The Cancer-Associated ATM R3008H Mutation Reveals the Link between ATM Activation and Its Exchange.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 33239428.
- Also identified by DOI 10.1158/0008-5472.CAN-20-2447 and PMC identifier 8137556.
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Abstract
ATM kinase is a tumor suppressor and a master regulator of the DNA damage response. Most cancer-associated alterations to ATM are missense mutations at the PI3-kinase regulatory domain (PRD) or the kinase domain. Expression of kinase-dead (KD) ATM protein solely accelerates lymphomagenesis beyond ATM loss. To understand how PRD suppresses lymphomagenesis, we introduced the cancer-associated PRD mutation R3008H (R3016 in mouse) into mice. R3008H abrogated DNA damage- and oxidative stress-induced activation of ATM without consistently affecting ATM protein stability and recruitment. In contrast to the early embryonic lethality of <i>Atm<sup>KD/KD</sup></i> mice, AtmR3016H (<i>Atm<sup>R/R</sup></i> ) mice were viable, immunodeficient, and displayed spontaneous craniofacial abnormalities and delayed lymphomagenesis compared with <i>Atm<sup>-/-</sup></i> controls. Mechanistically, R3008H rescued the tardy exchange of ATM-KD at DNA damage foci, indicating that PRD coordinates ATM activation with its exchange at DNA-breaks. Taken together, our results reveal a unique tumorigenesis profile for PRD mutations that is distinct from null or KD mutations. SIGNIFICANT: This study functionally characterizes the most common ATM missense mutation R3008H in cancer and identifies a unique role of PI3-kinase regulatory domain in ATM activation.
Medical subject headings
- Ataxia Telangiectasia Mutated Proteins
- DNA Damage
- Mutation
- Neoplasms