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Dive into the research topics where Jan Kučera is active.

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Featured researches published by Jan Kučera.


Journal of Cellular Biochemistry | 2012

Phosphoinositide 3‐kinase inhibition enables retinoic acid‐induced neurogenesis in monolayer culture of embryonic stem cells

Hana Kotasová; Iva Vesela; Jan Kučera; Zbyněk Houdek; Jiřina Procházková; Milena Kralickova; Jiří Pacherník

Retinoic acid (RA) is able to induce the differentiation of embryonic stem cells into neuronal lineages. The mechanism of this effect is unknown but it has been evidenced to be dependent on the formation of floating spheroids called embryoid bodies. Results presented here show that the inhibition of phosphoinositide 3‐kinase signaling pre‐determines mouse embryonic stem cells to RA induced neurogenesis in monolayer culture with no need of embryoid bodies formation. J. Cell. Biochem. 113: 563–570, 2012.


Oxidative Medicine and Cellular Longevity | 2016

Apocynin and Diphenyleneiodonium Induce Oxidative Stress and Modulate PI3K/Akt and MAPK/Erk Activity in Mouse Embryonic Stem Cells.

Jan Kučera; Lucia Binó; Kateřina Štefková; Josef Jaroš; Ondřej Vašíček; Josef Večeřa; Lukáš Kubala; Jiří Pacherník

Reactive oxygen species (ROS) are important regulators of cellular functions. In embryonic stem cells, ROS are suggested to influence differentiation status. Regulated ROS formation is catalyzed primarily by NADPH-dependent oxidases (NOXs). Apocynin and diphenyleneiodonium are frequently used inhibitors of NOXs; however, both exhibit uncharacterized effects not related to NOXs inhibition. Interestingly, in our model of mouse embryonic stem cells we demonstrate low expression of NOXs. Therefore we aimed to clarify potential side effects of these drugs. Both apocynin and diphenyleneiodonium impaired proliferation of cells. Surprisingly, we observed prooxidant activity of these drugs determined by hydroethidine. Further, we revealed that apocynin inhibits PI3K/Akt pathway with its downstream transcriptional factor Nanog. Opposite to this, apocynin augmented activity of canonical Wnt signaling. On the contrary, diphenyleneiodonium activated both PI3K/Akt and Erk signaling pathways without affecting Wnt. Our data indicates limits and possible unexpected interactions of NOXs inhibitors with intracellular signaling pathways.


Mineral deposit research: meeting the global change. Proceedings | 2005

Palaeofluid flow in siliciclastic Lower Carboniferous rocks: Evidence from stable isotopes and fluid inclusions, Rhenohercynian Zone, Czech Republic

Jan Kučera; Klàra Kucerovà-Charvàtovà; Phillipe Muchez; Walter Prochaska

Post-Variscan Zn, Pb, Cu vein minera-lisation occurs within the Lower Carboniferous siliciclastic rocks at the eastern border of the Bohemian Massif. Saddle dolomites are associated with this vein mineralisation and indicate a NW-SE oriented fluid flow through the Palaeozoic rocks. The major control on this fluid flow pattern is experted by faults. Eutectic temperature and crush-leach analyses indicate H2O-NaCl-CaCl2 type of basinal brines. Homogenization temperatures regionally decrease from 147° to 80°C and salinities from 26.5 to 17 wt.% eq. NaCl. Temperatures correlate well with an increase of_δ18O values from 15.5 to 22.5%. SMOW and_δ13C values from_−5.6 to_−3.1%. PDB.


