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Dive into the research topics where Wilfried Merlevede is active.

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Featured researches published by Wilfried Merlevede.


Journal of Biological Chemistry | 1996

Phosphorylation of Yeast Plasma Membrane H+-ATPase by Casein Kinase I

Enrique Estrada; Patrizia Agostinis; Jackie Vandenheede; Jozef Goris; Wilfried Merlevede; Jean François; André Goffeau; Michel Ghislain

The plasma membrane H+-ATPase of Saccharomyces cerevisiae is subject to phosphorylation by a casein kinase I activity in vitro. We show this casein kinase I activity to result from the combined function of YCK1 and YCK2, two highly similar and plasma membrane-associated casein kinase I homologues. First, H+-ATPase phosphorylation is severely impaired in the plasma membrane of YCK-deficient yeast strains. Furthermore, the wild-type level of the phosphoprotein is restored by the addition of purified mammalian casein kinase I to the mutant membranes. We used the H+-ATPase as well as a synthetic peptide substrate that contains a phosphorylation site for casein kinase I to compare kinase activity in membranes prepared from yeast cells grown in the presence or absence of glucose. The addition of glucose results in increased H+-ATPase activity which is associated with a decline in the phosphorylation level of the enzyme. Mutations in both YCK1 and YCK2 affect this regulation, suggesting that H+-ATPase activity is modulated by glucose via a combination of a “down-regulating” casein kinase I activity and another, yet uncharacterized, “up-regulating” kinase activity. Biochemical mapping of phosphorylated H+-ATPase identifies a major phosphopeptide that contains a consensus phosphorylation site (Ser-507) for casein kinase I. Site-directed mutagenesis of this consensus sequence indicates that Glu-504 is important for glucose-induced decrease in the apparent Km for ATP.


Federation proceedings | 1985

On the activation and regulation of the mg(ii)-atp-dependent protein phosphatase

Jurgensen; P B Chock; Susan S. Taylor; Jackie Vandenheede; Wilfried Merlevede


Federation proceedings | 1983

Activation of atp-mg(ii)-dependent phosphoprotein phosphatase

S Jurgensen; E Shacternoiman; Cy Huang; P B Chock; Jackie Vandenheede; Wilfried Merlevede


Archive | 2002

YPA, the yeast PTPA homologue, as regulator of PP2A-like phosphatases

Christine Van Hoof; Veerle Janssens; Ellen Martens; Wilfried Merlevede; Jozef Goris


Archive | 2001

Isolation of B"/PR130 subunits of PP2A from prophase Xenopus laevis oocytes

Ilse Stevens; Evelien Rondelez; Veerle Janssens; Wilfried Merlevede; Jozef Goris


Archive | 2001

Degradation of the B"/PR72/PR130 regulatory subunits of PP2A by m-calpain, a calcium-dependent protease

Veerle Janssens; Christine Van Hoof; Ilse Stevens; Ellen Martens; Wilfried Merlevede; Jozef Goris


Archive | 2001

The Ypa1 and Ypa2 homologues of PTPA function at different stages of the budding yeast cell cycle

Christine Van Hoof; Veerle Janssens; Ellen Martens; Michael J. R. Stark; Wilfried Merlevede; Jozef Goris


Archive | 2000

PP2A leucine methylesterase forms a stable complex with a novel inactive form of PP2A

Jozef Goris; Ivo De Baere; Christine Van Hoof; Veerle Janssens; Ellen Martens; Rita Derua; Etienne Waelkens; Wilfried Merlevede


Archive | 1999

The interplay of PP2A leucine methyltransferase and methylesterase brings the composition of PP2A closer to a dynamic in vivo regulation

Jozef Goris; Ivo De Baere; Christine Van Hoof; Veerle Janssens; Ellen Martens; Rita Derua; Etienne Waelkens; Wilfried Merlevede


Archive | 1999

Methylation of PP2A catalytic subunit

Ivo De Baere; Ellen Martens; Christine Van Hoof; Veerle Janssens; Wilfried Merlevede; Jozef Goris

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Jozef Goris

Katholieke Universiteit Leuven

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Veerle Janssens

Katholieke Universiteit Leuven

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Christine Van Hoof

Katholieke Universiteit Leuven

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Jackie Vandenheede

The Catholic University of America

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Ellen Martens

Katholieke Universiteit Leuven

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Ivo De Baere

Katholieke Universiteit Leuven

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Etienne Waelkens

Université catholique de Louvain

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Patrizia Agostinis

The Catholic University of America

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Ilse Stevens

Katholieke Universiteit Leuven

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