No cell walls, no new cancer cells ~ An essential building block and how to take it away ~

A team from the Uppsala Branch of the global Ludwig Institute for Cancer Research (LICR) has not only shown how the cell gets this timing right, but has also conducted proof-of-principle studies that indicate taking away the cell’s bricks and mortar is a potential strategy for cancer control.

“New cells are created by the duplication of existing cells through a highly-organized process known as the cell cycle,” explains lead author, Dr. Maite Bengoechea Alonso. “Last year we discovered that a protein called SREBP1 that regulates the synthesis of lipids needed for new cell walls was regulated during the cell cycle. Now we show that the SREBP1 protein actually controls the cell cycle.”

Senior author, LICR’s Dr. Johan Ericsson, realized that disrupting the function of SREBP1 might prevent the lipid synthesis required for new cell walls. “In fact, we literally stopped the cell cycle in its tracks by removing SREBP1 from cells. It seems that if you don’t have SREBP1 activity, you can’t make lipids, and if you don’t have lipids, you can’t make new cells.”

According to Dr. Ericsson, who is also a Research Fellow of the Royal Swedish Academy of Sciences, this approach might one day form the basis of a new strategy for the long-term control of cancer. “Cancer cells divide uncontrollably, so their need for lipids is more urgent and continuous than normal cells. Treatment with an inhibitor of SREBP1 might reduce the rate of cancer cell proliferation to slow down tumor growth, or might enhance the effect of targeted therapies that aim to actually kill cancer cells.”

Media Contact

Sarah White alfa

More Information:

http://www.licr.org

All latest news from the category: Life Sciences and Chemistry

Articles and reports from the Life Sciences and chemistry area deal with applied and basic research into modern biology, chemistry and human medicine.

Valuable information can be found on a range of life sciences fields including bacteriology, biochemistry, bionics, bioinformatics, biophysics, biotechnology, genetics, geobotany, human biology, marine biology, microbiology, molecular biology, cellular biology, zoology, bioinorganic chemistry, microchemistry and environmental chemistry.

Back to home

Comments (0)

Write a comment

Newest articles

Superradiant atoms could push the boundaries of how precisely time can be measured

Superradiant atoms can help us measure time more precisely than ever. In a new study, researchers from the University of Copenhagen present a new method for measuring the time interval,…

Ion thermoelectric conversion devices for near room temperature

The electrode sheet of the thermoelectric device consists of ionic hydrogel, which is sandwiched between the electrodes to form, and the Prussian blue on the electrode undergoes a redox reaction…

Zap Energy achieves 37-million-degree temperatures in a compact device

New publication reports record electron temperatures for a small-scale, sheared-flow-stabilized Z-pinch fusion device. In the nine decades since humans first produced fusion reactions, only a few fusion technologies have demonstrated…

Partners & Sponsors