Skip to content
May 14, 2026
  • HOME
  • INDIA
  • WORLD
  • SPOTLIGHT
  • BUSINESS
  • LIFESTYLE AND FITNESS
  • OPINIONS
  • SPORTS
  • E-PAPER
  • VIDEOS
  • ABOUT US
INDIA THIS WEEK

INDIA THIS WEEK

A Weekly Newspaper Featuring News & Trends from the Indian Sub-Continent Published from the US Capital

cropped-ITW-05152026FP.webp

Primary Menu
  • HOME
  • INDIA
    • NATIONAL
  • WORLD
    • SOUTH ASIA
    • US NEWS
  • SPOTLIGHT
  • BUSINESS
  • LIFESTYLE AND FITNESS
    • HEALTH
    • TECHNOLOGY
    • CINEMA
  • OPINIONS
    • POEM
  • SPORTS
  • E-PAPER
  • VIDEOS
  • ABOUT US
    • CONTACT US
Watch Video
  • Home
  • HEALTH
  • Tweezers untangle chemotherapeutic’s impact on DNA
  • HEALTH

Tweezers untangle chemotherapeutic’s impact on DNA

Published: February 2, 2023 | Updated: February 2, 2023 3 minutes read
ANI-20230130215601

New York [US], January 31 (ANI): A recent study from Cornell University offers a new perspective on how the chemotherapy drug etoposide delays and kills vital enzymes that support the growth of cancer cells. The research, conducted in Michelle Wang’s lab in the College of Arts and Sciences, will expand the understanding of a variety of cancer inhibitors. Michelle Wang is the James Gilbert White Distinguished Professor of the Physical Sciences and a Howard Hughes Medical Institute Investigator.

The group’s methods will also make it possible to construct sensitive screening tools for locating pharmacological mechanisms that can enhance patient care.

The group’s paper, ‘Etoposide Promotes DNA Loop Trapping and Barrier Formation by Topoisomerase II’, was published on January 30 in Nature Chemical Biology. The co-lead authors are research specialist Tung Le and postdoctoral researcher Meiling Wu.
For 40 years, etoposide has been a trusted chemotherapeutic for treating a variety of cancers. Etoposide succeeds by targeting Type IIA eukaryotic topoisomerases, enzymes – also known as topo IIs — that enable the replication of cancer cells.

At the centre of that replication process are the long, entangled, helical-coiled strands of DNA. In order for cancer to spread, these strands need to be untangled, rotated and copied by motor proteins. Topo IIs are well-suited for the job. They perform an elaborate kind of rope trick that relaxes the supercoiled DNA by cutting it, very quickly passing another DNA strand through its middle, and then reconnecting the cut DNA back together. All of that is done without damaging the DNA’s delicate genetic structure — an incredible, and incredibly fast, a feat of biology that happens in the body roughly 300 billion times a day.

Etoposide’s great virtue is that it can stabilize a DNA double-stranded break before anything is reconnected, thereby preventing the cancer cell from replicating. However, the intricacies of how etoposide interacts with DNA’s structure have remained murky.

“We normally ask: What is the best way to study molecular machinery that take place on DNA?” Wang said, adding, “To understand how those enzymes work, we want to mimic what might be happening in the cell. Motor proteins pull on the DNA or apply a force on the DNA. So we said, OK, we can apply a force and see what happens.”

Wang’s lab used three different single-molecule manipulation techniques to observe etoposide’s effect on three topo IIs, which were provided by collaborators led by professor James Berger of Johns Hopkins University: yeast topoisomerase II, human topoisomerase II alpha and human topoisomerase II beta.

“DNA topology, conceptually and in terms of torsional mechanical properties, is really hard for people to grasp,” Wang said, adding, “There were very few ways to study it. But we happen to have just the right tools. And the reason we have the right tools is that for the last 20 years, we’ve been working on developing them. These tools and this problem just happened to converge at the right time.”

