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J Aruga

Showing results (1-10 of 38) with videos related to

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Behavior Genetics|November 9, 2001
Behavioral abnormalities of Zic1 and Zic2 mutant mice: implications as models for human neurological disordersH Ogura, J Aruga, K Mikoshiba
Comparative Biochemistry and Physiology. C, Comparative Pharmacology and Toxicology|January 1, 1991
Molecular biology of myelin basic protein: gene rearrangement and expression of anti-sense RNA in myelin-deficient mutantsK Mikoshiba, J Aruga, H Okano
Journal of Neurochemistry|April 1, 1991
Identification of the new isoforms of mouse myelin basic protein: the existence of exon 5aJ Aruga, H Okano, K Mikoshiba
Brain Research. Molecular Brain Research|July 13, 2000
A 5' segment of the mouse Zic1 gene contains a region specific enhancer for dorsal hindbrain and spinal cordJ Aruga, K Shimoda, K Mikoshiba
Journal of Biochemistry|September 1, 1996
Calcium-dependent phospholipid binding to the C2A domain of a ubiquitous form of double C2 protein (Doc2 beta)T Kojima, M Fukuda, J Aruga, et al.
Mechanisms of Development|November 25, 2000
A novel member of the Xenopus Zic family, Zic5, mediates neural crest developmentK Nakata, Y Koyabu, J Aruga, et al.
The Journal of Biological Chemistry|October 29, 2000
Molecular properties of Zic proteins as transcriptional regulators and their relationship to GLI proteinsK Mizugishi, J Aruga, K Nakata, et al.
Mechanisms of Development|September 18, 1998
Xenopus Zic family and its role in neural and neural crest developmentK Nakata, T Nagai, J Aruga, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 1997
Xenopus Zic3, a primary regulator both in neural and neural crest developmentK Nakata, T Nagai, J Aruga, et al.
Development Genes and Evolution|July 24, 2001
Xenopus Polycomblike 2 (XPcl2) controls anterior to posterior patterning of the neural tissueT Kitaguchi, K Nakata, T Nagai, et al.
Pageof 4

Showing results (1-10 of 38) with videos related to

Sort By:
Pageof 4
Behavior Genetics|November 9, 2001
Behavioral abnormalities of Zic1 and Zic2 mutant mice: implications as models for human neurological disordersH Ogura, J Aruga, K Mikoshiba
Comparative Biochemistry and Physiology. C, Comparative Pharmacology and Toxicology|January 1, 1991
Molecular biology of myelin basic protein: gene rearrangement and expression of anti-sense RNA in myelin-deficient mutantsK Mikoshiba, J Aruga, H Okano
Journal of Neurochemistry|April 1, 1991
Identification of the new isoforms of mouse myelin basic protein: the existence of exon 5aJ Aruga, H Okano, K Mikoshiba
Brain Research. Molecular Brain Research|July 13, 2000
A 5' segment of the mouse Zic1 gene contains a region specific enhancer for dorsal hindbrain and spinal cordJ Aruga, K Shimoda, K Mikoshiba
Journal of Biochemistry|September 1, 1996
Calcium-dependent phospholipid binding to the C2A domain of a ubiquitous form of double C2 protein (Doc2 beta)T Kojima, M Fukuda, J Aruga, et al.
Mechanisms of Development|November 25, 2000
A novel member of the Xenopus Zic family, Zic5, mediates neural crest developmentK Nakata, Y Koyabu, J Aruga, et al.
The Journal of Biological Chemistry|October 29, 2000
Molecular properties of Zic proteins as transcriptional regulators and their relationship to GLI proteinsK Mizugishi, J Aruga, K Nakata, et al.
Mechanisms of Development|September 18, 1998
Xenopus Zic family and its role in neural and neural crest developmentK Nakata, T Nagai, J Aruga, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 29, 1997
Xenopus Zic3, a primary regulator both in neural and neural crest developmentK Nakata, T Nagai, J Aruga, et al.
Development Genes and Evolution|July 24, 2001
Xenopus Polycomblike 2 (XPcl2) controls anterior to posterior patterning of the neural tissueT Kitaguchi, K Nakata, T Nagai, et al.
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