The Jerusalem Post

Makers of genetic ‘ scissors’ win Nobel in chemistry

Designer baby fears, patent disputes fuel controvers­y • No men among winners for first time since 1964

- • By NIKLAS POLLARD and DOUGLAS BUSVINE

STOCKHOLM/ BERLIN ( Reuters) – Two women scientists won the 2020 Nobel Prize in Chemistry on Wednesday for creating genetic “scissors” that can rewrite the code of life, contributi­ng to new cancer therapies and holding out the prospect of curing hereditary diseases.

Emmanuelle Charpentie­r, who is French, and Jennifer Doudna, an American, share the 10 million Swedish crown ($ 1.1 million) prize for developing the CRISPR/ Cas9 tool to edit the DNA of animals, plants and microorgan­isms with precision.

“The ability to cut the DNA where you want has revolution­ized the life sciences,” Pernilla Wittung Stafshede of the Swedish Academy of Sciences told an award ceremony.

Charpentie­r, 51, and Doudna, 56, become the sixth and seventh women to win a Nobel for chemistry, joining Marie Curie, who won in 1911, and more recently, Frances Arnold, in 2018.

It is the first time since 1964, when Britain’s Dorothy Crowfoot Hodgkin alone won the award, no men are among the chemistry prize winners.

Charpentie­r, of the Max Planck Institute for the Science of Pathogens in Berlin, said she was “very emotional” after getting a call from Stockholm with the news.

“When it happens you are very surprised, and you feel that it is not real,” she said. “But obviously it is real so I have to get used to it now.”

The first Nobel won by two women showed how “science becomes more modern and develops more female leaders,” she said after setting down a glass of wine to pose for the cameras alongside a bust of Planck, the 1918 Physics Nobel laureate.

Doudna is already employing CRISPR in the battle against the coronaviru­s as co- founder of biotech start- up Mammoth, which has tied up with GlaxoSmith­Kline to develop a test to detect infections.

“What started as a curiosityd­riven, fundamenta­l discovery project has now become the breakthrou­gh strategy used by countless researcher­s working to help improve the human condition,” Doudna said in a statement issued by Berkeley.

The path from discovery to prize has taken less than a decade – a relatively short period by Nobel standards.

And, although CRISPR had been tipped to win the chemistry prize, there has also been concern that the technology could be misused, for example to create made- to- order “designer babies.”

“The enormous power of this technology means that we need to use it with great care,” said Claes Gustafsson, chair of the Nobel Committee for Chemistry.

“But it is equally clear that this is a technology, a method that will provide humankind with great opportunit­ies.”

Asked whether she had a relationsh­ip with God, Charpentie­r earlier told the award ceremony that she was raised a Catholic. Now, she said: “All my focus is on science – I believe in what I am doing as a scientist.”

CRISPR is a crowded field, with competing claims on discovery triggering a patent dispute that continues between the prize winners and a team led by Feng Zhang of the Broad Institute of MIT and Harvard.

Gustafsson declined to say whether the prize committee had considered other contenders.

Charpentie­r’s breakthrou­gh came in the study of ancient bacteria, Streptococ­cus pyogenes, when she found that a previously unknown molecule was part of its immune system and was capable of “cleaving” DNA.

She published her findings in 2011 and, in that year, joined forces with biochemist Doudna, of the University of California, Berkeley, to recreate the bacteria’s genetic scissors in a test tube and simplifyin­g their molecular compositio­n to make them easier to use.

The duo published their findings in June 2012, seven months before the Broad Institute group, which however successful­ly filed a series of US patent applicatio­ns and has claimed that its gene editing technology is better.

Despite the controvers­y, Broad Institute Director Eric Lander sent his “huge congratula­tions” to Charpentie­r and Doudna.

DNA is a string with up to six billion coded instructio­ns that tell a cell what to do. The beauty of CRISPR/ Cas9 is that it can not only snip DNA at the right spot, but also repair the join so that errors do not creep in.

Today CRISPR/ Cas9 is a common tool in biochemist­ry and molecular biology labs - used in plant treatments and to develop novel treatments of hereditary diseases such as sickle- cell anemia.

“We can now easily edit genomes as desired, something that before was hard, even impossible,” said Wittung Stafshede.

Chemistry is the third Nobel announced every year, and follows those for medicine and physics earlier this week.

The prizes for science, literature and peace were created and funded in the will of Swedish dynamite inventor and businessma­n Alfred Nobel and have been awarded since 1901, with the economics award a later addition.

 ?? Reuters) ( Fabrizio Bensch/ ?? SCIENTIST EMMANUELLE CHARPENTIE­R, director of the Max Planck Institute for Infection Biology in Berlin, poses yesterday after winning the 2020 Nobel Prize in Chemistry for the developmen­t of a method for genome editing.
Reuters) ( Fabrizio Bensch/ SCIENTIST EMMANUELLE CHARPENTIE­R, director of the Max Planck Institute for Infection Biology in Berlin, poses yesterday after winning the 2020 Nobel Prize in Chemistry for the developmen­t of a method for genome editing.

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