Author:
Ghosh Sourav,Roy Suvapriya,Baid Navin,Das Udit Kumar,Hajra Dipasree,Menon Sneha,Sahil Mohammad,Shaw Sudipti,Rakshit Sumit,Rajmani Raju S,Adicherla Harikrishna,Mondal Jagannath,Chakravortty Dipshikha,Banerjee Anirban
Abstract
SummaryAn array of cytosol guarding factors impede bacterial invasion and preserve cellular sterility. Amongst them, proteasomal degradation of ubiquitinated pathogens has emerged as a critical mechanism ensuring cytosolic sanctity. But smaller size of the proteasomal barrel and its inability to extract membrane-bound proteins, questions this paradigm. Our study unveiled a unique mechanical force-based strategy, employed by VCP/p97, an AAA-ATPase, which by extracting ubiquitinated bacterial surface proteins, eliminates pathogens. Using molecular dynamic simulation along within-vitroandex-vivoexperiments, we demonstrated that p97’s segregase activity is central to its bactericidal effect. Assisted by cofactors NPLOC4 and UFD1, p97 causes extensive lysis of phylogenetically diverse microbes and triggers leaching of bacterial cytosolic contents.In-vivo, p97 abrogated bacterial proliferation in host tissues and protected animals from lethal infections. Overall, we unravelled a distinct innate immune function of p97, which is critical for host protection against bacterial infections.
Publisher
Cold Spring Harbor Laboratory