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L Takemoto

Showing results (41-50 of 63) with videos related to

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Current Eye Research|August 1, 1992
The ability of lens alpha crystallin to protect against heat-induced aggregation is age-dependentJ Horwitz, T Emmons, L Takemoto
Japanese Journal of Ophthalmology|January 1, 1988
High molecular weight aggregate from cataractous and normal human lenses: characterization by antisera to lens crystallinsT Kodama, R Wong, L Takemoto
Investigative Ophthalmology & Visual Science|February 1, 1994
Preferential interaction of alpha crystallin with denatured forms of gamma crystallinS Gopalakrishnan, D Boyle, L Takemoto
Experimental Eye Research|July 1, 1987
Antisera to synthetic peptides of MIP26K as probes of changes in opaque vs. transparent regions within the same human cataractous lensL Takemoto, T Kodama, D Takemoto
Biochemical and Biophysical Research Communications|February 13, 1987
Major intrinsic polypeptide (MIP26K) of the lens membrane: covalent change in an internal sequence during human senile cataractogenesisL Takemoto, J Smith, T Kodama
Investigative Ophthalmology & Visual Science|March 1, 1986
Covalent changes in MIP26K during aging of the human lens membraneL Takemoto, M Takehana, J Horwitz
Experimental Eye Research|April 20, 2001
Mechanism of asparagine deamidation during human senile cataractogenesisL Takemoto, N Fujii, D Boyle
Current Eye Research|June 1, 1989
Covalent change in the major intrinsic polypeptide (MIP26K) during cataract development in the streptozotocin-induced diabetic ratD Granstrom, M Swamy, E Abraham, et al.
Biochemical and Biophysical Research Communications|February 15, 1988
Covalent change in alpha crystallin during human senile cataractogenesisL Takemoto, D Granstrom, T Kodama, et al.
Biochemical and Biophysical Research Communications|April 30, 1985
Major intrinsic polypeptide (MIP26K) from lens membrane: reconstitution into vesicles and inhibition of channel forming activity by peptide antiserumM Gooden, D Rintoul, M Takehana, et al.
Pageof 7

Showing results (41-50 of 63) with videos related to

Sort By:
Pageof 7
Current Eye Research|August 1, 1992
The ability of lens alpha crystallin to protect against heat-induced aggregation is age-dependentJ Horwitz, T Emmons, L Takemoto
Japanese Journal of Ophthalmology|January 1, 1988
High molecular weight aggregate from cataractous and normal human lenses: characterization by antisera to lens crystallinsT Kodama, R Wong, L Takemoto
Investigative Ophthalmology & Visual Science|February 1, 1994
Preferential interaction of alpha crystallin with denatured forms of gamma crystallinS Gopalakrishnan, D Boyle, L Takemoto
Experimental Eye Research|July 1, 1987
Antisera to synthetic peptides of MIP26K as probes of changes in opaque vs. transparent regions within the same human cataractous lensL Takemoto, T Kodama, D Takemoto
Biochemical and Biophysical Research Communications|February 13, 1987
Major intrinsic polypeptide (MIP26K) of the lens membrane: covalent change in an internal sequence during human senile cataractogenesisL Takemoto, J Smith, T Kodama
Investigative Ophthalmology & Visual Science|March 1, 1986
Covalent changes in MIP26K during aging of the human lens membraneL Takemoto, M Takehana, J Horwitz
Experimental Eye Research|April 20, 2001
Mechanism of asparagine deamidation during human senile cataractogenesisL Takemoto, N Fujii, D Boyle
Current Eye Research|June 1, 1989
Covalent change in the major intrinsic polypeptide (MIP26K) during cataract development in the streptozotocin-induced diabetic ratD Granstrom, M Swamy, E Abraham, et al.
Biochemical and Biophysical Research Communications|February 15, 1988
Covalent change in alpha crystallin during human senile cataractogenesisL Takemoto, D Granstrom, T Kodama, et al.
Biochemical and Biophysical Research Communications|April 30, 1985
Major intrinsic polypeptide (MIP26K) from lens membrane: reconstitution into vesicles and inhibition of channel forming activity by peptide antiserumM Gooden, D Rintoul, M Takehana, et al.
Pageof 7