Pedro Escoll
@pescoll.bsky.social
60 followers 78 following 5 posts
How the metabolic crosstalk between pathogenic bacteria and host cells impacts infection? @pasteur.fr
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pescoll.bsky.social
New pre-print in the lab! Beautiful work by Francisco Garcia-Rodriguez in collab with @kamovalenz.bsky.social
and @joaquinbernal.bsky.social : when macrophages are provided with specific nutrients, Salmonella can bypass its requirement of the T3SS to replicate, a process that occurs within the SCV
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
Reposted by Pedro Escoll
pescoll.bsky.social
New preprint in the lab! How the mitochondrial ETC works during infection of human macrophages with #Legionella or #Salmonella? Spoiler: there are some similarities and also pathogen-specific differences. Work led by Francisco Garcia and Paula Martínez, with @cbuch.bsky.social at @pasteur.fr
Figure 5. Working model for pathogen-specific ETC modulations that preserve the ∆ψm in hMDMs. (A) L. pneumophila: T4SS effectors dampen OxPhos early during
infection and preserve the ∆ψm by engaging the reverse mode of the FOF1 -ATPase. The ∆ψm remains high enough that ANT stays in forward mode, limiting cytosolic ATP
drain. All ETC complexes (I-IV) contribute to maintaining the ∆ψm. Complex I is uniquely essential during WT infection. (B) S. Typhimurium: T3SS SPI-1/2 effectors reduce
respiration and preserve the ∆ψm without inducing the reverse mode of the FO F1 -ATPase. Virulent bacteria rely on Complex I-driven electron entry with obligatory Complex
III/IV proton pumping, while Complex II contributes in all infection conditions. Secretion-defective mutants fail to establish the Complex I-dependent configuration.
Reposted by Pedro Escoll
enningalab.bsky.social
🦠 Mycobacteria aren't just tough, they're interior designers! 🦠 Check out our latest #preprint 🚨, led by our PhD student @camimille.bsky.social , where we show that #Mycobacterium tuberculosis builds secret cytoplasmic membranes to adapt its metabolism and sneak past immunity 🤫

Thread coming soon!
biorxiv-microbiol.bsky.social
Nitrate-responsive Mycobacterial Intracytoplasmic Membranes dampen Inflammation during Mycobacterium tuberculosis Infection https://www.biorxiv.org/content/10.1101/2025.09.17.676823v1
Reposted by Pedro Escoll
pasteur.fr
🟢 The Institut Pasteur goes green for Mitochondrial Disease Awareness Week! 🟢
These rare diseases affect 1 in 5,000 people. Mitochondria, the “powerhouses” of our cells, are also thought to play a role in Alzheimer's disease.
Research today, cure tomorrow. 🔬 #WorldMitoWeek2025
© Institut Pasteur
Reposted by Pedro Escoll
abaumler.bsky.social
Hydrogen sulfide production distinguishes Salmonella from close relatives, but its biological significance remains obscure. This study uncovers the secret: Salmonella uses hydrogen sulfide production as a weapon to outcompete E. coli and gain a foothold in the gut.
www.pnas.org/doi/10.1073/...
pescoll.bsky.social
New preprint in the lab! How the mitochondrial ETC works during infection of human macrophages with #Legionella or #Salmonella? Spoiler: there are some similarities and also pathogen-specific differences. Work led by Francisco Garcia and Paula Martínez, with @cbuch.bsky.social at @pasteur.fr
Figure 5. Working model for pathogen-specific ETC modulations that preserve the ∆ψm in hMDMs. (A) L. pneumophila: T4SS effectors dampen OxPhos early during
infection and preserve the ∆ψm by engaging the reverse mode of the FOF1 -ATPase. The ∆ψm remains high enough that ANT stays in forward mode, limiting cytosolic ATP
drain. All ETC complexes (I-IV) contribute to maintaining the ∆ψm. Complex I is uniquely essential during WT infection. (B) S. Typhimurium: T3SS SPI-1/2 effectors reduce
respiration and preserve the ∆ψm without inducing the reverse mode of the FO F1 -ATPase. Virulent bacteria rely on Complex I-driven electron entry with obligatory Complex
III/IV proton pumping, while Complex II contributes in all infection conditions. Secretion-defective mutants fail to establish the Complex I-dependent configuration.
Reposted by Pedro Escoll
biorxiv-microbiol.bsky.social
Complex-I Preserves Mitochondrial Polarization during Infection of Human Macrophages by Secretion-competent Bacteria https://www.biorxiv.org/content/10.1101/2025.09.04.674018v1
Reposted by Pedro Escoll
leighknodler.bsky.social
That concludes GRC Salmonella 2025. What a fantastic meeting it was - topnotch science, great discussions and a wonderful spirit. I am proud to be part of this amazing scientific community.
Reposted by Pedro Escoll
abaumler.bsky.social
A Salmonella T3SS-2 mutant grows fine in spleen macrophages, contradicting tissue culture dogma (PMID: 23236281). This observation was largely ignored, but adding certain carbon sources rescues growth in cultured macrophages, hinting that T3SS-2 may be doing something entirely different in vivo.
pescoll.bsky.social
New pre-print in the lab! Beautiful work by Francisco Garcia-Rodriguez in collab with @kamovalenz.bsky.social
and @joaquinbernal.bsky.social : when macrophages are provided with specific nutrients, Salmonella can bypass its requirement of the T3SS to replicate, a process that occurs within the SCV
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
Reposted by Pedro Escoll
pescoll.bsky.social
New pre-print in the lab! Beautiful work by Francisco Garcia-Rodriguez in collab with @kamovalenz.bsky.social
and @joaquinbernal.bsky.social : when macrophages are provided with specific nutrients, Salmonella can bypass its requirement of the T3SS to replicate, a process that occurs within the SCV
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
Reposted by Pedro Escoll
sfmpathogenesis.bsky.social
New study reveals that Salmonella can replicate inside macrophages even without its T3SSs, if the nutrient conditions are right! Metabolic heterogeneity of host cells is a game-changer in bacterial replication dynamics. #MicroSky

✍️ @pescoll.bsky.social and coll. @pasteur.fr

📖 shorturl.at/a9a06
pescoll.bsky.social
Congrats Lea Jost and team!! Really beautiful paper!!
Reposted by Pedro Escoll
enningalab.bsky.social
Our latest paper is out! Congratulations to @leaswistak.bsky.social et al for this amazing #cryoET work that elucidates the initial stages of #T3SS dependent vacuolar damage during #Shigella infection. We will do a deep-dive later! journals.plos.org/plosbiology/...
Reposted by Pedro Escoll
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
pescoll.bsky.social
New pre-print in the lab! Beautiful work by Francisco Garcia-Rodriguez in collab with @kamovalenz.bsky.social
and @joaquinbernal.bsky.social : when macrophages are provided with specific nutrients, Salmonella can bypass its requirement of the T3SS to replicate, a process that occurs within the SCV
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
Reposted by Pedro Escoll
kamovalenz.bsky.social
Another very cool story I was lucky enough to be involved in! Congrats @pescoll.bsky.social and Francisco! Now let’s hope for a smooth submission!
biorxiv-microbiol.bsky.social
Provision of Preferred Nutrients to Macrophages Enables Salmonella to Replicate Intracellularly Without Relying on Type III Secretion Systems https://www.biorxiv.org/content/10.1101/2025.05.15.653970v1
pescoll.bsky.social
Congrats Jose and team!!!!!