نتایج جستجو برای: enzymatic degradation

تعداد نتایج: 201826  

2017
Ngoc Luong Nguyen Faisal Ibney Hai Jinguo Kang S Faraj Magram William Price Long Nghiem Luong N. Nguyen Faisal I. Hai Saleh F. Magram William E. Price Long D. Nghiem

This study investigated the removal of five selected non-phenolic trace organic contaminants (TrOC) by extracellular enzyme extract from a white-rot fungus. Except diclofenac, no other investigated non-phenolic TrOC were degraded by the extracellular enzyme extract. Improvement of enzymatic degradation of all TrOC was achieved in the presence of a redox mediator, namely, 1-hydroxybenzotriazole ...

Journal: :Physical review letters 2011
Eyal Karzbrun Jonghyeon Shin Roy H Bar-Ziv Vincent Noireaux

A complete gene expression reaction is reconstituted in a cell-free system comprising the entire endogenous transcription, translation, as well as mRNA and protein degradation machinery of E. coli. In dissecting the major reaction steps, we derive a coarse-grained enzymatic description of biosynthesis and degradation, from which ten relevant rate constants and concentrations are determined. Gov...

Journal: :Biochemistry 2013
Daniel Herschlag Aditya Natarajan

Enzymes are remarkable catalysts that lie at the heart of biology, accelerating chemical reactions to an astounding extent with extraordinary specificity. Enormous progress in understanding the chemical basis of enzymatic transformations and the basic mechanisms underlying rate enhancements over the past decades is apparent. Nevertheless, it has been difficult to achieve a quantitative understa...

2004
A. D. Deshpande K. G. Baheti N. R. Chatterjee

Recent developments in the chemistry and biology of βlactam antibiotics which culminated with the introduction of several clinically useful classical and nonclassical β-lactams have been most thrilling and highly rewarding. While this review touches upon the historical development of β-lactams and their reactivity in a nutshell, it provides an overview of various aspects of chemical and enzymat...

2013
Shuhei Inada Kunihiko Watanabe

Meiothermus ruber H328 was isolated from Arima Hot Springs, Kobe, Japan, as a moderate thermophile. It has a strong ability to degrade intact chicken feathers. The enzymatic mechanism of the strain for feather degradation is unclear. The draft genome suggests potent enzyme candidates for degradation of keratin, a hard-to-degrade protein found in feathers.

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