Mono-ADP-ribosylation was originally discovered as the mechanism by which diphtheria toxin inactivates protein synthesis. It is now apparent that higher organisms use analogous mechanisms to regulate endogenous metabolism. Here, the relationship between bacterial toxins and vertebrate mono-ADP ribosyltransferases is explored.
机构:
UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLANDUNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLAND
FOWELL, D
MASON, D
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机构:
UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLANDUNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLAND
机构:
UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLANDUNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLAND
FOWELL, D
MASON, D
论文数: 0引用数: 0
h-index: 0
机构:
UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLANDUNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, MRC, CELLULAR IMMUNOL UNIT, OXFORD OX1 3RE, ENGLAND