Javascript must be enabled to continue!
Ostensible Enzyme Promiscuity: Alkene Cleavage by Peroxidases
View through CrossRef
AbstractEnzyme promiscuity is generally accepted as the ability of an enzyme to catalyse alternate chemical reactions besides the ‘natural’ one. In this paper peroxidases were shown to catalyse the cleavage of a CC double bond adjacent to an aromatic moiety for selected substrates at the expense of molecular oxygen at an acidic pH. It was clearly shown that the reaction occurs due to the presence of the enzyme; furthermore, the reactivity was clearly linked to the hemin moiety of the peroxidase. Comparison of the transformations catalysed by peroxidase and by hemin chloride revealed that these two reactions proceed equally fast; additional experiments confirmed that the peptide backbone was not obligatory for the reaction and only a single functional group of the enzyme was required, namely in this case the prosthetic group (hemin). Consequently, we propose to define such a promiscuous activity as ‘ostensible enzyme promiscuity’. Thus, we call an activity that is catalysed by an enzyme ‘ostensible enzyme promiscuity’ if the reactivity can be tracked back to a single catalytic site, which on its own can already perform the reaction equally well in the absence of the peptide backbone.
Title: Ostensible Enzyme Promiscuity: Alkene Cleavage by Peroxidases
Description:
AbstractEnzyme promiscuity is generally accepted as the ability of an enzyme to catalyse alternate chemical reactions besides the ‘natural’ one.
In this paper peroxidases were shown to catalyse the cleavage of a CC double bond adjacent to an aromatic moiety for selected substrates at the expense of molecular oxygen at an acidic pH.
It was clearly shown that the reaction occurs due to the presence of the enzyme; furthermore, the reactivity was clearly linked to the hemin moiety of the peroxidase.
Comparison of the transformations catalysed by peroxidase and by hemin chloride revealed that these two reactions proceed equally fast; additional experiments confirmed that the peptide backbone was not obligatory for the reaction and only a single functional group of the enzyme was required, namely in this case the prosthetic group (hemin).
Consequently, we propose to define such a promiscuous activity as ‘ostensible enzyme promiscuity’.
Thus, we call an activity that is catalysed by an enzyme ‘ostensible enzyme promiscuity’ if the reactivity can be tracked back to a single catalytic site, which on its own can already perform the reaction equally well in the absence of the peptide backbone.
Related Results
Molecular signatures-based prediction of enzyme promiscuity
Molecular signatures-based prediction of enzyme promiscuity
AbstractMotivation: Enzyme promiscuity, a property with practical applications in biotechnology and synthetic biology, has been related to the evolvability of enzymes. At the molec...
Alkene Reactions: The Dabdoub/Baroni Synthesis of ( ± )-Dihydroactinidiolide
Alkene Reactions: The Dabdoub/Baroni Synthesis of ( ± )-Dihydroactinidiolide
David B. Cordes of Pacific University reported (Tetrahedron Lett. 2009, 50, 1817) a simple combination of NaBH4 and Pd/C that reduced the alkene 1 to 2. This could be particularly ...
Recent Advances in Photoinduced Oxidative Cleavage of Alkenes
Recent Advances in Photoinduced Oxidative Cleavage of Alkenes
AbstractOxidative cleavage of alkenes leading to valuable carbonyl derivatives is a fundamental transformation in synthetic chemistry. In particular, ozonolysis is the mainstream m...
The cell and stress-specific canonical and non-canonical tRNA cleavage
The cell and stress-specific canonical and non-canonical tRNA cleavage
Abstract
Following stress, tRNA is cleaved to generate tRNA halves (tiRNAs). These stress-induced small RNAs have been shown to regulate translat...
Alkene and Alkyne Metathesis: Navenone B (Cossy), (+)-Asperpentyn (Daesung Lee), (-)-Amphidinolide K (Eun Lee), Norhalichondrin B (Phillips)
Alkene and Alkyne Metathesis: Navenone B (Cossy), (+)-Asperpentyn (Daesung Lee), (-)-Amphidinolide K (Eun Lee), Norhalichondrin B (Phillips)
A variety of antibiotics and immune-suppressive agents contain extended arrays of all- ( E )-polyenes. Samir Bouzbouz of CNS Rouen and Janine Cossy of ESPCI ParisTech devised ( Syn...
Heme Peroxidases
Heme Peroxidases
Heme peroxidases are widely distributed in biological systems and are involved in a wide range of processes essential for life. This book provides a comprehensive single source of ...
Reactions of Alkenes: The Usami Synthesis of (−)-Pericosine E
Reactions of Alkenes: The Usami Synthesis of (−)-Pericosine E
Dasheng Leow of the National Tsing Hua University used (Eur. J. Org. Chem. 2014, 7347) photolysis to activate the air oxidation of hydrazine to generate diimide, that then reduced ...
How to find simple and accurate rules for viral protease cleavage specificities
How to find simple and accurate rules for viral protease cleavage specificities
BACKGROUND:Proteases of human pathogens are becoming increasingly important drug targets, hence it is necessary to understand their substrate specificity and to interpret this know...

