins, Inc., a growing biotechnology company that utilizes computational de novo protein design to create novel therapeutic miniproteins, today announc...
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RT @NehaPKamat: Our paper, led by the talented @jperuzz, recapitulating a two-component system (TCS) outside the cell is out in @PNASNews….
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Huge shout out to the team!! Co-led w @taylor_gunnels @HaileyEdelstein Peilong Lu @UWproteindesign @TheLeonardLab @NehaPKamat @NUSynBio.
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Very excited to share our latest #lipidtime #synbio project! What started as a fun bioinformatic-based question to explore when I couldn't be in lab during COVID, turned out to be a cool & robust method to load proteins into extracellular vesicles. Check it out!!.
Have you ever wondered how to improve loading of protein cargo into extracellular vesicles? Excited to share our latest work exploring how lipid-protein interactions may be leveraged to direct proteins into extracellular vesicles! 🧵 1/6
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RT @NehaPKamat: I’m proud to share some recent accomplishments of our undergraduate researcher, @lucasesantanna, who received the @NSF #GRF….
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RT @ja_steinkuehler: Many people treat membrane protein synthesis like a black box. We show that, by using cell free expression, you can ac….
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RT @MichaelCJewett: What's in your extract? Cell-free systems from crude cell-extracts are used in manufacturing, sensing, and education.….
pubs.acs.org
Cell-free systems derived from crude cell extracts have developed into tools for gene expression, with applications in prototyping, biosensing, and protein production. Key to the development of these...
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