The GTPase switch is a versatile molecular device used by many proteins, such as the small GTPases, to regulate an astounding number of functions. Although the basics of the guanine nucleotide cycle ...
Cell migration underpins embryonic development, immune surveillance and the dissemination of cancer cells. At its core lies a dynamic interplay between the actin cytoskeleton and a family of small ...
Scientists at the University of California, San Francisco (UCSF), have discovered how to target a class of molecular switches called GTPases that are involved in a myriad of diseases—from Parkinson’s ...
Every rice harvest begins with a microscopic event that most people never think about: the moment a dry, seemingly inert seed ...
UCSF scientists have discovered how to target a class of molecular switches called GTPases that are involved in a myriad of diseases from Parkinson's to cancer and have long been thought to be ...
Scientists from Adlai Nortye Biopharma Co. Ltd. and Adlai Nortye Pte Ltd. have discovered new GTPase KRAS and/or GTPase KRAS (mutant) inhibitors that are potentially useful for the treatment of cancer ...
Researchers at the Department of Medical Biochemistry and Biophysics at Karolinska Institutet have characterized a novel GTPase involved in ribosome production in mitochondria. The study, published in ...
Drugs for the K-Ras oncogene inspire an approach for targeting the GTPases, a family of enzymes whose dysfunction can lead to Parkinson's and many other diseases. UCSF scientists have discovered how ...
Although there are more than 150 guanosine triphosphate (GTP)–binding proteins, or GTPases, only the GTPase KRas G12C has proved susceptible to small-molecule drugs. That’s because it’s tough to find ...
Kumquat Biosciences Inc. has identified GTPase KRAS and KRAS (G12D mutant) inhibitors reported to be useful for the treatment of cancer, particularly solid tumors and hematological cancer.
UCSF scientists have discovered how to target a large family of molecular switches called GTPases that are involved in myriad diseases, from Parkinson’s to cancer, and have long been thought to be ...
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