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Switching DNA functions on and off with light

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DNA is the basis of life on earth. The function of DNA is to store all the genetic information an organism needs to develop, function and reproduce. It is essentially a biological instruction manual found in every cell. Biochemists at the University of M眉nster have now developed a strategy for controlling the biological functions of DNA with the aid of light. This enables researchers to better understand and control the processes that take place in the cell鈥攆or example, epigenetics, the key chemical change and regulatory lever in DNA. The results have been published in the journal Angewandte Chemie.

The cell's functions depend on enzymes. Enzymes are proteins that carry out in the cell. They help to synthesize metabolic products, make copies of the DNA molecules, convert energy for the cell's activities, change DNA epigenetically and break down certain molecules. A team of researchers headed by Prof. Andrea Rentmeister from the Institute of Biochemistry at the University of M眉nster used a so-called enzymatic cascade reaction to understand and track these functions better. This sequence of successive reaction steps involving different enzymes makes it possible to transfer so-called photocaging groups鈥攃hemical groups that can be removed by means of irradiation with light鈥攖o DNA. Previously, studies had shown that only small residues (small modifications such as methyl groups) could be transferred selectively to DNA, RNA (ribonucleic acid) or proteins.

"As a result of our work, it is now possible to transfer larger residues or modifications such as the photocaging groups just mentioned," explains Nils Kl枚cker, one of the lead authors of the study and a Ph.D. student at the Institute of Biochemistry. Working together with structural biologist Prof. Daniel K眉mmel, who also works at the Institute of Biochemistry, it was also possible to explain the basis for the changed activity at a .

Using so-called protein engineering, a method for which a Nobel prize was awarded in 2018, the M眉nster researchers engineered one in the cascade, making it possible to switch DNA functions on and off by means of light. With the aid of protein design, it was possible to expand the substrate spectrum of enzymes鈥攊n this case, methionine adenosyltransferases (MATs). In their work, the researchers examined two MATs. The modifications carried out offer a starting point for developing other MATs with an expanded substrate spectrum. "Combining these MATs with other enzymes has potential for future cellular applications. This is an important step for implementing in-situ generated, non-natural substances for other enzymes in epigenetic studies," says Andrea Rentmeister.

More information: Freideriki Michailidou et al, Ma脽geschneiderte SAM鈥怱ynthetasen zur enzymatischen Herstellung von AdoMet鈥怉naloga mit Photoschutzgruppen und zur reversiblen DNA鈥怣odifizierung in Kaskadenreaktionen, Angewandte Chemie (2020).

Journal information: Angewandte Chemie

Citation: Switching DNA functions on and off with light (2020, December 29) retrieved 9 July 2025 from /news/2020-12-dna-functions.html
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