Tau Isoforms Expression in Transgenic Mouse Model of Amyotrophic Lateral Sclerosis
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作者:
Ewa Usarek
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机构:Medical University of Warsaw,Department of Biochemistry
Ewa Usarek
Magdalena Kuźma-Kozakiewicz
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机构:Medical University of Warsaw,Department of Biochemistry
Magdalena Kuźma-Kozakiewicz
Birgit Schwalenstöcker
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机构:Medical University of Warsaw,Department of Biochemistry
Birgit Schwalenstöcker
Beata Kaźmierczak
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机构:Medical University of Warsaw,Department of Biochemistry
Beata Kaźmierczak
Christoph Münch
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机构:Medical University of Warsaw,Department of Biochemistry
Christoph Münch
Albert C. Ludolph
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机构:Medical University of Warsaw,Department of Biochemistry
Albert C. Ludolph
Anna Barańczyk-Kuźma
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机构:Medical University of Warsaw,Department of Biochemistry
Anna Barańczyk-Kuźma
机构:
[1] Medical University of Warsaw,Department of Biochemistry
[2] Medical University of Warsaw,Department of Neurology
[3] University of Ulm,Department of Neurology
[4] Jewish Hospital Berlin,Department of Neurology
来源:
Neurochemical Research
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2006年
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31卷
关键词:
Tau isoforms;
Alternative splicing;
Transgenic mice;
Amyotrophic lateral sclerosis;
D O I:
暂无
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摘要:
Tau is a protein involved in regulation of microtubule stability, axonal differentiation and transport. Alteration of retrograde transport may lead to motor neuron degeneration. Thus alternative mRNA splicing and expression of tau isoforms were studied in a transgenic mouse model harboring the human SOD1 G93A mutation. The studies were performed on cortex, hippocampus and spinal cord of 64- and 120-day-old animals (presymptomatic and symptomatic stage) and wild type controls. Exon 10 was found in all studied tissues. The 2N isoform containing exons 2 and 3 (+2+3) and the 1N (+2−3) predominated over the 0N (−2−3) in brain regions of the studied mice. The 2N expression was significantly lower in cortex and hippocampus of symptomatic animals compared to analogue control tissues. The decrease in 2N expression resulted in lower levels of total tau mRNA and tau protein. No changes in tau expression were observed in spinal cord of studied animals.
机构:
MCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADAMCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADA
COLLARD, JF
COTE, F
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机构:
MCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADAMCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADA
COTE, F
JULIEN, JP
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机构:
MCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADAMCGILL UNIV,MONTREAL GEN HOSP,RES INST,CTR RES NEUROSCI,MONTREAL,PQ H3G 1A4,CANADA