نتایج جستجو برای: active site cavity

تعداد نتایج: 828256  

Journal: :The Journal of biological chemistry 2008
Cédric Bauvois Lilian Jacquamet Adrienne L Huston Franck Borel Georges Feller Jean-Luc Ferrer

The crystal structure of a cold-active aminopeptidase (ColAP) from Colwellia psychrerythraea strain 34H has been determined, extending the number of crystal structures of the M1 metallopeptidase family to four among the 436 members currently identified. In agreement with their sequence similarity, the overall structure of ColAP displayed a high correspondence with leukotriene A4 hydrolase (LTA4...

2011
Simonetta Oliaro-Bosso Giulia Caron Silvia Taramino Giuseppe Ermondi Franca Viola Gianni Balliano

In oxidosqualene cyclases (OSCs), an enzyme which has been extensively studied as a target for hypocholesterolemic or antifungal drugs, a lipophilic channel connects the surface of the protein with the active site cavity. Active site and channel are separated by a narrow constriction operating as a mobile gate for the substrate passage. In Saccharomyces cerevisiae OSC, two aminoacidic residues ...

Journal: :The Plant cell 2007
Sotirios C Kampranis Daphne Ioannidis Alan Purvis Walid Mahrez Ederina Ninga Nikolaos A Katerelos Samir Anssour Jim M Dunwell Jörg Degenhardt Antonios M Makris Peter W Goodenough Christopher B Johnson

Terpene synthases are responsible for the biosynthesis of the complex chemical defense arsenal of plants and microorganisms. How do these enzymes, which all appear to share a common terpene synthase fold, specify the many different products made almost entirely from one of only three substrates? Elucidation of the structure of 1,8-cineole synthase from Salvia fruticosa (Sf-CinS1) combined with ...

Journal: :Drug metabolism and disposition: the biological fate of chemicals 2010
Britta Bonn Collen M Masimirembwa Neal Castagnoli

CYP2D6 and CYP3A4, two members of the cytochrome P450 superfamily of monooxygenases, mediate the biotransformation of a variety of xenobiotics. The two enzymes differ in substrate specificity and size and characteristics of the active site cavity. The aim of this study was to determine whether the catalytic properties of these isoforms, reflected by the differences observed from crystal structu...

Journal: :Chemical science 2015
Natali V Di Russo Heather L Condurso Kunhua Li Steven D Bruner Adrian E Roitberg

Molecular oxygen plays an important role in a wide variety of enzymatic reactions. Through recent research efforts combining computational and experimental methods a new view of O2 diffusion is emerging, where specific channels guide O2 to the active site. The focus of this work is DpgC, a cofactor-independent oxygenase. Molecular dynamics simulations, together with mutagenesis experiments and ...

Journal: :Acta crystallographica. Section D, Biological crystallography 2014
Priscila Oliveira de Giuseppe Tatiana de Arruda Campos Brasil Souza Flavio Henrique Moreira Souza Leticia Maria Zanphorlin Carla Botelho Machado Richard John Ward Joao Atilio Jorge Rosa dos Prazeres Melo Furriel Mario Tyago Murakami

Product inhibition of β-glucosidases (BGs) by glucose is considered to be a limiting step in enzymatic technologies for plant-biomass saccharification. Remarkably, some β-glucosidases belonging to the GH1 family exhibit unusual properties, being tolerant to, or even stimulated by, high glucose concentrations. However, the structural basis for the glucose tolerance and stimulation of BGs is stil...

Journal: :The Journal of biological chemistry 2001
J B Thoden T M Wohlers J L Fridovich-Keil H M Holden

UDP-galactose 4-epimerase catalyzes the interconversion of UDP-galactose and UDP-glucose during normal galactose metabolism. One of the key structural features in the proposed reaction mechanism for the enzyme is the rotation of a 4'-ketopyranose intermediate within the active site pocket. Recently, the three-dimensional structure of the human enzyme with bound NADH and UDP-glucose was determin...

Journal: :The Journal of biological chemistry 2002
Todd A Naumann William S Reznikoff

Tn5 transposase (Tnp) is a 53.3-kDa protein that is encoded by and facilitates movement of transposon Tn5. Tnp monomers contain a single active site that is responsible for catalyzing a series of four DNA breaking/joining reactions at one transposon end. Based on primary sequence homology and protein structural information, we designed and constructed a series of plasmids that encode for Tnps c...

2003
R. T. Raines

Ribonuclease A (RNase A; EC 3.1.27.5) was perhaps the most studied enzyme of the 20th century and is the best characterized ribonuclease. The “A” in its name refers not to its substrate specificity, but to the predominant form of the enzyme produced by the bovine pancreas. RNase A is unmodified, whereas RNase B, RNase C, and RNase D are mixtures of glycoforms. Because of its availability in lar...

Journal: :Biochemical Society transactions 1980
V Massey P Hemmerich

The chemical reactivity of 8-chloroflavins and 8-mercaptoflavins has been exploited in order to examine the orientation of protein-bound flavins relative to solvent. The apoprotein form of a series of flavoproteins was prepared and the native flavin was replaced by either 8-C1-flavin or 8-mercaptoflavin (FAD, FMN, or riboflavin form as was appropriate). The reconstituted proteins were exposed t...

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