Phosphorylation of T107 by CamKIIδ Regulates the Detoxification Efficiency and Proteomic Integrity of Glyoxalase 1

CamKIIδ 对 T107 的磷酸化调节乙二醛酶 1 的解毒效率和蛋白质组完整性

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作者:Jakob Morgenstern, Sylvia Katz, Jutta Krebs-Haupenthal, Jessy Chen, Alireza Saadatmand, Fabiola Garcia Cortizo, Alexandra Moraru, Johanna Zemva, Marta Campos Campos, Aurelio Teleman, Johannes Backs, Peter Nawroth, Thomas Fleming

Abstract

The glyoxalase system is a highly conserved and ubiquitously expressed enzyme system, which is responsible for the detoxification of methylglyoxal (MG), a spontaneous by-product of energy metabolism. This study is able to show that a phosphorylation of threonine-107 (T107) in the (rate-limiting) Glyoxalase 1 (Glo1) protein, mediated by Ca2+/calmodulin-dependent kinase II delta (CamKIIδ), is associated with elevated catalytic efficiency of Glo1 (lower KM; higher Vmax). Additionally, we observe proteasomal degradation of non-phosphorylated Glo1 via ubiquitination does occur more rapidly as compared with native Glo1. The absence of CamKIIδ is associated with poor detoxification capacity and decreased protein content of Glo1 in a murine CamKIIδ knockout model. Therefore, phosphorylation of T107 in the Glo1 protein by CamKIIδ is a quick and precise mechanism regulating Glo1 activity, which is experimentally linked to an altered Glo1 status in cancer, diabetes, and during aging.

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