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The Wallace Lab

@swallacelab.bsky.social
86 followers 92 following 28 posts

Combining Biocompatible Chemistry + Synthetic Biology to enhance microbes' abilities to make chemicals sustainably. Vibrant research team at the University of Edinburgh. All views our own.

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The Wallace Lab @swallacelab.bsky.social · 16/07/2026
New paper from our lab, led by @jfcsteele.bsky.social and @biowacko.bsky.social! Here we screen natural enzyme variants with genetic and process optimizations to produce an efficient system to convert lignin-derived waste (guaiacol) into nylon precursor, adipic acid. pubs.acs.org/doi/full/10....
pubs.acs.org
Heterologous Rieske Nonheme Iron Monooxygenases Enable Efficient Microbial Conversion of Lignin Guaiacol to Adipic Acid
Adipic acid (1,6-hexanedioic acid) is a key building block for nylon-6,6, a widely used polymer in the global chemical industry. Current industrial production relies on petrochemical feedstocks and nitric acid oxidation of cyclohexane/cyclohexanol mixtures, releasing nitrous oxide, a potent greenhouse gas. Biotechnological routes offer sustainable alternatives but have been limited by low yields or reliance on multistrain systems. Here we report a one-pot, single-strain microbial process for the efficient conversion of guaiacol─a lignin-derived aromatic─into adipic acid. By integrating heterologous Rieske nonheme iron monooxygenases from Cupriavidus necator N-1 with systematic process optimizations in engineered Escherichia coli, we achieve near-quantitative conversion with 97% yield and titers of 1.5 g/L in aqueous, lab-scale reactions. This work demonstrates a novel and efficient strategy for lignin valorization through engineered microbial synthesis, providing a new sustainable and scalable route to adipic acid.
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John Steele @jfcsteele.bsky.social · 20/03/2026
It feels cheesy when people say this but it really was a privilege to be part of this work. Our recent paper (led by the fantastic Ben Royer @swallacelab.bsky.social) shows how engineered Ecoli can turn the main product of PET plastic breakdown it into an anti-Parkinsons drug (L-DOPA) rdcu.be/e84ZO
rdcu.be
Microbial upcycling of plastic waste to levodopa
Nature Sustainability - The production of high-value chemicals can involve energy-intensive processes, necessitating sustainable production strategies. Here the authors present a circular...
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The Wallace Lab @swallacelab.bsky.social · 10/02/2026
🚨 2 Fully Funded PhD Projects | Open to UK students 🚨 ♻️ We’re recruiting another 2 PhD students to join The Wallace Lab as part of the Carbon-Loop Sustainable Manufacturing Hub, tackling some prolific but unconventional industrial waste streams! Apply by 27th Feb 🗓️ Details below ⬇️ Project 1.
findaphd.com
Bio-upcycling Waste Human Hair into Sustainable Haircare Chemicals at University of Edinburgh on FindAPhD.com
PhD Project - Bio-upcycling Waste Human Hair into Sustainable Haircare Chemicals at University of Edinburgh, listed on FindAPhD.com
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John Steele @jfcsteele.bsky.social · 02/02/2026
You can't think about a sustainable chemical industry without considering our most abundant energy source: sunlight. So how can we engineer microbes to harness this energy for our benefit? rdcu.be/e1VfW
rdcu.be
Interfacing solar energy with bacterial metabolism for sustainable chemical synthesis
Nature Reviews Clean Technology - Phototrophic bacteria could be used for chemical manufacturing from various carbon sources. This Review discusses the pathways, engineering and potential...
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Nature Reviews Clean Technology @natrevcleantech.nature.com · 30/01/2026
dlvr.it
Interfacing solar energy with bacterial metabolism for sustainable chemical synthesis
Nature Reviews Clean Technology, Published online: 29 January 2026; doi:10.1038/s44359-025-00141-2Phototrophic bacteria could be used for chemical manufacturing from various carbon sources. This Review discusses the pathways, engineering and potential application of solar chemical biosynthesis.
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Kitty Clouston @kittyclouston.bsky.social · 30/01/2026
🔬 Our shiny new mega review is finally published! If you’re interested in photosynthesis, engineering biology and sustainable chemistry, check it out ⬇️
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The Wallace Lab @swallacelab.bsky.social · 30/01/2026
🚨 PhD opportunity | Fully funded | Open worldwide 🚨 ♻️ We’re recruiting a fully funded PhD student to join The Wallace Lab at the University of Edinburgh as part of the Carbon-Loop Hub, a £14M national programme re-imagining how chemicals are made. Apply by 20th Feb 2026 🗓️ Details below ⬇️
findaphd.com
Microbial Systems for the Bio-Upcycling of Industrial Waste Streams into High-Value Chemicals at University of Edinburgh on FindAPhD.com
PhD Project - Microbial Systems for the Bio-Upcycling of Industrial Waste Streams into High-Value Chemicals at University of Edinburgh, listed on FindAPhD.com
