Ca 2+ -induced structural changes and intramolecular interactions in N-terminal region of diacylglycerol kinase alpha

Diacylglycerol kinases (DGKs) are multi-domain lipid kinases that modulate the levels of lipid messengers, diacylglycerol, and phosphatidic acid. Recently, increasing attention has been paid to its α isozyme (DGKα) as a potential target for cancer immunotherapy. However, little progress has been mad...

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Veröffentlicht in:Protein science 2022-07, Vol.31 (7), p.e4365
Hauptverfasser: Takahashi, Daisuke, Yonezawa, Kento, Okizaki, Yuki, Caaveiro, Jose M M, Ueda, Tadashi, Shimada, Atsushi, Sakane, Fumio, Shimizu, Nobutaka
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Sprache:eng
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Zusammenfassung:Diacylglycerol kinases (DGKs) are multi-domain lipid kinases that modulate the levels of lipid messengers, diacylglycerol, and phosphatidic acid. Recently, increasing attention has been paid to its α isozyme (DGKα) as a potential target for cancer immunotherapy. However, little progress has been made on the structural biology of DGKs, and a detailed understanding of the Ca -triggered activation of DGKα, for which the N-terminal domains likely play a critical role, remains unclear. We have recently shown that Ca binding to DGKα-EF induces conformational changes from a protease-susceptible "open" conformation in the apo state to a well-folded one in its holo state. Here, we further studied the structural properties of DGKα N-terminal (RVH and EF) domains using a series of biophysical techniques. We first revealed that the N-terminal RVH domain is a novel Ca -binding domain, but the Ca -induced conformational changes mainly occur in the EF domain. This was corroborated by NMR experiments showing that the EF domain adopts a molten-globule like structure in the apo state. Further analyses using SEC-SAXS and NMR indicate that the partially unfolded EF domain interacts with RVH domain, likely via hydrophobic interactions in the absence of Ca , and this interaction is modified in the presence of Ca . Taken together, these results present novel insights into the structural rearrangement of DGKα N-terminal domains upon binding to Ca , which is essential for the activation of the enzyme.
ISSN:0961-8368
1469-896X
DOI:10.1002/pro.4365