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Nature
|
April 28, 2000
Specificities of heparan sulphate proteoglycans in developmental processes
N Perrimon, M Bernfield
The Journal of Biological Chemistry
|
April 22, 1994
Core protein structure and sequence determine the site and presence of heparan sulfate and chondroitin sulfate on syndecan-1
R Kokenyesi, M Bernfield
Journal of Cellular Physiology
|
January 1, 1982
Defective basal lamina formation by transformed mammary epithelial cells: a reduced effect of collagen on basal lamina (heparan sulfate-rich) proteoglycan degradation
G David, M Bernfield
The Journal of Cell Biology
|
October 1, 1981
Type I collagen reduces the degradation of basal lamina proteoglycan by mammary epithelial cells
G David, M Bernfield
The Journal of Cell Biology
|
February 1, 1988
Cell surface proteoglycan binds mouse mammary epithelial cells to fibronectin and behaves as a receptor for interstitial matrix
S Saunders, M Bernfield
The Journal of Biological Chemistry
|
April 10, 1985
Cell surface proteoglycan of mammary epithelial cells. Protease releases a heparan sulfate-rich ectodomain from a putative membrane-anchored domain
A Rapraeger, M Bernfield
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences
|
March 12, 1990
Syndecan, a developmentally regulated cell surface proteoglycan that binds extracellular matrix and growth factors
M Bernfield, R D Sanderson
The Journal of Biological Chemistry
|
October 10, 1984
Heparan sulfate proteoglycans from mouse mammary epithelial cells. Basal extracellular proteoglycan binds specifically to native type I collagen fibrils
J E Koda, M Bernfield
The Journal of Biological Chemistry
|
March 25, 1983
Heparan sulfate proteoglycans from mouse mammary epithelial cells. A putative membrane proteoglycan associates quantitatively with lipid vesicles
A C Rapraeger, M Bernfield
Developmental Biology
|
December 1, 1988
Accumulation of basement membrane-associated hyaluronate is reduced in the posterior neuropore region of mutant (curly tail) mouse embryos developing spinal neural tube defects
A J Copp, M Bernfield
Page
of 8
Search research articles
Search
Showing results (1-10 of 79) with videos related to
Sort By:
Page
of 8
Nature
|
April 28, 2000
Specificities of heparan sulphate proteoglycans in developmental processes
N Perrimon, M Bernfield
The Journal of Biological Chemistry
|
April 22, 1994
Core protein structure and sequence determine the site and presence of heparan sulfate and chondroitin sulfate on syndecan-1
R Kokenyesi, M Bernfield
Journal of Cellular Physiology
|
January 1, 1982
Defective basal lamina formation by transformed mammary epithelial cells: a reduced effect of collagen on basal lamina (heparan sulfate-rich) proteoglycan degradation
G David, M Bernfield
The Journal of Cell Biology
|
October 1, 1981
Type I collagen reduces the degradation of basal lamina proteoglycan by mammary epithelial cells
G David, M Bernfield
The Journal of Cell Biology
|
February 1, 1988
Cell surface proteoglycan binds mouse mammary epithelial cells to fibronectin and behaves as a receptor for interstitial matrix
S Saunders, M Bernfield
The Journal of Biological Chemistry
|
April 10, 1985
Cell surface proteoglycan of mammary epithelial cells. Protease releases a heparan sulfate-rich ectodomain from a putative membrane-anchored domain
A Rapraeger, M Bernfield
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences
|
March 12, 1990
Syndecan, a developmentally regulated cell surface proteoglycan that binds extracellular matrix and growth factors
M Bernfield, R D Sanderson
The Journal of Biological Chemistry
|
October 10, 1984
Heparan sulfate proteoglycans from mouse mammary epithelial cells. Basal extracellular proteoglycan binds specifically to native type I collagen fibrils
J E Koda, M Bernfield
The Journal of Biological Chemistry
|
March 25, 1983
Heparan sulfate proteoglycans from mouse mammary epithelial cells. A putative membrane proteoglycan associates quantitatively with lipid vesicles
A C Rapraeger, M Bernfield
Developmental Biology
|
December 1, 1988
Accumulation of basement membrane-associated hyaluronate is reduced in the posterior neuropore region of mutant (curly tail) mouse embryos developing spinal neural tube defects
A J Copp, M Bernfield
Page
of 8