نتایج جستجو برای: metalloenzyme

تعداد نتایج: 521  

Journal: :Angewandte Chemie 2021

The recent discovery of zinc-dependent retaining glycoside hydrolases (GHs), with active sites built around a Zn(Cys)3(Glu) coordination complex, has presented unresolved mechanistic questions. In particular, the proposed mechanism, depending on Zn-coordinated cysteine nucleophile and passing through thioglycosyl enzyme intermediate, remains controversial. This is primarily due to expected stab...

Journal: :Molecules 2012
Qosay Al-Balas Mohammad Hassan Buthina Al-Oudat Hassan Alzoubi Nizar Mhaidat Ammar Almaaytah

Within this study, a unique 3D structure-based pharmacophore model of the enzyme glyoxalase-1 (Glo-1) has been revealed. Glo-1 is considered a zinc metalloenzyme in which the inhibitor binding with zinc atom at the active site is crucial. To our knowledge, this is the first pharmacophore model that has a selective feature for a "zinc binding group" which has been customized within the structure...

2015
Chi Chung Lee Yilin Hu Markus W. Ribbe

UNLABELLED The L-cluster is an all-iron homolog of nitrogenase cofactors. Driven by europium(II) diethylenetriaminepentaacetate [Eu(II)-DTPA], the isolated L-cluster is capable of ATP-independent reduction of CO and CN(-) to C1 to C4 and C1 to C6 hydrocarbons, respectively. Compared to its cofactor homologs, the L-cluster generates considerably more CH4 from the reduction of CO and CN(-), which...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1998
M C Wilce C S Bond N E Dixon H C Freeman J M Guss P E Lilley J A Wilce

The structure of the proline-specific aminopeptidase (EC 3.4.11.9) from Escherichia coli has been solved and refined for crystals of the native enzyme at a 2.0-A resolution, for a dipeptide-inhibited complex at 2.3-A resolution, and for a low-pH inactive form at 2.7-A resolution. The protein crystallizes as a tetramer, more correctly a dimer of dimers, at both high and low pH, consistent with o...

2017
Hope Adamson Martin Robinson John J Wright Lindsey A Flanagan Julia Walton Darrell Elton David J Gavaghan Alan M Bond Maxie M Roessler Alison Parkin

The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to play a vital role in tuning biocatalysis. Inspired by nature, we generate a HyaA-R193L variant to disrupt a proposed Arg-His cation-π interaction in the secondary coordination sphere of the outermost, "distal", iron-sulfur cluster. This rewires the enzyme, enhancing the relative rate of H2 producti...

Journal: :Science 2008
Seigo Shima Oliver Pilak Sonja Vogt Michael Schick Marco S Stagni Wolfram Meyer-Klaucke Eberhard Warkentin Rudolf K Thauer Ulrich Ermler

Biological formation and consumption of molecular hydrogen (H2) are catalyzed by hydrogenases, of which three phylogenetically unrelated types are known: [NiFe]-hydrogenases, [FeFe]-hydrogenases, and [Fe]-hydrogenase. We present a crystal structure of [Fe]-hydrogenase at 1.75 angstrom resolution, showing a mononuclear iron coordinated by the sulfur of cysteine 176, two carbon monoxide (CO) mole...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Björn Sjöblom Maurizio Polentarutti Kristina Djinovic-Carugo

Carbonic anhydrase, a zinc metalloenzyme, catalyzes the reversible hydration of carbon dioxide to bicarbonate. It is involved in processes connected with acid-base homeostasis, respiration, and photosynthesis. More than 100 distinct human carbonic anhydrase II (HCAII) 3D structures have been generated in last 3 decades [Liljas A, et al. (1972) Nat New Biol 235:131-137], but a structure of an HC...

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