First, the researchers used optical tweezers to stretch DNA into various configurations, demonstrating how etoposide compacts, releases and breaks it and creates DNA loops. This loop-trapping behaviour surprised everyone as it revealed a new impact of etoposide that was not previously known. It implies that etoposide could promote topo II to significantly alter DNA structure and topology in vivo.

Then the team used optical tweezers to unzip double-stranded DNA into two single strands for high-resolution mapping of protein interactions with the DNA, and so mimicked the motor removal of a bound protein. The findings suggest that etoposide could convert topo II into a strong roadblock of DNA-processing types of machinery.

Their third technique is a version of magnetic tweezers in which they twisted DNA with a bound topo II and watched the topo II relax the DNA at a steady rate. When they added etoposide, they found the chemical staggered this pattern, introducing pauses that correlate with the trapping of supercoiled loops.

By capturing the different ways etoposide enhances these actions and interferes with topo II function, the researchers now have a quantitative system for characterizing how other topoisomerase drugs behave.

“I think this gives us a set of tools that would allow us to study many different kinds of topoisomerases and other kinds of drugs in a very comprehensive way,” Wang said, adding, “Everything we do mimics what happens in vivo. We just do it in a mechanically controlled fashion. This is why it’s so powerful.” (ANI)

About The Author

ANI

See author's posts

What do you feel about this?

  • HEALTH

Post navigation

Previous: Researchers discover two separate reservoirs of latent HIV in patients
Next: Marburg vaccine shows promising results in first-in-human study

Author's Other Posts

US, Ukraine agree to ensure safe navigation, prevent commercial vessels use for military purposes in Black Sea Flags-ANI-20250326162806

US, Ukraine agree to ensure safe navigation, prevent commercial vessels use for military purposes in Black Sea

March 26, 2025
India, China discuss resumption of dialogue in step-by-step manner to address each other’s priority areas of interest and concern Flags-ANI-20250326162806

India, China discuss resumption of dialogue in step-by-step manner to address each other’s priority areas of interest and concern

March 26, 2025 1
US concludes Black Sea security talks with Russia and Ukraine in Riyadh Trump-ANI-20250325210541

US concludes Black Sea security talks with Russia and Ukraine in Riyadh

March 26, 2025
USCIRF should be designated as entity of concern: MEA slams US panel’s religious freedom report US CIRF-ANI-20250326110917

USCIRF should be designated as entity of concern: MEA slams US panel’s religious freedom report

March 26, 2025

Trending Now

MQ-28 Ghost Bat Appears During India-Australia Air Staff Talks on Future Aerospace Collaboration IAF 1

MQ-28 Ghost Bat Appears During India-Australia Air Staff Talks on Future Aerospace Collaboration

May 14, 2026 0
India This Week~May 15, 2026 ITW 05152026FP 2

India This Week~May 15, 2026

May 13, 2026 0
President Trump arrives in China for high-stakes summit with President Xi Jingping Trump in China-ANI-20260513124504 3

President Trump arrives in China for high-stakes summit with President Xi Jingping

May 13, 2026 0
“25 MLAs supported Vijay”: CV Shanmugam rejects EPS’ election as assembly leader amid ADMK vs ADMK showdown AIADMKRebel MLAs-ANI-20260513094331 4

“25 MLAs supported Vijay”: CV Shanmugam rejects EPS’ election as assembly leader amid ADMK vs ADMK showdown

May 13, 2026 0

Stories

Hezbollah Claims 17 Operations Against Israeli Forces in Southern Lebanon: Iranian Media Hezbollah claims 17 ops
  • WORLD

Hezbollah Claims 17 Operations Against Israeli Forces in Southern Lebanon: Iranian Media

May 14, 2026 0

Subscribe To Our Newsletter

Loading

  • CONTACT US
  • ABOUT US
  • INDIA
  • BUSINESS
  • BUSINESS
  • WORLD
  • Newsletter
  • Videos
  • Live
Copyright © 2026 All rights reserved. | MoreNews by AF themes.