Pregled bibliografske jedinice broj: 439405
Computational Investigation of Enzymatic Dehydration of Glycerol
Computational Investigation of Enzymatic Dehydration of Glycerol // The 3rd Adriatic Meeting on Computational Solutions in the Life Sciences, Book of Abstracts / Babić, Darko ; Došlić, Nadja ; Smith, David ; Tomić, Sanja ; Vlahoviček, Kristijan (ur.).
Zagreb: Centre for Computational Solutions in Life Sciences, Rudjer Boskovic Institute, 2009. str. 31-31 (predavanje, nije recenziran, sažetak, znanstveni)
CROSBI ID: 439405 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Computational Investigation of Enzymatic Dehydration of Glycerol
Autori
Barić, Danijela ; Kovačević, Borislav ; Sandala, Gregory M. ; Smith, David Matthew ; Radom, Leo
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
The 3rd Adriatic Meeting on Computational Solutions in the Life Sciences, Book of Abstracts
/ Babić, Darko ; Došlić, Nadja ; Smith, David ; Tomić, Sanja ; Vlahoviček, Kristijan - Zagreb : Centre for Computational Solutions in Life Sciences, Rudjer Boskovic Institute, 2009, 31-31
ISBN
978-953-6690-80-0
Skup
The 3rd Adriatic Meeting on Computational Solutions in the Life Sciences
Mjesto i datum
Primošten, Hrvatska, 01.09.2009. - 05.09.2009
Vrsta sudjelovanja
Predavanje
Vrsta recenzije
Nije recenziran
Ključne riječi
enzymatic dehydration of alcohols; reaction mechanism; QM/MM
Sažetak
Some bacteria are able to grow under anaerobic conditions, using non-standard carbon sources such as glycerols and diols. Enzymes which catalyze the fermentation of glycerol are coenzyme B12-dependent diol dehydratase (DDH) and B12-dependent glycerol dehydratase (GDH). Coenzyme B12 (5'-deoxyadenosyl-cobalamine) is naturally occurring organometallic copound which contains the unique Co-C sigma bond responsible for radical mechanism of catalysis. Recently, another enzyme which catalyzes the same reaction has been characterizes. However, its action is not dependent of coenzyme B12. In the present work, hybrid quantum mechanical/molecular mechanical (QM/MM) calculations are used to characterize the possible pathways for dehydration of glycerol catalyzed by B12-dependent GDH. The influences of active site amino acid residues are examined, including the protonation states of residue His143. The results are compared to those obtained earlier for B12-independent glycerol dehydratase.
Izvorni jezik
Engleski
Znanstvena područja
Kemija, Biologija
POVEZANOST RADA
Projekti:
098-0982933-2937 - Računalno proučavanje strukture i funkcije proteina (Smith, David Matthew, MZOS ) ( CroRIS)
Ustanove:
Institut "Ruđer Bošković", Zagreb