Abstract
1. The cell walls of Corynebacterium tritici contain much carbohydrate and their mucopeptide contains diaminobutyric acid instead of lysine or diaminopimelic acid. They are resistant to lysozyme. 2. The residue after extraction with hot formamide contains only about 10% less carbohydrate but is attacked by lysozyme. Lysozyme also slowly attacks cell walls treated with fluorodinitrobenzene and more rapidly cell walls that have been N-acetylated. 3. All these processes block the free gamma-amino groups of diaminobutyric acid present in the untreated cell wall. Hot formamide introduces formyl groups, as shown by its ability to make formylglycine and diformyl-lysine under the same conditions. 4. N-Formyl groups are also introduced into the cell walls of Micrococcus lysodeikticus by hot formamide, but this change increases only slightly their already great sensitivity to lysozyme. N-Acetylation also increases sensitivity to lysozyme.
Keywords
BACILLUS MEGATERIUM
CELL STRUCTURE
CHROMATOGRAPHY
CORYNEBACTERIUM
EXPERIMENTAL LAB STUDY
FORMAMIDE
MICROCOCCUS
MURAMIDASE
NITROBENZENES
PHARMACOLOGY
POLYSACCHARIDES
BACTERIAL
SOLVENTS
MeSH Terms
Bacillus megaterium
Carbohydrates
Cell Physiological Phenomena
Cell Wall
Chromatography
Corynebacterium
Formamides
Micrococcus
Muramidase
Nitrobenzenes
Peptidoglycan
Pharmacology
Polysaccharides, Bacterial
Research
Solvents
Chemicals
Carbohydrates
Formamides
Nitrobenzenes
Peptidoglycan
Polysaccharides, Bacterial
Solvents
formamide
Muramidase
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
PERKINS H R
References (19)
19 references, click to expand
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