Back

Mechanism of host cell invasion by Leishmania through KMP-11 mediated cholesterol-transport and membrane phase transition

Chattopadhyay, K.; Sannigrahi, A.; Ghosh, S.; pradhan, s.; JANA, P.; Jawed, J. J.; Majumdar, S.; ROY, S.; KARMAKAR, S.; Mukherjee, B.

2024-07-17 biophysics
10.1101/2024.07.15.603533 bioRxiv
Show abstract

The first step of successful infection by any intracellular pathogen relies on its ability to invade its host cell membrane. However, the detailed structural and molecular understanding underlying lipid membrane modification during pathogenic invasion remains unclear. In this study, we show that a specific Leishmania donovani (LD) protein, KMP-11, forms oligomers that bridge LD and host macrophage (M{Phi}) membranes. This KMP-11 induced interaction between LD and M{Phi} depends on the variations in cholesterol (CHOL) and ergosterol (ERG) contents in their respective membranes. These variations are crucial for the subsequent steps of invasion, including (a) the initial attachment, (b) CHOL transport from M{Phi} to LD, and (c) detachment of LD from the initial point of contact through a liquid ordered (Lo) to liquid disordered (Ld) membrane-phase transition. To validate the importance of KMP-11, we generated KMP-11 depleted LD, which failed to attach and invade host M{Phi}. Through tryptophan-scanning mutagenesis and synthesized peptides, we developed a generalized mathematical model, which demonstrates that the hydrophobic moment and the symmetry sequence code at the membrane interacting protein domain are key factors in facilitating the membrane phase transition and, consequently, the host cell infection process by Leishmania parasites.

Matching journals

The top 7 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.