Smallest and Fastest-Known RNA Switches Provide New Drug Targets

A University of Michigan biophysical chemist and his colleagues have discovered the smallest and fastest-known molecular switches made of RNA, the chemical cousin of DNA.

Written byOther Author
| 3 min read
Register for free to listen to this article
Listen with Speechify
0:00
3:00

ANN ARBOR, Mich.—A University of Michigan biophysical chemist and his colleagues have discovered the smallest and fastest-known molecular switches made of RNA, the chemical cousin of DNA. The researchers say these rare, fleeting structures are prime targets for the development of new antiviral and antibiotic drugs.

Once believed to merely store and relay genetic information, RNA is now known to be a cellular Swiss Army knife of sorts, performing a wide variety of tasks and morphing into myriad shapes.

Over the past decade, researchers have determined that most of the DNA in our cells is used to make RNA molecules, that RNA plays a central role in regulating gene expression, and that these macromolecules act as switches that detect cellular signals and then change shape to send an appropriate response to other biomolecules in the cell.

Hashim Al-Hashimi, University of Michigan
To continue reading this article, sign up for FREE to
Lab Manager Logo
Membership is FREE and provides you with instant access to eNewsletters, digital publications, article archives, and more.

Related Topics

CURRENT ISSUE - October 2025

Turning Safety Principles Into Daily Practice

Move Beyond Policies to Build a Lab Culture Where Safety is Second Nature

Lab Manager October 2025 Cover Image