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Journal of Theoretical Biology|June 21, 1983
A mechanism for the control of patch size in mammalian cell DNA excision repairI E Collier, W H Olson, J D Regan
Mechanisms of Ageing and Development|June 1, 1982
DNA repair in a congeneic pair of mice with different longevitiesI E Collier, D M Popp, W H Lee, et al.
Genomics|March 1, 1991
On the structure and chromosome location of the 72- and 92-kDa human type IV collagenase genesI E Collier, G A Bruns, G I Goldberg, et al.
Biophysical Journal|September 22, 2001
Substrate recognition by gelatinase A: the C-terminal domain facilitates surface diffusionI E Collier, S Saffarian, B L Marmer, et al.
The Journal of Biological Chemistry|April 5, 1992
Alanine scanning mutagenesis and functional analysis of the fibronectin-like collagen-binding domain from human 92-kDa type IV collagenaseI E Collier, P A Krasnov, A Y Strongin, et al.
Oncogene|January 1, 1990
Adenovirus E1A represses protease gene expression and inhibits metastasis of human tumor cellsS M Frisch, R Reich, I E Collier, et al.
Annals of the New York Academy of Sciences|January 1, 1990
Secreted proteases. Regulation of their activity and their possible role in metastasisG I Goldberg, S M Frisch, C He, et al.
Kidney International|January 1, 1993
Human 92 kDa type IV collagenase: functional analysis of fibronectin and carboxyl-end domainsA Y Strongin, I E Collier, P A Krasnov, et al.
Nature Structural Biology|November 1, 1995
Crystal structure of the haemopexin-like C-terminal domain of gelatinase AA M Libson, A G Gittis, I E Collier, et al.
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