Oncotarget | 2017

Hypoxia favors myosin heavy chain beta gene expression in an Hif-1alpha-dependent manner

Lucia Binó; Jiřina Procházková; Katarzyna Anna Radaszkiewicz; Jan Kučera; Jana Kudová; Jiří Pacherník; Lukáš Kubala

The potentiation of the naturally limited regenerative capacity of the heart is dependent on an understanding of the mechanisms that are activated in response to pathological conditions such as hypoxia. Under these conditions, the expression of genes suggested to support cardiomyocyte survival and heart adaptation is triggered. Particularly important are changes in the expression of myosin heavy chain (MHC) isoforms. We propose here that alterations in the expression profiles of MHC genes are induced in response to hypoxia and are primarily mediated by hypoxia inducible factor (HIF). In in vitro models of mouse embryonic stem cell-derived cardiomyocytes, we showed that hypoxia (1% O2) or the pharmacological stabilization of HIFs significantly increased MHCbeta (Myh7) gene expression. The key role of HIF-1alpha is supported by the absence of these effects in HIF-1alpha-deficient cells, even in the presence of HIF-2alpha. Interestingly, ChIP analysis did not confirm the direct interaction of HIF-1alpha with putative HIF response elements predicted in the MHCalpha and beta encoding DNA region. Further analyses showed the significant effect of the mTOR signaling inhibitor rapamycin in inducing Myh7 expression and a hypoxia-triggered reduction in the levels of antisense RNA transcripts associated with the Myh7 gene locus. Overall, the recognized and important role of HIF in the regulation of heart regenerative processes could be highly significant for the development of novel therapeutic interventions in heart failure.The potentiation of the naturally limited regenerative capacity of the heart is dependent on an understanding of the mechanisms that are activated in response to pathological conditions such as hypoxia. Under these conditions, the expression of genes suggested to support cardiomyocyte survival and heart adaptation is triggered. Particularly important are changes in the expression of myosin heavy chain (MHC) isoforms. We propose here that alterations in the expression profiles of MHC genes are induced in response to hypoxia and are primarily mediated by hypoxia inducible factor (HIF). In in vitro models of mouse embryonic stem cell-derived cardiomyocytes, we showed that hypoxia (1% O2) or the pharmacological stabilization of HIFs significantly increased MHCbeta (Myh7) gene expression. The key role of HIF-1alpha is supported by the absence of these effects in HIF-1alpha-deficient cells, even in the presence of HIF-2alpha. Interestingly, ChIP analysis did not confirm the direct interaction of HIF-1alpha with putative HIF response elements predicted in the MHCalpha and beta encoding DNA region. Further analyses showed the significant effect of the mTOR signaling inhibitor rapamycin in inducing Myh7 expression and a hypoxia-triggered reduction in the levels of antisense RNA transcripts associated with the Myh7 gene locus. Overall, the recognized and important role of HIF in the regulation of heart regenerative processes could be highly significant for the development of novel therapeutic interventions in heart failure.


Obesity | 2018

Human White Adipose Tissue Metabolome: Current Perspective

Jan Kučera; Zdeněk Spáčil; David Friedecký; Jan Novák; Matěj Pekař; Julie Bienertová-Vašků

Interest in metabolites produced by adipose tissue has increased substantially in the past several decades. Previously regarded as an inert energy storage depot, adipose tissue is now viewed as a complex metabolically active organ with considerable impact on human health. The emerging field of mass spectrometry‐based metabolomics presents a powerful tool for the study of processes in complex biological matrices including adipose tissue.


Stem Cells International | 2017

Neural Differentiation Is Inhibited through HIF1α/β-Catenin Signaling in Embryoid Bodies

Josef Večeřa; Jana Kudová; Jan Kučera; Lukáš Kubala; Jiří Pacherník

Extensive research in the field of stem cells and developmental biology has revealed evidence of the role of hypoxia as an important factor regulating self-renewal and differentiation. However, comprehensive information about the exact hypoxia-mediated regulatory mechanism of stem cell fate during early embryonic development is still missing. Using a model of embryoid bodies (EBs) derived from murine embryonic stem cells (ESC), we here tried to encrypt the role of hypoxia-inducible factor 1α (HIF1α) in neural fate during spontaneous differentiation. EBs derived from ESC with the ablated gene for HIF1α had abnormally increased neuronal characteristics during differentiation. An increased neural phenotype in Hif1α−/− EBs was accompanied by the disruption of β-catenin signaling together with the increased cytoplasmic degradation of β-catenin. The knock-in of Hif1α, as well as β-catenin ectopic overexpression in Hif1α−/− EBs, induced a reduction in neural markers to the levels observed in wild-type EBs. Interestingly, direct interaction between HIF1α and β-catenin was demonstrated by immunoprecipitation analysis of the nuclear fraction of wild-type EBs. Together, these results emphasize the regulatory role of HIF1α in β-catenin stabilization during spontaneous differentiation, which seems to be a crucial mechanism for the natural inhibition of premature neural differentiation.


