Supercomputer simulations offer insights into the origin of life
Washington, Oct 5 (ANI): Scientists are using supercomputer simulations at the Department of Energy's Oak Ridge National Laboratory to unravel how nucleic acids could have contributed to the origins of life.
A research team led by Jeremy Smith, who directs ORNL's Center for Molecular Biophysics and holds a Governor's Chair at University of Tennessee, used molecular dynamics simulation to probe an organic chemical reaction that may have been important in the evolution of ribonucleic acids, or RNA, into early life forms.
Certain types of RNA called ribozymes are capable of both storing genetic information and catalyzing chemical reactions - two necessary features in the formation of life.
The research team looked at a lab-grown ribozyme that catalyzes the Diels-Alder reaction, which has broad applications in organic chemistry.
"Life means making molecules that reproduce themselves, and it requires molecules and are sufficiently complex to do so. If a ribozyme like the Diels-Alderase is capable of doing organic chemistry to build up complex molecules, then potentially something like that could have been present to create the building blocks of life," said Smith.
The research team found a theoretical explanation for why the Diels-Alder ribozyme needs magnesium to function.
Computational models of the ribozyme's internal motions allowed the researchers to capture and understand the finer details of the fast-paced reaction.
The static nature of conventional experimental techniques such as chemical probing and X-ray analysis had not been able to reveal the dynamics of the system.
"Computer simulations can provide insight into biological systems that you can't get any other way. Since these structures are changing so much, the dynamic aspects are difficult to understand, but simulation is a good way of doing it," said Smith.
Smith explained how their calculations showed that the ribozyme's internal dynamics included an active site, or "mouth," which opens and closes to control the reaction.
The concentration of magnesium ions directly impacts the ribozyme's movements.
"When there's no magnesium present, the mouth closes, the substrate can't get in, and the reaction can't take place. We found that magnesium ions bind to a special location on the ribozyme to keep the mouth open," said Smith.
The research was published in the Journal of the American Chemical Society. (ANI)
-
LPG Crunch: Karnataka Brings New SOPs, Makes PNG Registration Mandatory for Businesses -
Hyderabad Gold Silver Rate Today, 30 March 2026: Check Fresh 24K, 22K, 18K Gold And Silver Prices In City -
Opinion Poll For Kerala Assembly Election 2026: Ldf Strength In Kannur And Kasaragod -
Tamil Nadu Polls 2026: Vijay Reveals Rs 645 Crore Assets, Rs 266 Crore in Banks; Know All His Declaration -
Mumbai Metro Line 9 Set for April 3 Launch, Dahisar-Mira Bhayandar to Get Direct Boost -
Trump Hints At Breakthrough With Iran Amid War Escalation, Calls Recent Move A ‘Sign Of Respect’ -
Rahul Arunoday Banerjee Autopsy Report: Actor Was Underwater For Over An Hour, Sand Found In Lungs -
West Bengal Assembly elections: Election Commission transfers heads of 173 police stations -
Delhi Weather Brings Relief: IMD Issues Yellow Alert For Rain, Thunderstorms And Gusty Winds; Check Forecast -
Tamil Nadu Elections 2026: Vijay Files Nomination Same Day as MK Stalin, Sets Up Symbolic Political Face-Off -
Too Close To Call? 57 Key Seats Could Decide West Bengal Election 2026 As TMC And BJP Gear Up For Tight Battle -
IPL 2026 RR vs CSK Live Streaming: How to Watch Rajasthan Royals vs Chennai Super Kings Match Today












Click it and Unblock the Notifications