Mitsutoshi Setou
University of California, Irvine
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Featured researches published by Mitsutoshi Setou.
Journal of Biological Chemistry | 2006
Koji Ikegami; Masahiro Mukai; Jun-ichi Tsuchida; Robb L. Heier; Grant R. MacGregor; Mitsutoshi Setou
Microtubules form a cytoskeletal framework that influences cell shape and provides structural support for the cell. Microtubules in the nervous system undergo a unique post-translational modification, polyglutamylation of the C termini of their tubulin subunits. The mammalian enzymes that perform β-tubulin polyglutamylation as well as their physiological functions in the neuronal tissue remain elusive. We report identification of a mammalian polyglutamylase with specificity for β-tubulin as well as its distribution and function in neurite growth. To identify putative tubulin polyglutamylases, we searched tubulin tyrosine ligase-like (TTLL) proteins for those predominantly expressed in the nervous system. Of 13 TTLL proteins, TTLL7 was transcribed at the highest level in the nervous system. Recombinant TTLL7 catalyzed tubulin polyglutamylation with high preference to β-tubulin in vitro. When expressed in HEK293T cells, TTLL7 demonstrated specificity for β-tubulin and not for α-tubulin or nucleosome assembly protein 1. Consistent with these findings, knockdown of TTLL7 in a primary culture of superior cervical ganglion neurons caused a loss of polyglutamylated β-tubulin. Following stimulation of PC12 cells with nerve growth factor to differentiate, the level of TTLL7 increased concomitantly with polyglutamylation of β-tubulin. Short interference RNA-mediated knockdown of TTLL7 repressed nerve growth factor-stimulated MAP (microtubule-associated protein) 2-positive neurite growth in PC12 cells. Consistent with having a role in the growth of MAP2-positive neurites, TTLL7 accumulated within a MAP2-enriched somatodendritic portion of superior cervical ganglion, as did polyglutamylated β-tubulin. Anti-TTLL7 antibody revealed that TTLL7 was distributed in a somatodendritic compartment in the mouse brain. These findings indicate that TTLL7 is a β-tubulin polyglutamylase and is required for the growth of MAP2-positive neurites in PC12 cells.
生物物理 | 2014
Takanobu Kato; Koji Ikegami; Toshihito Iwase; Tomoko Masaike; Mitsutoshi Setou; Takayuki Nishizaka
生物物理 | 2013
Takanobu Kato; Toshihito Iwase; Tomoko Masaike; Koji Ikegami; Mitsutoshi Setou; Takayuki Nishizaka
生物物理 | 2012
Tomoko Masaike; Koji Ikegami; Rinako Nakayama; Mitsutoshi Setou; Takayuki Nishizaka
生物物理 | 2011
知子 政池; Koji Ikegami; Mitsutoshi Setou; Takayuki Nishizaka
生物物理 | 2011
Ayuka Suzuki; Makoto Tsunoda; Yoshiyuki Konishi; Mitsutoshi Setou; Takashi Funatsu
生物物理 | 2010
Takahiro Hayasaka; Naoko Goto-Inoue; Nobuturo Zaima; Kamlesh Shrivas; Yukiyasu Kashiwagi; Mari Yamamoto; Masami Nakamoto; Mitsutoshi Setou
生物物理 | 2010
Masashi Kondo; Makoto Tsunoda; Yoshiyuki Konishi; Mitsutoshi Setou; Takashi Funatsu
生物物理 | 2010
Hitoshi Asakawa; Koji Ikegami; Takahiro Hayasaka; Mitsutoshi Setou; Takeshi Fukuma
Archive | 2010
Naoko Goto-Inoue; Takao Taki; Mitsutoshi Setou