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1 both monomer and hexamer are active forms of bleomycin hydrolase.
2 s not required for the enzymatic activity of bleomycin hydrolase.
3 to be mediated exclusively via the action of bleomycin hydrolase, a cysteine proteinase that is widel
4 solic bleomycin hydrolase, we found abundant bleomycin hydrolase activity associated with the ribosom
5 rate that Cys102 and His398 are required for bleomycin hydrolase activity but not hexamer formation,
7 The protein shares 40% identity with yeast bleomycin hydrolase and contains the conserved active si
8 ed by treatment of bleomycin A(2) with human bleomycin hydrolase, as judged by reversed-phase HPLC an
14 t evidence for an increased frequency of the bleomycin hydrolase (BH) V/V genotype in Alzheimer's dis
15 r candidates to carry out the cp-2 cleavage, bleomycin hydrolase (BLMH) and cathepsin Z, which are bo
17 pi, metallothioneins, human MutT homologue, bleomycin hydrolase, dihydrofolate reductase) or activat
18 had previously reported the purification of bleomycin hydrolase from yeast based on its unexpected a
19 action between the two loci in males is that bleomycin hydrolase functions as an MHC class I epitope-
23 ase, puromycin-sensitive aminopeptidase, and bleomycin hydrolase, has little impact on the processing
31 ich constitute a unique and highly conserved bleomycin hydrolase-like domain (BHYD), were essential f
36 ed to reflect the anatomical distribution of bleomycin hydrolase within the host, little has been don
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