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Research Article

Germline deletion reveals a non-essential role of the atypical MAPK6/ERK3

N. Ronkina, K. Schuster-Gossler, F. Hansmann, H. Kunze-Schumacher, I. Sandrock, T. Yakovleva, J. Lafera, W. Baumgärtner, A. Krueger, I. Prinz, A. Gossler, A. Kotlyarov, M. Gaestel
N. Ronkina
Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany
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K. Schuster-Gossler
Institute of Molecular Biology, Hannover Medical School, Hannover, Germany
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F. Hansmann
University of Veterinary Medicine Hannover, Department of Pathology, Hannover Germany
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H. Kunze-Schumacher
Institute of Molecular Medicine, Goethe-University Frankfurt am Main, Germany
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I. Sandrock
Institute of Immunology, Hannover Medical School, Hannover, Germany
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T. Yakovleva
Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany
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J. Lafera
Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany
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W. Baumgärtner
University of Veterinary Medicine Hannover, Department of Pathology, Hannover Germany
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A. Krueger
Institute of Molecular Medicine, Goethe-University Frankfurt am Main, Germany
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I. Prinz
Institute of Immunology, Hannover Medical School, Hannover, Germany
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A. Gossler
Institute of Molecular Biology, Hannover Medical School, Hannover, Germany
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A. Kotlyarov
Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany
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M. Gaestel
Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany
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  • For correspondence: gaestel.matthias@mh-hannover.de
DOI: 10.1128/MCB.00516-18
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ABSTRACT

MAPK6/ERK3 is an atypical member of the MAPKs. An essential role has been suggested by the perinatal lethal phenotype of ERK3 knockout mice carrying a lacZ insertion in exon 2 due to pulmonary disfunction and by defects in function, activation and positive selection of T cells. To study the role of ERK3 in vivo, we generated mice carrying a conditional Erk3 allele with exon3 flanked by LoxP sites. Loss of ERK3 protein was validated after deletion of Erk3 in the female germ line using zona pellucida 3 (Zp3)-cre and a clear reduction of the protein kinase MK5 is detected, providing first evidence for the existence of the ERK3/MK5 signaling complex in vivo. In contrast to the previously reported Erk3 knockout phenotype, these mice are viable and fertile, do not display pulmonary hypoplasia, acute respiratory failure, abnormal T cell development, reduction of thymocyte numbers or altered T cells selection. Hence, ERK3 is dispensable for pulmonary and T-cell functions. The perinatal lethality, lung and T-cell defects of the previous ERK3 knockout mice are likely due to ERK3-unrelated effects of the inserted lacZ-neomycin-resistance-cassette. The knockout mouse of the closely related atypical MAPK ERK4/MAPK4 is also normal suggesting redundant functions of both protein kinases.

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Germline deletion reveals a non-essential role of the atypical MAPK6/ERK3
N. Ronkina, K. Schuster-Gossler, F. Hansmann, H. Kunze-Schumacher, I. Sandrock, T. Yakovleva, J. Lafera, W. Baumgärtner, A. Krueger, I. Prinz, A. Gossler, A. Kotlyarov, M. Gaestel
Molecular and Cellular Biology Jan 2019, MCB.00516-18; DOI: 10.1128/MCB.00516-18

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Germline deletion reveals a non-essential role of the atypical MAPK6/ERK3
N. Ronkina, K. Schuster-Gossler, F. Hansmann, H. Kunze-Schumacher, I. Sandrock, T. Yakovleva, J. Lafera, W. Baumgärtner, A. Krueger, I. Prinz, A. Gossler, A. Kotlyarov, M. Gaestel
Molecular and Cellular Biology Jan 2019, MCB.00516-18; DOI: 10.1128/MCB.00516-18
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