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Proteins|October 1, 1994
Coiled-coil stutter and link segments in keratin and other intermediate filament molecules: a computer modeling studyA C North, P M Steinert, D A ParryThe Journal of Investigative Dermatology|November 1, 1994
Structural features of keratin intermediate filamentsP M Steinert, A C North, D A ParryBiochemistry|July 26, 1988
Solid-state NMR studies of the dynamics and structure of mouse keratin intermediate filamentsJ W Mack, D A Torchia, P M SteinertThe Journal of Cell Biology|April 1, 1984
Human epithelial cell intermediate filaments: isolation, purification, and characterizationM W Aynardi, P M Steinert, R D GoldmanBiochemistry|January 5, 1982
O-phosphoserine content of intermediate filament subunitsP M Steinert, M L Wantz, W W IdlerBiochemical and Biophysical Research Communications|April 5, 1996
Inactive zymogen and highly active proteolytically processed membrane-bound forms of the transglutaminase 1 enzyme in human epidermal keratinocytesP M Steinert, S I Chung, S Y KimThe Biochemical Journal|August 15, 1986
Structural studies on lamin. Similarities and differences between lamin and intermediate-filament proteinsD A Parry, J F Conway, P M SteinertThe Journal of Biological Chemistry|August 10, 2001
Subfilamentous protofibril structures in fibrous proteins: cross-linking evidence for protofibrils in intermediate filamentsD A Parry, L N Marekov, P M SteinertProceedings of the National Academy of Sciences of the United States of America|August 1, 1980
Intermediate filaments of baby hamster kidney (BHK-21) cells and bovine epidermal keratinocytes have similar ultrastructures and subunit domain structuresP M Steinert, W W Idler, R D GoldmanProceedings of the National Academy of Sciences of the United States of America|July 21, 1999
A novel function for transglutaminase 1: attachment of long-chain omega-hydroxyceramides to involucrin by ester bond formationZ Nemes, L N Marekov, L Fésüs, et al.Pageof 27