<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Greg — HTGAA Spring 2026 :: 2026a-recitation-demo</title><link>https://pages.htgaa.org/2026a/recitation-demo/index.html</link><description>About me I ❤️ microbes!
Contact info Homework Week 1 HW: Principles and Practices Week 2 HW: DNA r/w/e Labs Week 1 Lab: Pipetting Projects Individual Final Project Group Final Project</description><generator>Hugo</generator><language>en</language><atom:link href="https://pages.htgaa.org/2026a/recitation-demo/index.xml" rel="self" type="application/rss+xml"/><item><title>Homework</title><link>https://pages.htgaa.org/2026a/recitation-demo/homework/index.html</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>https://pages.htgaa.org/2026a/recitation-demo/homework/index.html</guid><description>Weekly homework submissions: Week 1 HW: Principles and Practices</description></item><item><title>Labs</title><link>https://pages.htgaa.org/2026a/recitation-demo/labs/index.html</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>https://pages.htgaa.org/2026a/recitation-demo/labs/index.html</guid><description>Lab writeups: Week 1 Lab: Pipetting</description></item><item><title>Projects</title><link>https://pages.htgaa.org/2026a/recitation-demo/projects/index.html</link><pubDate>Mon, 01 Jan 0001 00:00:00 +0000</pubDate><guid>https://pages.htgaa.org/2026a/recitation-demo/projects/index.html</guid><description>Final projects: Individual Final ProjectMindmap mindmap root((HTGAA 2025)) AI + Computational Bio Multi-omics → LLM orchestration Genomics / Transcriptomics / Proteomics / Metabolomics Indirect pulls from DBs; NCBI, UniProt, KEGG, Reactome AI protein/peptide design PepMLM from HuggingFace for peptide generation Structure prediction + docking/MD Binder design: AfDesign / RFdiffusion / EvoBind / BindCraft Automation &amp; coding Google Colab protocols → Opentrons robots Scale experiments, iterate fast Protein Science &amp; Design Amino acids &amp; stereochemistry L vs D amino acids, helix handedness Secondary structure α-helices &amp; variants, β-sheets → aggregation Amyloids as stable materials Model protein eGFP: primary→tertiary structure characterization Genetic Engineering Methods DNA read/write/edit basics Gel electrophoresis, Benchling workflows PCR chemistry Phusion HF Master Mix components/purpose Assembly Gibson Assembly Cloning &amp; expression Vector design → E. coli expression Regulatory Logic &amp; Circuits Post-transcriptional vs post-translational control Endoribonucleases for RNA cleavage vs proteases for protein degradation Cell-Free Systems Why cell-free? Speed - no culturing! Open control of DNA, amino acids, energy, enzymes Toxic proteins OK; supports UAAs Bioproduction &amp; Pathways Carotenoids in E. coli crtE + crtI + crtB → lycopene + crtY → β-carotene Automation mindset What new questions when everything is automated? Phage Engineering: MS2 Lysis protein L N- vs C-terminal roles; C-term TM drives lysis 33-nt non-overlapping window Introduce stop codon to split N from C → DnaJ-independent lysis Preserve overlaps with cp/rep genes Mitochondrial Therapeutics Target: Cyclophilin D “CypD” Block mPTP opening in I/R injury Design peptide inhibitor; plan in vitro/in vivo validation Knowledge Sources NCBI GenBank • UniProt • KEGG • ReactomeGroup Final Project</description></item></channel></rss>