Atomic description of an enzyme reaction dominated by proton tunneling.

Article Details

Citation

Masgrau L, Roujeinikova A, Johannissen LO, Hothi P, Basran J, Ranaghan KE, Mulholland AJ, Sutcliffe MJ, Scrutton NS, Leys D

Atomic description of an enzyme reaction dominated by proton tunneling.

Science. 2006 Apr 14;312(5771):237-41.

PubMed ID
16614214 [ View in PubMed
]
Abstract

We present an atomic-level description of the reaction chemistry of an enzyme-catalyzed reaction dominated by proton tunneling. By solving structures of reaction intermediates at near-atomic resolution, we have identified the reaction pathway for tryptamine oxidation by aromatic amine dehydrogenase. Combining experiment and computer simulation, we show proton transfer occurs predominantly to oxygen O2 of Asp(128)beta in a reaction dominated by tunneling over approximately 0.6 angstroms. The role of long-range coupled motions in promoting tunneling is controversial. We show that, in this enzyme system, tunneling is promoted by a short-range motion modulating proton-acceptor distance and no long-range coupled motion is required.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
Aralkylamine dehydrogenase light chainP84887Details
Aralkylamine dehydrogenase heavy chainP84888Details