Per ulteriori informazioni selezionare i riferimenti di interesse.
Development and characterization of antibodies specific to caspase-3-produced alpha II-spectrin 120 kDa breakdown product: marker for neuronal apoptosis
NEUROCHEMISTRY INTERNATIONAL
The use of delayed computerized tomography in the evaluation of blunt abdominal trauma: A preliminary report
AMERICAN SURGEON
THE 5 CYSTEINE RESIDUES LOCATED IN THE ACTIVE-SITE REGION OF BOVINE ASPARTYL-(ASPARAGINYL)-BETA-HYDROXYLASE ARE NOT ESSENTIAL FOR CATALYSIS
Biochimica et biophysica acta. Protein structure and molecular enzymology
SIMULTANEOUS DEGRADATION OF ALPHA-II-SPECTRIN AND BETA-II-SPECTRIN BYCASPASE-3 (CPP32) IN APOPTOTIC CELLS
The Journal of biological chemistry
'CHANCING IT'
Meanjin
CHARACTERIZATION OF CPP32-LIKE PROTEASE ACTIVITY FOLLOWING APOPTOTIC CHALLENGE IN SH-SY5Y NEUROBLASTOMA-CELLS
Journal of neurochemistry
HIGHER PLOIDY IN SACCHAROMYCES-CEREVISIAE SUPPORTS ENHANCED HEPATITIS-B VIRUS S-CLONED GENE-EXPRESSION AT THE PILOT-SCALE
Biotechnology progress
EFFECTS OF ICE-LIKE PROTEASE AND CALPAIN INHIBITORS ON NEURONAL APOPTOSIS
NeuroReport
SITE-DIRECTED MUTAGENESIS OF RESIDUES IN A CONSERVED REGION OF BOVINEASPARTYL (ASPARAGINYL) BETA-HYDROXYLASE - EVIDENCE THAT HISTIDINE-675WAS A ROLE IN BINDING FE2+
Biochemistry
MEDICAL ASPECTS OF AIDS - A FAMILY PHYSICIAN PERSPECTIVE
Canadian psychology
IDENTIFICATION OF ACTIVE-SITE RESIDUES IN BOVINE ASPARTYL (ASPARAGINYL) BETA-HYDROXYLASE BY SITE-DIRECTED MUTAGENESIS
The FASEB journal
A FULLY ACTIVE CATALYTIC DOMAIN OF BOVINE ASPARTYL (ASPARAGINYL) BETA-HYDROXYLASE EXPRESSED IN ESCHERICHIA-COLI - CHARACTERIZATION AND EVIDENCE FOR THE IDENTIFICATION OF AN ACTIVE-SITE REGION IN VERTEBRATE ALPHA-KETOGLUTARATE-DEPENDENT DIOXYGENASES
Proceedings of the National Academy of Sciences of the United Statesof America
DIMERIZATION OF THERMOMONOSPORA-FUSCA BETA-1,4-ENDOGLUCANASE-E2
Biochemistry
DISULFIDE ARRANGEMENT AND CHEMICAL MODIFICATION OF BETA-1,4-ENDOGLUCANASE-E2 FROM THERMOMONOSPORA-FUSCA
Biochemistry
DISULFIDE ARRANGEMENT AND FUNCTIONAL DOMAINS OF BETA-1,4-ENDOGLUCANASE-E5 FROM THERMOMONOSPORA-FUSCA
Biochemistry