How does Coxiella burnetii keep host cells alive for intracellular replication?
Zhang et al. reveal that the Dot/Icm effector CubL1 acts as an E3 ubiquitin ligase to inhibit host cell death by targeting an apoptosis nuclease.
🔗 doi.org/10.1002/mlf2...
How does Coxiella burnetii keep host cells alive for intracellular replication?
Zhang et al. reveal that the Dot/Icm effector CubL1 acts as an E3 ubiquitin ligase to inhibit host cell death by targeting an apoptosis nuclease.
🔗 doi.org/10.1002/mlf2...
New #mLife perspective introduces “cure-related occult HBV infection,” highlighting cccDNA persistence, HBV reactivation risk, and the need for long-term monitoring after HBsAg loss.
doi.org/10.1002/mlf2...
New #mLife perspective introduces “cure-related occult HBV infection,” highlighting cccDNA persistence, HBV reactivation risk, and the need for long-term monitoring after HBsAg loss.
doi.org/10.1002/mlf2...
#T6SS #TseMt
Details: doi.org/10.1002/mlf2...
#T6SS #TseMt
Details: doi.org/10.1002/mlf2...
#mLife from @taogd.bsky.social lab: H4-T6SS becomes an active antibacterial machine when switched on, and TseMt is a pore-forming toxin with a 3.0 Å structure and a dedicated delivery route. #T6SS
doi.org/10.1002/mlf2...
#mLife from @taogd.bsky.social lab: H4-T6SS becomes an active antibacterial machine when switched on, and TseMt is a pore-forming toxin with a 3.0 Å structure and a dedicated delivery route. #T6SS
doi.org/10.1002/mlf2...
Explore new work on HBV cure, EBV models, bacterial effectors, AMR, microbial motility, ecosystem retrogression, iodate reduction, Southern Ocean bacteria, and coastal viromes.
doi.org/10.1002/mlf2...
Explore new work on HBV cure, EBV models, bacterial effectors, AMR, microbial motility, ecosystem retrogression, iodate reduction, Southern Ocean bacteria, and coastal viromes.
doi.org/10.1002/mlf2...
Aug 10 2026 22:08 UTC
#managelife #awaken-finance #real-estate-tokenization #ai-powered-financing #mlife-tge #web3 #on-chain-real-estate #institutional-capital #token-generation-event
How do protists respond to multiple chemical stressors in wastewater microbiomes?
Ding et al. show that protists remain highly resilient—and can even thrive—under combined exposure to ciprofloxacin, triclosan, and Cu²⁺.
🔗 doi.org/10.1002/mlf2...
How do protists respond to multiple chemical stressors in wastewater microbiomes?
Ding et al. show that protists remain highly resilient—and can even thrive—under combined exposure to ciprofloxacin, triclosan, and Cu²⁺.
🔗 doi.org/10.1002/mlf2...
A new 1 hour Raman test now reveals the correct phage, and the dose, with 96% accuracy. #AMR #PhageTherapy
👉 Read #OpenAccess: https://bit.ly/3RaIwVe
A new 1 hour Raman test now reveals the correct phage, and the dose, with 96% accuracy. #AMR #PhageTherapy
👉 Read #OpenAccess: https://bit.ly/3RaIwVe
A new 1 hour Raman test now reveals the correct phage, and the dose, with 96% accuracy. #AMR #PhageTherapy
👉 Read #OpenAccess: https://bit.ly/3RaIwVe
A new 1 hour Raman test now reveals the correct phage, and the dose, with 96% accuracy. #AMR #PhageTherapy
👉 Read #OpenAccess: https://bit.ly/3RaIwVe
#Ecosystem retrogression #Nutrient cycling
Details: doi.org/10.1002/mlf2...
#Ecosystem retrogression #Nutrient cycling
Details: doi.org/10.1002/mlf2...
Bacteria that consume hydrocarbon #PlasticWaste and convert it into reusable materials could reshape how we manage waste worldwide. 🦠 #Microbiology
👉Read #OpenAccess https://bit.ly/4oTp7Vf
Bacteria that consume hydrocarbon #PlasticWaste and convert it into reusable materials could reshape how we manage waste worldwide. 🦠 #Microbiology
👉Read #OpenAccess https://bit.ly/4oTp7Vf
Bacteria that consume hydrocarbon #PlasticWaste and convert it into reusable materials could reshape how we manage waste worldwide. 🦠 #Microbiology
👉Read #OpenAccess https://bit.ly/4oTp7Vf
Bacteria that consume hydrocarbon #PlasticWaste and convert it into reusable materials could reshape how we manage waste worldwide. 🦠 #Microbiology
👉Read #OpenAccess https://bit.ly/4oTp7Vf
Microorganisms in coastal ecosystems actively store #carbon, and understanding their sequestration cycles could transform how we build climate strategies. #Microbiology
👉Read #OpenAccess https://bit.ly/3RcqoKF
Microorganisms in coastal ecosystems actively store #carbon, and understanding their sequestration cycles could transform how we build climate strategies. #Microbiology
👉Read #OpenAccess https://bit.ly/3RcqoKF
Microorganisms in coastal ecosystems actively store #carbon, and understanding their sequestration cycles could transform how we build climate strategies. #Microbiology
👉Read #OpenAccess https://bit.ly/3RcqoKF
Microorganisms in coastal ecosystems actively store #carbon, and understanding their sequestration cycles could transform how we build climate strategies. #Microbiology
👉Read #OpenAccess https://bit.ly/3RcqoKF
By: Andre Lue on Tuesday, July 7, 2026
By: Andre Lue on Tuesday, July 7, 2026
This issue features reviews, original research, methods, news & views, and correspondence across microbial ecology, virology, bacterial physiology, AMR, phage therapy, and environmental microbiology.
Read the issue:
onlinelibrary.wiley.com/toc/2770100x...
This issue features reviews, original research, methods, news & views, and correspondence across microbial ecology, virology, bacterial physiology, AMR, phage therapy, and environmental microbiology.
Read the issue:
onlinelibrary.wiley.com/toc/2770100x...
rcnamericany.blogspot.com/2026/07/mlif...
rcnamericany.blogspot.com/2026/07/mlif...