Resource data
Calcium-binding and structural stability of echidna and canine milk lysozymes
Kikuchi, M Kawano, K Nitta, K ??, ??
Location:
http://hdl.handle.net/2115/7394
Protein Science. 7(10), 1998, 2150-2155
For echidna and canine milk lysozymes, which were presumed to be the calcium-binding lysozymes by their amino acid sequences, we have quantitated their calcium-binding strength and examined their guanidine unfolding profiles. The calcium-binding constants of echidna and canine lysozymes were determined to be 8.6 x 10(6) M(-1) and 8.9 x 10(6) M(-1) in 0.1 M KCl at pH 7.1 and 20 C, respectively. The unfolding of decalcified canine lysozyme proceeds in the same manner as that of alpha-lactalbumin, through a stable molten globule intermediate. However, neither calcium-bound nor decalcified echidna lysozyme shows a stable molten globule intermediate. This unfolding profile of echidna lysozyme is identical to that of conventional lysozymes and pigeon egg-white lysozyme, avian calcium-binding lysozyme. This result supports the suggestion of Prager and Jolles (Prager EM, Jolles P. 1996. Animal lysozymes c and g: An overview. In: Jolles P, ed. Lysozymes: Model enzymes in biochemistry and biology. Basel-Boston-Berlin: Birkhauzer Verlag. pp 9-31) that the lineage of avian and echidna calcium-binding lysozymes and that of eutherian calcium-binding lysozymes diverged separately from that of conventional lysozymes.
Belongs to: Hokkaido University Collection of Scholarly and Academic Papers
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Detalles del recurso
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Calcium-binding and structural stability of echidna and canine milk lysozymes
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| Id. |
5710052 |
| Idioma |
inglés
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| Titulo |
Calcium-binding and structural stability of echidna and canine milk lysozymes |
| Autor(es) |
Kikuchi, M Kawano, K Nitta, K ??, ?? |
| Location |
http://hdl.handle.net/2115/7394
Protein Science. 7(10), 1998, 2150-2155
|
| Versión |
1.0 |
| Estado |
Final
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| Descripción |
For echidna and canine milk lysozymes, which were presumed to be the calcium-binding lysozymes by their amino acid sequences, we have quantitated their calcium-binding strength and examined their guanidine unfolding profiles. The calcium-binding constants of echidna and canine lysozymes were determined to be 8.6 x 10(6) M(-1) and 8.9 x 10(6) M(-1) in 0.1 M KCl at pH 7.1 and 20 C, respectively. The unfolding of decalcified canine lysozyme proceeds in the same manner as that of alpha-lactalbumin, through a stable molten globule intermediate. However, neither calcium-bound nor decalcified echidna lysozyme shows a stable molten globule intermediate. This unfolding profile of echidna lysozyme is identical to that of conventional lysozymes and pigeon egg-white lysozyme, avian calcium-binding lysozyme. This result supports the suggestion of Prager and Jolles (Prager EM, Jolles P. 1996. Animal lysozymes c and g: An overview. In: Jolles P, ed. Lysozymes: Model enzymes in biochemistry and biology. Basel-Boston-Berlin: Birkhauzer Verlag. pp 9-31) that the lineage of avian and echidna calcium-binding lysozymes and that of eutherian calcium-binding lysozymes diverged separately from that of conventional lysozymes. |
| Tipo |
5547932 bytes application/pdf |
| Palabras clave |
464.1 |
| Tipo de recurso |
article
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| Tipo de Interactividad |
Expositivo
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| Nivel de Interactividad |
muy bajo
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| Audiencia |
Estudiante
Profesor
Autor
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| Estructura |
Atomic |
| Coste |
no
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| Copyright |
sí
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Copyright © 1998 Cambridge University Press |
| Formatos |
5547932 bytes application/pdf |
| Requerimientos técnicos |
Browser: Any |
| Fecha de contribución |
25-oct-2007 |
| Contacto |
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