Oxidative Medicine and Cellular Longevity | 2017

Hypoxia Downregulates MAPK/ERK but Not STAT3 Signaling in ROS-Dependent and HIF-1-Independent Manners in Mouse Embryonic Stem Cells

Jan Kučera; Julie Netušilová; Stanislava Sladeček; Martina Kohutková Lánová; Ondřej Vašíček; Kateřina Štefková; Jarmila Navrátilová; Lukáš Kubala; Jiří Pacherník

Hypoxia is involved in the regulation of stem cell fate, and hypoxia-inducible factor 1 (HIF-1) is the master regulator of hypoxic response. Here, we focus on the effect of hypoxia on intracellular signaling pathways responsible for mouse embryonic stem (ES) cell maintenance. We employed wild-type and HIF-1α-deficient ES cells to investigate hypoxic response in the ERK, Akt, and STAT3 pathways. Cultivation in 1% O2 for 24 h resulted in the strong dephosphorylation of ERK and its upstream kinases and to a lesser extent of Akt in an HIF-1-independent manner, while STAT3 phosphorylation remained unaffected. Downregulation of ERK could not be mimicked either by pharmacologically induced hypoxia or by the overexpression. Dual-specificity phosphatases (DUSP) 1, 5, and 6 are hypoxia-sensitive MAPK-specific phosphatases involved in ERK downregulation, and protein phosphatase 2A (PP2A) regulates both ERK and Akt. However, combining multiple approaches, we revealed the limited significance of DUSPs and PP2A in the hypoxia-mediated attenuation of ERK signaling. Interestingly, we observed a decreased reactive oxygen species (ROS) level in hypoxia and a similar phosphorylation pattern for ERK when the cells were supplemented with glutathione. Therefore, we suggest a potential role for the ROS-dependent attenuation of ERK signaling in hypoxia, without the involvement of HIF-1.


Archive | 2005

Origin and significance of calcite-marcasite-pyrite mineralisation in siliciclastic Lower Carboniferous rocks, eastern mrrgin of the Bohemian Massif, Czech Republic

Klàra Kucerovà-Charvàtovà; Jan Kučera; Zdenek Dolníček

Field and petrographic observations co-mbined with fluid inclusion measurements, geochemical data, and stable and radiogenic isotope results place important constraints on the genesis of calcite-marcasite-pyrite veinlets located in the Lower Carboniferous siliciclastic rocks of the Nizký Jeneik Upland. These data suggest that the veinlets formed from hydrothermal fluids, derived from marine water that migrated, along with petroleum, out of the Carpathian Foredeep in Miocene time.


Journal of Geochemical Exploration | 2009

Rare earth elements and yttrium geochemistry of dolomite from post-Variscan vein-type mineralization of the Nízký Jeseník and Upper Silesian Basins, Czech Republic

Jan Kučera; Jan Cempírek; Zdeněk Dolníček; Philippe Muchez; Walter Prochaska


Mineralium Deposita | 2009

Origin of the Zálesí U–Ni–Co–As–Ag/Bi deposit, Bohemian Massif, Czech Republic: fluid inclusion and stable isotope constraints

Zdeněk Dolníček; Bohuslav Fojt; Walter Prochaska; Jan Kučera; Petr Sulovský

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Lukáš Kubala

Academy of Sciences of the Czech Republic

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Philippe Muchez

Katholieke Universiteit Leuven

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