PROJECT #19212 RESEARCH FOR HALOGENASES
FOLDING PERFORMANCE PROFILE

PROJECT SUMMARY

Approximately 40 percent of drugs approved or currently in clinical testing contain halogens (F, Cl, Br, or I) as pharmaceutically active ligand substituents.

This makes the halogenation of chemical scaffolds an issue of particular interest to medicinal chemists when attempting to synthesize potential drug candidates.

Many of the current methods for halogenation are difficult to control the regioselectivity or produce toxic byproducts during the reaction.

Due to these issues; halogenases, a class of enzymes that catalyze highly regioselective halogenation of various molecules in nature, have been studied as a means to improve existing halogenation methods with less toxic byproducts and higher regioselectivity of reaction.

By utilizing Relative Binding Free Energy calculations (RBFE) across a number of common organic molecule scaffolds, our goal is to better predict the probability and site of halogenation for various common chemical scaffolds across a number of halogenases..

PROJECT INFO

Manager(s): Tanner Dean

Institution: University of Illinois

PROJECT WORK UNIT SUMMARY

Atoms: 3,075

Core: 0xa8

Status: Public

PROJECT FOLDING PPD AVERAGES BY GPU

PPDDB data as of Saturday, 01 April 2023 12:14:45

Rank
Project
Model Name
Folding@Home Identifier
Make
Brand
GPU
Model
PPD
Average
Points WU
Average
WUs Day
Average
WU Time
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PROJECT FOLDING PPD AVERAGES BY CPU BETA

PPDDB data as of Saturday, 01 April 2023 12:14:45

Rank
Project
CPU Model Logical
Processors (LP)
PPD-PLP
AVG PPD per 1 LP
ALL LP-PPD
(Estimated)
Make
1 12TH GEN CORE I7-12700K 20 28,628 572,560 Intel
2 RYZEN 7 5700X 8-CORE 16 31,938 511,008 AMD
3 12TH GEN CORE I9-12900K 24 18,201 436,824 Intel
4 CORE I9-10900X CPU @ 3.70GHZ 20 16,515 330,300 Intel
5 11TH GEN CORE I7-11700K @ 3.60GHZ 16 16,619 265,904 Intel
6 RYZEN 9 3900XT 12-CORE 24 10,350 248,400 AMD
7 CORE I9-10850K CPU @ 3.60GHZ 20 9,808 196,160 Intel