September 16, 2026 07:02 pm (IST)
Follow us:
facebook-white sharing button
twitter-white sharing button
instagram-white sharing button
youtube-white sharing button
Gurugram biker crash: Main accused Kalyan Bainsla sent to police custody for 2 days | ‘Just tax collection’: Ashneer Grover slams new UPI charges above Rs 2,000 | India condemns Houthi attack on Saudi Arabia, warns of threat to Red Sea shipping | Gurugram biker hit by car: Two including main accused arrested after viral road rage video, attempt to murder case filed | Gurugram horror caught on camera: ‘I felt unsafe’—car chases, rams woman biker and flees | BRICS veg menu row: ‘Why shouldn’t we showcase it?’—Harsh Goenka hits back after Rahul Gandhi’s ‘80%’ remark | India-UAE Comprehensive Strategic Partnership in focus: Modi meets Abu Dhabi Crown Prince on BRICS sidelines | Xi Jinping lands in India for BRICS; big Modi meeting set for New Delhi | ‘Hospitality on another level’: South African official stunned by India’s BRICS hosting | Suvendu Adhikari eats fish bhog at Kalighat Temple amid Bageshwar Baba row

Nobel Prize in Chemistry awarded to Tomas Lindahl , Paul Modrich and Aziz Sancar

| | Oct 07, 2015, at 09:13 pm
London, Oct 7 (IBNS) The Royal Swedish Academy of Sciences on Wednesday announced to award Nobel Prize in Chemistry for 2015 to Tomas Lindahl , Paul Modrich and Aziz Sancar.

The award was given to them for having mapped, at a molecular level, how cells repair damaged DNA and safeguard the genetic information.

"Their work has provided fundamental knowledge of how a living cell functions and is, for instance, used for the development of new cancer treatments," nobelprize.org said.

Each day DNA is damaged by UV radiation, free radicals and other carcinogenic substances, but even without such external attacks, a DNA molecule is inherently unstable. Thousands of spontaneous changes to a cell’s genome occur on a daily basis. Furthermore, defects can also arise when DNA is copied during cell division, a process that occurs several million times every day in the human body.

The reason our genetic material does not disintegrate into complete chemical chaos is that a host of molecular systems continuously monitor and repair DNA. The Nobel Prize in Chemistry 2015 awards three pioneering scientists who have mapped how several of these repair systems function at a detailed molecular level.

In the early 1970s, scientists believed that DNA was an extremely stable molecule, but Tomas Lindahl demonstrated that DNA decays at a rate that ought to have made the development of life on Earth impossible. This insight led him to discover a molecular machinery, base excision repair, which constantly counteracts the collapse of our DNA.

Aziz Sancar has mapped nucleotide excision repair, the mechanism that cells use to repair UV damage to DNA. People born with defects in this repair system will develop skin cancer if they are exposed to sunlight. The cell also utilises nucleotide excision repair to correct defects caused by mutagenic substances, among other things.

Paul Modrich has demonstrated how the cell corrects errors that occur when DNA is replicated during cell division. This mechanism, mismatch repair, reduces the error frequency during DNA replication by about a thousandfold. Congenital defects in mismatch repair are known, for example, to cause a hereditary variant of colon cancer.

The Nobel Laureates in Chemistry 2015 have provided fundamental insights into how cells function, knowledge that can be used, for instance, in the development of new cancer treatments.

Support Our Journalism

We cannot do without you.. your contribution supports unbiased journalism

IBNS is not driven by any ism- not wokeism, not racism, not skewed secularism, not hyper right-wing or left liberal ideals, nor by any hardline religious beliefs or hyper nationalism. We want to serve you good old objective news, as they are. We do not judge or preach. We let people decide for themselves. We only try to present factual and well-sourced news.

Support objective journalism for a small contribution.