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Dive into the research topics where Ivo De Baere is active.

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Featured researches published by Ivo De Baere.


Biochemical Journal | 2004

An inactive protein phosphatase 2A population is associated with methylesterase and can be re-activated by the phosphotyrosyl phosphatase activator.

Sari Longin; Jan Jordens; Ellen Martens; Ilse Stevens; Veerle Janssens; Evelien Rondelez; Ivo De Baere; Rita Derua; Etienne Waelkens; Jozef Goris; Christine Van Hoof

We have described recently the purification and cloning of PP2A (protein phosphatase 2A) leucine carboxylmethyltransferase. We studied the purification of a PP2A-specific methylesterase that co-purifies with PP2A and found that it is tightly associated with an inactive dimeric or trimeric form of PP2A. These inactive enzyme forms could be reactivated as Ser/Thr phosphatase by PTPA (phosphotyrosyl phosphatase activator of PP2A). PTPA was described previously by our group as a protein that stimulates the in vitro phosphotyrosyl phosphatase activity of PP2A; however, PP2A-specific methyltransferase could not bring about the activation. The PTPA activation could be distinguished from the Mn2+ stimulation observed with some inactive forms of PP2A, also found associated with PME-1 (phosphatase methylesterase 1). We discuss a potential new function for PME-1 as an enzyme that stabilizes an inactivated pool of PP2A.


Journal of Biological Chemistry | 2000

The Phosphotyrosyl Phosphatase Activator Gene Is a Novel p53 Target Gene

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

The minimal promoter of the phosphotyrosyl phosphatase activator (PTPA) gene, encoding a regulator of protein phosphatase 2A contains two yin-yang 1 (YY1)-binding sites, positively regulating promoter activity. We now describe a role for p53 in the regulation of PTPA expression. Luciferase reporter assays in Saos-2 cells revealed that p53 could down-regulate PTPApromoter activity in a dose-dependent manner, whereas four different p53 mutants could not. The p53-responsive region mapped to the minimal promoter. Overexpression of YY1 reverses the repressive effect of p53, suggesting a functional antagonism between p53 and YY1. The latter does not involve competition for YY1 binding, but rather direct control of YY1 function. Inhibition of PTPAexpression by endogenous p53 was demonstrated in UVB-irradiated HepG2 cells, both on the mRNA and protein level. Also basal PTPA levels are higher in p53-negative (Saos-2) versus p53-positive (HepG2, U2OS) cells, suggesting “latent” p53 can controlPTPA expression as well. The higher PTPA levels in U2OS cells, programmed to overexpress constitutively a dominant-negative p53 mutant, corroborate this finding. Thus, PTPA expression is negatively regulated by p53 in normal conditions and in conditions where p53 is up-regulated, via an as yet unknown mechanism involving the negative control of YY1.


FEBS Letters | 2006

Interaction of nucleoredoxin with protein phosphatase 2A

Katarzyna Lechward; Ewa Sugajska; Ivo De Baere; Jozef Goris; Brian A. Hemmings; Stanislaw Zolnierowicz

A trimeric protein phosphatase 2A (PP2AT55) composed of the catalytic (PP2Ac), structural (PR65/A), and regulatory (PR55/B) subunits was isolated from rabbit skeletal muscle by thiophosphorylase affinity chromatography, and contained two additional proteins of 54 and 55 kDa, respectively. The 54 kDa protein was identified as eukaryotic translation termination factor 1 (eRF1) and as a PP2A interacting protein [Andjelkovic et al. (1996) EMBO J. 15, 101–112]. The 55 kDa protein is now identified as nucleoredoxin (NRX). The formation of a complex between GST–NRX, PP2AC and PP2AD was demonstrated by pull‐down experiments with purified forms of PP2A, and by immunoprecipitation of HA‐tagged NRX expressed in HEK293 cells complexed endogenous PP2A subunits. Analysis of PP2A activity in the presence of GST–NRX showed that NRX competed with polycations for both stimulatory and inhibitory effects on different forms of PP2A.


Journal of Molecular Biology | 2000

The Saccharomyces cerevisiae homologue YPA1 of the mammalian phosphotyrosyl phosphatase activator of protein phosphatase 2A controls progression through the G1 phase of the yeast cell cycle.

Christine Van Hoof; Veerle Janssens; Ivo De Baere; Johannes H. de Winde; Joris Winderickx; Françoise Dumortier; Johan M. Thevelein; Wilfried Merlevede; Jozef Goris


Experimental Cell Research | 2001

The Saccharomyces cerevisiae phosphotyrosyl phosphatase activator proteins are required for a subset of the functions disrupted by protein phosphatase 2A mutations.

Christine Van Hoof; Veerle Janssens; Ivo De Baere; Michael J. R. Stark; Johannes H. de Winde; Joris Winderickx; Johan M. Thevelein; Wilfried Merlevede; Jozef Goris


FEBS Journal | 2000

Identification and characterization of alternative splice products encoded by the human phosphotyrosyl phosphatase activator gene

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


Biochemical Journal | 1999

Functional analysis of the promoter region of the human phosphotyrosine phosphatase activator gene: Yin Yang 1 is essential for core promoter activity.

Veerle Janssens; Christine Van Hoof; Ivo De Baere; 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


Archives of Physiology and Biochemistry | 2000

The human phosphotyrosyl phosphatase activator gene encodes multiple isoforms

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


Archives of Physiology and Biochemistry | 2000

The human phosphotyrosyl phosphatase activator gene, encoding a regulator of protein phosphatase 2A, is a novel p53 target gene

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

Collaboration


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Jozef Goris

Katholieke Universiteit Leuven

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Christine Van Hoof

Katholieke Universiteit Leuven

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Veerle Janssens

Katholieke Universiteit Leuven

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Wilfried Merlevede

The Catholic University of America

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Ellen Martens

Katholieke Universiteit Leuven

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Wilfried Merlevede

The Catholic University of America

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Johan M. Thevelein

Katholieke Universiteit Leuven

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Joris Winderickx

Catholic University of Leuven

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Johannes H. de Winde

Katholieke Universiteit Leuven

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