## News

## [Prediction of protein mutational free energy: benchmark and sampling improvements increase classification accuracy](/content/prediction-of-protein-mutational-free-energy-benchmark-and-sampling-improvements-increase-classification-accuracy/index.html)

March 20, 2020

## [A Safer CRISPR? Cyrus, Broad Institute Look to Quell Concerns — (Xconomy)](/content/a-safer-crispr-cyrus-broad-institute-look-to-quell-concerns-via-xconomy/index.html)

December 3, 2019

https://xconomy.com/national/2019/12/03/a-safer-crispr-cyrus-broad-institute-look-to-quell-concerns/

## [Cyrus, the Broad team up to make in vivo CRISPR use safer — (FierceBiotech)](/content/cyrus-the-broad-team-up-to-make-in-vivo-crispr-use-safer-via-fiercebiotech/index.html)

December 3, 2019

https://www.fiercebiotech.com/biotech/cyrus-broad-team-up-to-make-vivo-crispr-use-safer

## [Cyrus Biotechnology and CRISPR pioneers team up to boost gene-editing therapies — (GeekWire)](/content/cyrus-biotechnology-and-crispr-pioneers-team-up-to-boost-gene-editing-therapies-via-geekwire/index.html)

December 3, 2019

https://www.geekwire.com/2019/cyrus-biotechnology-teams-crispr-pioneers-boost-gene-editing-therapies/

## [Cyrus Biotechnology and the Broad Institute of MIT and Harvard Launch Multi-Target Collaboration to Develop Optimized CRISPR Gene Editing Technology](/content/cyrus-biotechnology-and-the-broad-institute-of-mit-and-harvard-launch-multi-target-collaboration-to-develop-optimized-crispr-gene-editing-technology/index.html)

December 2, 2019

CAMBRIDGE, Mass. & SEATTLE — Cyrus Biotechnology, Inc., and the Broad Institute of MIT and Harvard have embarked on a scientific collaboration to optimize CRISPR for use in developing novel human therapeutics. …

## [Cyrus Scientist Amanda Duran contributes to the modeling of the human KCNQ1 potassium channel using RosettaHM](/content/cyrus-scientist-amanda-duran-contributes-to-the-modeling-of-the-human-kcnq1-potassium-channel-using-rosettahm/index.html)

September 13, 2019

Abstract: The voltage-gated potassium channel KCNQ1 (KV7.1) assembles with the KCNE1 accessory protein to generate the slow delayed rectifier current, IKS, which is critical for membrane repolarization as part of the cardiac …
