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Förster resonance energy transfer-based kinase mutation phenotyping reveals an aberrant facilitation of Ca/calmodulin-dependent CaMKIIα activity in mutations related to intellectual disability

Front Mol Neurosci. 2022-09; 
Hajime Fujii, Hiroyuki Kidokoro, Yayoi Kondo, Masahiro Kawaguchi, Shin-Ichiro Horigane, Jun Natsume, Sayaka Takemoto-Kimura, Haruhiko Bito
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GenParts™ DNA Fragments … The human CAMK2A clone (NM_171825.2) was purchased from GenScript. To construct humanized CaMKIIα FRET probe hK2α, a fragment containing kinase, regulatory and variable … Get A Quote

摘要

CaMKIIα plays a fundamental role in learning and memory and is a key determinant of synaptic plasticity. Its kinase activity is regulated by the binding of Ca/CaM and by autophosphorylation that operates in an activity-dependent manner. Though many mutations in CAMK2A were linked to a variety of neurological disorders, the multiplicity of its functional substrates renders the systematic molecular phenotyping challenging. In this study, we report a new case of CAMK2A P212L, a recurrent mutation, in a patient with an intellectual disability. To quantify the effect of this mutation, we developed a FRET-based kinase phenotyping strategy and measured aberrance in Ca/CaM-dependent activation dynamics and in synapti... More

关键词

CaMKII, FRET, de novo mutation, imaging, intellectual disability, neurodevelopmental disorders