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British Journal of Cancer
|
April 5, 2007
Exploiting nanotechnology to target cancer
S Sengupta, R Sasisekharan
Biochemical and Biophysical Research Communications
|
December 24, 1996
A comparative analysis of the primary sequences and characteristics of heparinases I, II, and III from Flavobacterium heparinum
R Godavarti, R Sasisekharan
Current Opinion in Chemical Biology
|
December 5, 2000
Heparin and heparan sulfate: biosynthesis, structure and function
R Sasisekharan, G Venkataraman
The Journal of Biological Chemistry
|
February 7, 1998
Heparinase I from Flavobacterium heparinum. Role of positive charge in enzymatic activity
R Godavarti, R Sasisekharan
The Journal of Biological Chemistry
|
May 30, 1998
Heparinase II from Flavobacterium heparinum. Role of histidine residues in enzymatic activity as probed by chemical modification and site-directed mutagenesis
Z Shriver, Y Hu, R Sasisekharan
Angiogenesis
|
January 1, 1997
On the regulation of fibroblast growth factor activity by heparin-like glycosaminoglycans
R Sasisekharan, S Ernst, G Venkataraman
The Journal of Biological Chemistry
|
August 29, 1998
Heparinase II from Flavobacterium heparinum. Role of cysteine in enzymatic activity as probed by chemical modification and site- directed mutagenesis
Z Shriver, Y Hu, K Pojasek, et al.
The Journal of Biological Chemistry
|
February 6, 1999
Biochemical investigations and mapping of the calcium-binding sites of heparinase I from Flavobacterium heparinum
Z Shriver, D Liu, Y Hu, et al.
Biochemistry
|
April 5, 2000
Histidine 295 and histidine 510 are crucial for the enzymatic degradation of heparan sulfate by heparinase III
K Pojasek, Z Shriver, Y Hu, et al.
Science (New York, N.Y.)
|
October 16, 1999
Sequencing complex polysaccharides
G Venkataraman, Z Shriver, R Raman, et al.
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of 5
Search research articles
Search
Showing results (1-10 of 49) with videos related to
Sort By:
Page
of 5
British Journal of Cancer
|
April 5, 2007
Exploiting nanotechnology to target cancer
S Sengupta, R Sasisekharan
Biochemical and Biophysical Research Communications
|
December 24, 1996
A comparative analysis of the primary sequences and characteristics of heparinases I, II, and III from Flavobacterium heparinum
R Godavarti, R Sasisekharan
Current Opinion in Chemical Biology
|
December 5, 2000
Heparin and heparan sulfate: biosynthesis, structure and function
R Sasisekharan, G Venkataraman
The Journal of Biological Chemistry
|
February 7, 1998
Heparinase I from Flavobacterium heparinum. Role of positive charge in enzymatic activity
R Godavarti, R Sasisekharan
The Journal of Biological Chemistry
|
May 30, 1998
Heparinase II from Flavobacterium heparinum. Role of histidine residues in enzymatic activity as probed by chemical modification and site-directed mutagenesis
Z Shriver, Y Hu, R Sasisekharan
Angiogenesis
|
January 1, 1997
On the regulation of fibroblast growth factor activity by heparin-like glycosaminoglycans
R Sasisekharan, S Ernst, G Venkataraman
The Journal of Biological Chemistry
|
August 29, 1998
Heparinase II from Flavobacterium heparinum. Role of cysteine in enzymatic activity as probed by chemical modification and site- directed mutagenesis
Z Shriver, Y Hu, K Pojasek, et al.
The Journal of Biological Chemistry
|
February 6, 1999
Biochemical investigations and mapping of the calcium-binding sites of heparinase I from Flavobacterium heparinum
Z Shriver, D Liu, Y Hu, et al.
Biochemistry
|
April 5, 2000
Histidine 295 and histidine 510 are crucial for the enzymatic degradation of heparan sulfate by heparinase III
K Pojasek, Z Shriver, Y Hu, et al.
Science (New York, N.Y.)
|
October 16, 1999
Sequencing complex polysaccharides
G Venkataraman, Z Shriver, R Raman, et al.
Page
of 5