Exact(4)
The air temperature rise leads to significant changes in the regional cryosphere including spring snow cover retreat, less frozen soil in the winter season, deeper annual thaw propagation in the permafrost zone (deeper active layer), and melting of glaciers.
The enzyme has the common eight-fold TIM-barrel structure of family 10 xylanases; however, unlike non-alkaline active xylanases, it has a highly negatively charged surface and a deeper active site cleft.
Furthermore, these hydrothermal networks may extend over large extents of YNP, establishing interconnected subsurface 'highways' for microbial migration and genomic information exchange extending through shallow, permeable glacial sediments and possibly into deeper active faults extending 4 6 km below the YNP surface (White et al. 1975; Fournier 1989) (Fig. 5).
This generates a remarkably wider and deeper active site cleft than in VH1.
Similar(55)
The models of [−1A]N-TIMP-3 had additional interactions with the deeper active-site clefts of ADAM17, ADAMTS-4 and ADAMTS-5 that were not present in the MMP-1 complexes.
The catalytic domain of CES1 encompasses a serine hydrolase catalytic triad that is located at the bottom of a deep active site cleft (Fig. 2).
The results indicated that the seismogenic crust in the study area is considered to be the deepest active crust in Egypt.
They used the technique of deep active ion etching to fabricate the pump channel, diffuser and nozzle in the same depth of 0.3 mm, as well as the technique of anode sputtering and technique of silicon processing.
South-facing slopes are characterized by a deep active layer and warm and well-drained soils with probable drought stress in mid-summer; the ALT depends on the year, but is generally approximately 120 cm for south-facing slopes.
We synthesized a fluorogenic dansylamide derivative (JB2-48), which fills the entire (15 Å deep) active site pocket of human carbonic anhydrase I, and investigated the contributions of sulfonamide and hydrophobic regions of the ligand structure on the spectral, kinetic, and thermodynamic properties of the enzyme ligand complex.
Analysis and simulations of the steady-state CH4, CO2 and O2 gas profiles showed that in a 15-cm-deep active zone, CH4 oxidation followed first-order kinetics with respect to CH4 with a high apparent first-order rate constant of ∼ 30 h− 1.
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