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The Wallace Lab @swallacelab.bsky.social · 30/01/2026
🚀 New review paper out! We explore the current achievements and future potential of solar-driven bacterial metabolism to unlock greener routes to chemical synthesis, spotlighting opportunities and challenges for light-powered microbial biomanufacturing 🌞🔬
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The Wallace Lab @swallacelab.bsky.social · 29/10/2025
The Wallace Lab is expanding in 2026, with five new Postdoctoral Research Associate positions now open. If you're passionate about engineering biology for sustainability, we'd love to hear from you! 🧬 ♻️ Deadline: 12th November 2025, details below ⬇️
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The Wallace Lab @swallacelab.bsky.social · 29/10/2025
The Wallace Lab is expanding in 2026, with five new Postdoctoral Research Associate positions now open. If you're passionate about engineering biology for sustainability, we'd love to hear from you! 🧬 ♻️ Deadline: 12th November 2025, details below ⬇️
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MIT Technology Review @technologyreview.com · 29/09/2025
The new edition of our annual list of Climate Tech Companies to Watch will feature startups and established businesses working to decarbonize transportation, heavy industry, energy, and more.
technologyreview.com
Coming soon: Our 2025 list of Climate Tech Companies to Watch
The new edition of our annual list features startups and established businesses working to decarbonize transportation, heavy industry, energy, and more.
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The Wallace Lab @swallacelab.bsky.social · 23/09/2025
Ever wondered where your paracetamol comes from? Spoiler: crude oil. In this study – led by Nick Johnson from our lab in collaboration with @astra-zeneca.bsky.social – we show how biology and chemistry can work together to create a more sustainable alternative. (1/n) www.nature.com/articles/s41...
nature.com
A biocompatible Lossen rearrangement in Escherichia coli - Nature Chemistry
Biocompatible chemistry merges chemo-catalytic reactions with cellular metabolism for sustainable small-molecule synthesis. Now a biocompatible Lossen rearrangement has been demonstrated to control ba...
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The Wallace Lab @swallacelab.bsky.social · 23/09/2025
🚀 Our new lab website is live! Visit wallacelab.bio to learn more about our team, our mission, and our latest work. Most importantly, get in touch to explore opportunities to connect and collaborate. The future of chemistry is microbial.
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Johnston Lab @johnstonlab.bsky.social · 19/08/2025
Great news – this paper has now been published in ACS Catalysis! Huge congratulations again to Wylan (@chaoticmetazoan.bsky.social), and thanks to our collaborators in the Wallace Lab (@swallacelab.bsky.social) Check it out here: pubs.acs.org/doi/10.1021/...
pubs.acs.org
Concurrent Linear Deracemization of Secondary Benzylic Alcohols via Simultaneous Photocatalysis and Whole-cell Biocatalysis
Photobiocatalysis enables remarkable synthetic transformations by combining the exquisite stereoselectivity of enzymes with the mild generation of high-energy intermediates by photocatalysis, but prac...
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Tom Ellis @proftomellis.bsky.social · 24/06/2025
From the same team that made vanilla for ice cream using E.coli that digest plastic waste.
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Nature Chemistry @natchem.nature.com · 24/06/2025
Prof. Stephen Wallace: “What this technology shows is that by merging chemistry and biology in this way for the first time, we can make paracetamol more sustainably and clean up plastic waste from the environment at the same time.” www.theguardian.com/science/2025...
theguardian.com
Scientists use bacteria to turn plastic waste into paracetamol
Genetically modified E coli used to create painkillers from material produced from plastic bottles
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Eric Topol @erictopol.bsky.social · 23/06/2025
This is wild! Engineering E. coli bacteria to turn plastic waste into paracetamol (Tylenol) www.nature.com/articles/s41... www.nature.com/articles/s41...
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Edinburgh Innovations @edinnovations.bsky.social · 24/06/2025
Scientists at @edinburgh-uni.bsky.social have succeeded in turning plastic bottles into paracetamol, a study in Nature Chemistry shows. ➡️ edinburgh-innovations.ed.ac.uk/news/microbe...
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John Steele @jfcsteele.bsky.social · 23/06/2025
Always exciting when research from the lab is disseminated for the public! @theguardian.com have reported on @swallacelab.bsky.social paper turning plastic into paracetamol using engineered bacteria tinyurl.com/32hxnwsd (original publication rdcu.be/esYfF)
theguardian.com
Scientists use bacteria to turn plastic waste into paracetamol
Genetically modified E coli used to create painkillers from material produced from plastic bottles
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