Interplay of metal ions and urease

文献情報

出版日 2009-04-09
DOI 10.1039/B903311D
インパクトファクター 0
著者

Eric L. Carter, Nicholas Flugga, Jodi L. Boer, Scott B. Mulrooney



要旨

Urease, the first enzyme to be crystallized, contains a dinuclear nickel metallocenter that catalyzes the decomposition of urea to produce ammonia, a reaction of great agricultural and medical importance. Several mechanisms of urease catalysis have been proposed on the basis of enzyme crystal structures, model complexes, and computational efforts, but the precise steps in catalysis and the requirement of nickel versus other metals remain unclear. Purified bacterial urease is partially activated via incubation with carbon dioxide plus nickel ions; however, in vitro activation also has been achieved with manganese and cobalt. In vivo activation of most ureases requires accessory proteins that function as nickel metallochaperones and GTP-dependent molecular chaperones or play other roles in the maturation process. In addition, some microorganisms control their levels of urease by metal ion-dependent regulatory mechanisms.

掲載誌

Metallomics

Metallomics
CiteScore: 7
自己引用率: 6.9%
年間論文数: 77

Metallomics publishes cutting-edge investigations aimed at elucidating the identification, distribution, dynamics, role and impact of metals and metalloids in biological systems. Studies that address the “what, where, when, how and why” of these inorganic elements in cells, tissues, organisms, and various environmental niches are welcome, especially those employing multidisciplinary approaches drawn from the analytical, bioinorganic, medicinal, environmental, biophysical, cell biology, plant biology and chemical biology communities. We are particularly interested in articles that enhance our chemical and/or physical understanding of the molecular mechanisms of metal-dependent life processes, and those that probe the common space between metallomics and other ‘omics approaches to uncover new insights into biological processes. Metallomics seeks to position itself at the forefront of those advances in analytical chemistry destined to clarify the enormous complexity of biological systems. As such, we particularly welcome those papers that outline cutting-edge analytical technologies, e.g., in the development and application of powerful new imaging, spectroscopic and mass spectrometric modalities. Work that describes new insights into metal speciation, trafficking and dynamics in complex systems or as a function of microenvironment are also strongly encouraged. Studies that examine the interconnectivity of metal-dependent processes with systems level responses relevant to organismal health or disease are also strongly encouraged, for example those that probe the effect of chemical exposure on metal homeostasis or the impact of metal-based drugs on cellular processes.

おすすめサプライヤー

ドイツWerksitz株式会社
ドイツプレムニッツ工業団地
中国蘇州昇井環境保護設備有限公司
エルサルバドルビジネス&エージェント
エストニアオルクアイ・トルロセン
ドイツBureau Veritas Consumer Products Germany GmbH
中国东莞市合创新材料科技有限公司 → 変革新材料科技股份有限公司;set此文本不包括多余的转换或翻译,保持地名原样。
中国石家庄祥盛建材有限公司
ドイツB ü SCH Technology GmbH & Co. KG
中国巩义市強宏梅業科技有限责任公司
免責事項
このページに表示される学術雑誌情報は、参考および研究目的のみを目的としています。当社は雑誌出版社とは提携しておらず、投稿の取り扱いも行っておりません。出版に関するお問い合わせは、各雑誌出版社に直接ご連絡ください。
表示されている情報に誤りがある場合は、[email protected] までご連絡ください。迅速に確認し、対応いたします。