Biomedical Engineering Reference
In-Depth Information
Garner, O. B. & Baum, L. G. (2008). Galectin-glycan lattices regulate cell-surface
glycoprotein organization and signalling. Biochemical Society Transactions , 36, pp.
1472-1477.
Giguere, D., Bonin, M. A., Cloutier, P., Patnam, R., St-Pierre, C., Sato, S. & Roy, R. (2008).
Synthesis of stable and selective inhibitors of human galectins-1 and-3. Bioorganic &
Medicinal Chemistry , 16, pp. 7811-7823.
Gong, H. C., Honjo, Y., Nangia-Makker, P., Hogan, V., Mazurak, N., Bresalier, R. S. & Raz,
A. (1999). The NH 2 terminus of galectin-3 governs cellular compartmentalization
and functions in cancer cells. Cancer Research , 59, pp. 6239-6245.
Grafahrend, D., Heffels, K. H., Beer, M. V., Gasteier, P., Moller, M., Boehm, G., Dalton, P. D.
& Groll, J. (2011). Degradable polyester scaffolds with controlled surface chemistry
combining minimal protein adsorption with specific bioactivation. Nature Materials ,
10, pp. 67-73.
Gu, M., Wang, W., Song, W. K., Cooper, D. N. W. & Kaufman, S. J. (1994). Selective
modulation of the interaction of alpha7beta1 integrin with fibronectin and laminin
by L-14 lectin during skeletal muscle differentiation. Journal of Cell Science , 107, pp.
175-181.
Guévremont, M., Martel-Pelletier, Boileau, C., Liu, F.-T., Richard, M., Fernandes, J.-C.,
Pelletier, J.-P. & Reboul, P. (2004). Galectin-3 surface expression on human adult
chondrocytes: a potential substrate for collagenase-3. Annals of the Rheumatic
Diseases , pp. 636-643.
Guex, N. & Peitsch, M. C. (1997). Swiss-Model and the swiss-pdb viewer: an environment
for comparative protein modeling. Electrophoresis , 18, pp. 2714-2723.
Hadari, Y. R., Arbel-Goren, R., Levy, Y., Amsterdam, A., Alon, R., Zakut, R. & Zick, Y.
(2000). Galectin-8 binding to integrins inhibits cell adhesion and induces apoptosis.
Journal of Cell Science , 113, pp. 2385-2397.
Hernandez, J. D. & Baum, L. G. (2002). Ah, sweet mystery of death! Galectins and control of
cell fate. Glycobiology , 12, pp. 127R-136.
Hirabayashi, J. & Kasai, K. (1991). Effect of amino acid substitution by sited-directed
mutagenesis on the carbohydrate recognition and stability of human 14-kDa beta-
galactoside-binding lectin. The Journal of Biological Chemistry , 266, pp. 23648-23653.
Hirabayashi, J. & Kasai, K. (1993). The family of metazoan metal-independent beta-
galactoside-binding lectins: structure, function and molecular evolution.
Glycobiology , 3, pp. 297-304.
Hirabayashi, J. & Kasai, K. I. (1994). Further evidence by site-directed mutagenesis that
conserved hydrophilic residues form a carbohydrate-binding site of human
galectin-1. Glycoconjugate Journal , 11, pp. 437-442.
Hirabayashi, J., Hashidate, T., Arata, Y., Nishi, N., Nakamura, T., Hirashima, M., Urashima,
T., Oka, T., Futai, M., Muller, W. E. G., Yagi, F. & Kasai, K.-i. (2002).
Oligosaccharide specificity of galectins: a search by frontal affinity
chromatography. Biochimica et Biophysica Acta - General Subjects , 1572, pp. 232-254.
Horie, H., Kadoya, T., Hikawa, N., Sango, K., Inoue, H., Takeshita, K., Asawa, R., Hiroi, T.,
Sato, M., Yoshioka, T. & Ishikawa, Y. (2004). Oxidized galectin-1 stimulates
macrophages to promote axonal regeneration in peripheral nerves after axotomy.
The Journal of Neuroscience , 24, pp. 1873-1880.
Search WWH ::




Custom Search