Adrià Sogues

@adriasogues.bsky.social

Structural Microbiologist CNRS permanent researcher at the Institut Pasteur (Paris) Passionate about spores, S-layers, cell envelope & cell division. Former postdoc at VIB-VUB in Brussels (EMBO & MSCA fellow) 🇪🇺🇫🇷🇧🇪🇪🇸🏳️‍🌈

So happy to see this paper finally out 🥳 it took only seven years after the first purification of archaeal peptidoglycan 🤣 Congrats to all the people involved 🥂🍾 And here is the story behind the paper: communities.springernature.com/posts/cracki...

Cracking the Archaeal Cell Wall: How a hydrolase overturned a 50-year-old paradigm

Using bioinformatics, biochemistry, NMR, as well as the newly characterized enzyme ArmA from methanogenic archaea, we revised the existing knowledge on archaeal peptidoglycan structure. At the same ti...

communities.springernature.com

Simonetta Gribaldo@sgribaldo.bsky.social · last wk.

Interested in #archaea, #methane, #cell-envelopes? New paper out @nature.com ! We discovered an enzyme that specifically cleaves the cell wall of methanogens, revealing a new chemical structure of archaeal peptidoglycan, 50 yrs after its first description www.nature.com/articles/s41... #MicroSky 🧵👇

New preprint! We show that the bacterial predator B. bacteriovorus deploys a unipolar Tad nanomachine for irreversible attachment to prey and invasion. @coralietesseur.bsky.social used CRISPRi+microfluidics to overcome barriers associated with essential systems in an obligate predatory lifestyle 🦠

A polarity-controlled Tad nanomachine enables prey invasion in a bacterial predator

Type IV pili are dynamic surface appendages assembled by envelope-spanning nanomachines that mediate diverse bacterial interactions, yet how these systems are adapted to predatory lifestyles remains p...

biorxiv.org

Meet AbpX, a biomatrix protein from the hyperthermophile Pyrodictium abyssi. It forms Ca²⁺-triggered fibrils via donor strand complementation. Using cryo-EM + X-ray, we built a full lattice model and place AbpX in a new TasA superfamily clade. A very nice collaborative project! tinyurl.com/mryzcz4n

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This one deserves it🤩! We used cryo‑EM to identify a new “sporesilk” in Bacillus thuringiensis. The fiber, called A‑ENA, forms an incredibly stable covalent network that increases virulence by keeping the toxic payload and spores in a biofilm-like structure. www.nature.com/articles/s41...

Auto-crosslinking sporesilk fibers promote endospore and Cry toxin clustering - Nature Communications

Authors reveal that protein nanofibrils govern assembly of bacterial spores and extrasporal toxins into insecticidal aggregates. Spores and parasporal bodies are incased in a “sporesilk” matrix that d...

nature.com

Preprint out! That was a really enjoyable collaboration! We report the structure and higher-order assembly of AbpX, a biofilm component in Archaea. And as a bonus, this protein gave me one of the most beautiful crystals I’ve ever had! 🤩💎

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@vinceconticello.bsky.social · 9mo ago

New manuscript alert. Turns out that calcium ion coordination may be a more common mechanism than we initially expected to trigger polymerization of extracellular filaments. @mikesleutel.bsky.social @vikramalva.bsky.social www.biorxiv.org/content/10.6...

S-layer, a (re)blooming field and a fascinating world for both microbiologists and structural biologists. A very complete and up-to-date review of S-layer functions, structure, and biogenesis. Congrats to all the authors!

Tanmay Bharat@tbharat-lab.bsky.social · 11mo ago

Assembly, architecture and functional roles of microbial surface layers Review article published in @natrevmicro.nature.com with @bupbuse.bsky.social, Andriko von Kügelgen and @vikramalva.bsky.social. S-layers are everywhere! www.nature.com/articles/s41...

Thrilled to see our work published in @embojournal.org #asgard #archaea #cytoskeleton #tubulin #FtsZ We sincerely appreciate the constructive peer review and the reviewers’ thoughtful, supportive feedback, which greatly strengthened our work.

The EMBO Journal@embojournal.org · last yr.

Insights into the origins of the #tubulin / #FtsZ superfamily: @syncellbiolab.bsky.social, Pananghat Gayathri et al show that two #Asgard archaeal paralogs OdinFtsZ1 and OdinFtsZ2 form distinct filamental structures, and employ different modes of membrane tethering www.embopress.org/doi/full/10....