Research section Research projects and references

Research: CANCER Folding Project #18921

Project #18921 overview

Project Summary AI Beta

Lasso peptides are unique molecules with potential for new drugs. This project uses computer simulations to understand how lasso peptides form their special shape and how they create the link that makes them work. This could lead to new treatments for diseases.
Automated summary; simplified and may not be fully accurate.

Project team

Manager(s)
Song Yin
Institution
University of Illinois Urbana-Champaign

Work unit

Atoms
88,444
Core
0x22
Status
Beta
Source material

Official Project Description

Lasso peptides are ribosomally synthesized and post-translationally modified peptide (RiPP) natural products that display a unique lariat-like, threaded conformation.

Some lasso peptides have been shown to bind human cell-surface receptors and exhibit anticancer properties, while others display antibacterial or antiviral bioactivities.

So studies on the lasso peptide synthesis will significantly facilitate the discovery and application of new drugs. Specifically, previous studies show that the unique lasso topology is formed by a macrolactam ring that is threaded by the C-terminal tail.

While not proven yet, the threading cannot occur after the ring formation.

The general proposed mechanism is that lasso peptide first form a prefolded lariat-like structure, then lasso peptide cyclase catalyzes the ring closure achieved by an isopeptide bond formed between the N-terminal α-amino group of a glycine, alanine, serine, or cysteine and the carboxylic acid side chain of an aspartate or glutamate, which can be located at positions 7, 8, or 9 of the amino acid sequence.

However, MD study on lasso peptide topology is very less and the detailed function of lasso peptide cyclase and the molecular mechanism of the whole lasso peptide cyclization process are not clear.

Therefore, in this study, we will perform Molecular Dynamic simulations for the system of lasso peptide or peptide with cyclase enzyme to explore lasso peptide topology and the cyclization mechanism.

Performance data

Hardware Performance for Project 18921

Compare community-sampled Folding@Home output for the GPUs and CPUs processing this project.

Data as of Friday, 14 August 2026 15:24:21

GPU PPD Averages

Rank
Project
Model Name
Folding@Home Identifier
Make
Brand
GPU
Model
PPD
Average
Points WU
Average
WUs Day
Average
WU Time
Average
1 GeForce RTX 2060
TU104 [GeForce RTX 2060]
Nvidia TU104 3,350,576 193,500 17.32 1 hrs 23 mins