نتایج جستجو برای: kinetic effect

تعداد نتایج: 1715547  

Journal: :Cell systems 2015
Aarash Bordbar Douglas McCloskey Daniel C Zielinski Nikolaus Sonnenschein Neema Jamshidi Bernhard O Palsson

Understanding individual variation is fundamental to personalized medicine. Yet interpreting complex phenotype data, such as multi-compartment metabolomic profiles, in the context of genotype data for an individual is complicated by interactions within and between cells and remains an unresolved challenge. Here, we constructed multi-omic, data-driven, personalized whole-cell kinetic models of e...

Journal: :iranian journal of catalysis 0
roya mahinpour department of biotechnology, faculty of chemistry, university of kashan, kashan, iran. majid ghasemi department of organic chemistry, faculty of chemistry, university of kashan, kashan, iran. zahra moosavi-nejad departmentof biotechnology, faculty of biological sciences, alzahra university, tehran, iran. zohreh zahraie department of biotechnology, faculty of chemistry, university of kashan, kashan, iran.

the effect of physiological concentrations of caffeine (purified from persian tea) on adenosine deaminase (ada) activity at physiological and pathological concentrations of adenosine (as substrate) in 50 mm tris-hcl buffer (ph 7.3) at 37°c was investigated, using uv-vis spectroscopy. ada exhibited a bi-phasic activity behavior and both phases showed positive cooperativities indicating adenosine...

2014
Shaun G. Ard Anyang Li Oscar Martinez Nicholas S. Shuman Albert A. Viggiano

Thermal rate coefficients for the title reactions computed using a quasi-classical trajectory method on an accurate global potential energy surface fitted to ∼81,000 high-level ab initio points are compared with experimental values measured between 100 and 600 K using a variable temperature selected ion flow tube instrument. Excellent agreement is found across the entire temperature range, show...

2009
Xuhui Lee Tim J. Griffis John M. Baker Kaycie A. Billmark Kyounghee Kim Lisa R. Welp

[1] The carbon and oxygen isotopes of CO2 and the oxygen isotopes of H2O are powerful tracers for constraining the dynamics of carbon uptake and water flux on land. The role of land biota in the atmospheric budgets of these isotopes has been extensively explored through the lens of leaf-scale observations. At the ecosystem scale, kinetic fractionation is associated with molecular and turbulent ...

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