Results 91 to 100 of about 3,395 (135)
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Biological markers in pneumoconioses : plasma metalloendopeptidase and matrix metalloendopeptidase
1991The design and validation ofbiomarkers can contribute significantly to early detection of biological effects and identification ofthose who are at risk ofcoal workers' pneumoconiosis (CWP). This research is designed to evaluate diflerent plasma metalloendopeptidase and metalloproteinase activities to estimate harmfui exposure in coalminers from ...
Porcher, Jean-Marc +6 more
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Journal of Neurochemistry, 1984
Abstract: Membrane‐bound neutral metalloendopeptidase (“enkephalinase”) was purified from rabbit brain and compared with a homogeneous preparation of a similar enzyme (EC 3.4.24.11) isolated from rabbit kidney. The two enzymes had the same pH optimum and the same apparent molecular weight.
J, Almenoff, M, Orlowski
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Abstract: Membrane‐bound neutral metalloendopeptidase (“enkephalinase”) was purified from rabbit brain and compared with a homogeneous preparation of a similar enzyme (EC 3.4.24.11) isolated from rabbit kidney. The two enzymes had the same pH optimum and the same apparent molecular weight.
J, Almenoff, M, Orlowski
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Action of neutral metalloendopeptidase (“enkephalinase”) on β-endorphin
Neuropeptides, 1985Human beta-endorphin was digested by neutral metalloendopeptidase from rabbit kidney and the products were isolated and identified. Based on the structure and yield of the fragments, the major cleavage sites were identified with the Leu17-Phe18, Gly3-Phe4, Pro13-Leu14 and Ile22-Ile23 peptide bonds of the beta-endorphin structure.
L, Gráf, A, Páldi, A, Patthy
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Structure modeling of a metalloendopeptidase from Corynebacterium pseudotuberculosis
Computers in Biology and Medicine, 2012Metalloendopeptidases are zinc-dependent hydrolases enzymes with many different roles in biological systems, ranging from remodeling conjunctive tissue to removing signaling sequences from nascent proteins. Here, we describe the three-dimensional structure of the metalloendopeptidase from Corynebacterium pseudotuberculosis generated by homology ...
Luis Guimarães +8 more
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Substrate-related potent inhibitors of brain metalloendopeptidase
Biochemistry, 1988Rat brain metalloendopeptidase (EC 3.4.24.15) generates Leu- and Met-enkephalin from several larger opioid peptides and is capable of degrading a number of neuropeptides. Substrate-related N-(1-carboxy-3-phenylpropyl) peptide derivatives were synthesized and tested for enzyme inhibition.
M, Orlowski, C, Michaud, C J, Molineaux
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Metalloendopeptidase EC 3.4.24.15 in Neurodegeneration
2002The metalloendopeptidases represent a fascinating class of enzymes involved in neurodegenerative diseases. Many metalloendopeptidases are integrally involved in brain processes. This family boasts enkephalinase (24.11), neurolysin (24.16), and others.
Carmela R. Abraham, Franchot Slot
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Degradation of bradykinin by a metalloendopeptidase from Streptococcus pyogenes
Journal of Oral Biosciences, 2016Streptococcus pyogenes secretes streptococcal pyrogenic exotoxin B (SpeB), which cleaves kininogen to liberate bradykinin. In addition, this bacterium also has cell-associated bradykinin-degrading activity. Here, we characterized the bradykinin-degrading enzyme produced by S.
Yoichi, Miyamoto +11 more
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Structural aspects of the metzincin clan of metalloendopeptidases
Molecular Biotechnology, 2003Metalloendopeptidases are present across all kingdoms of living organisms; they are ubiquitous and widely involved in metabolism regulation through their ability either to extensively degrade proteins or to selectively hydrolyze specific peptide bonds. They must be subjected to exquisite spatial and temporal control to prevent this vast potential from ...
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Features of gene expression of Bacillus pumilus metalloendopeptidase
Biochemistry (Moscow), 2016Features of gene expression of the secreted Bacillus pumilus metalloendopeptidase belonging to the adamalysin/reprolysin family were investigated. In the regulatory region of the gene, we identified hypothetical binding sites for transcription factors CcpA and TnrA.
Rudakova N. +4 more
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Peptidyl-Asp metalloendopeptidase.
Methods in enzymology, 1995M L, Hagmann +3 more
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