<p>The optimal temperature was determined by measuring the enzyme activity at selected temperatures from 40–80°C. The optimal pH was determined in several buffers with a range from 7.0–10.0 (50 mM): Tris-HCl (7.0–9.0) and CAPS (9.5–10.0). The thermostability was determined by using pre-incubated DhsU1 for 30 min at 30–90°C.</p
<p>(A) Effects of temperature on lipase activity (○) and thermostability of the lipase (•). For effe...
<p>(A) Effect of pH on Aga-F75M activity. (B) pH stability of Aga-F75M. (C) Effect of temperature on...
<p><b>(A)</b> The residual activities of the enzyme were measured after incubation at 45°C for diffe...
<p>A. Temperature optimum: rOs1BGlu4 (0.25 µg) was assayed with 1 mM <i>p</i>NPGlc in phosphate buff...
<p>(A) Optimum temperature for enzyme activity. (B) Thermostability of LaclK at 60, 80 and 90°C with...
<p>(<b>A)</b> Effect of pH on enzyme activity assayed at 60°C. (<b>B)</b> pH stability. The enzyme a...
<p>A. The optimal temperature was determined at various temperatures (30°C–70°C) and at pH 4.5. B. T...
<p>(a) Effect of pH on enzymatic activity, measured in 50 mM glycine-HCl buffer (pH 2.5–3.5, closed ...
<p>The recombinant CmLOX10 and CmLOX13 proteins displayed the highest catalytic activity at pH 5.0 (...
<p>(A) Effect of pH on β-glucosidase activity. The enzyme assay was performed at 80°C for 10 min. (B...
The optimum temperature is commonly determined in enzyme characterization. A search in the PubMed da...
<p>Thermostability of (A) PL1A; (B) PL1B; (C) PL9 towards PGA, after 30 min of incubation of the enz...
<p>(a) Effects of temperature, from 20°C to 45°C, on enzyme activity in the presence of Mg<sup>2+</s...
<p>(<b>a</b>) Optimum temperature of <i>Ye</i>SodA and <i>Ye</i>SodB was 4°C (<b>b</b>) while optimu...
The optimum temperature is commonly determined in enzyme characterization. A search in the PubMed da...
<p>(A) Effects of temperature on lipase activity (○) and thermostability of the lipase (•). For effe...
<p>(A) Effect of pH on Aga-F75M activity. (B) pH stability of Aga-F75M. (C) Effect of temperature on...
<p><b>(A)</b> The residual activities of the enzyme were measured after incubation at 45°C for diffe...
<p>A. Temperature optimum: rOs1BGlu4 (0.25 µg) was assayed with 1 mM <i>p</i>NPGlc in phosphate buff...
<p>(A) Optimum temperature for enzyme activity. (B) Thermostability of LaclK at 60, 80 and 90°C with...
<p>(<b>A)</b> Effect of pH on enzyme activity assayed at 60°C. (<b>B)</b> pH stability. The enzyme a...
<p>A. The optimal temperature was determined at various temperatures (30°C–70°C) and at pH 4.5. B. T...
<p>(a) Effect of pH on enzymatic activity, measured in 50 mM glycine-HCl buffer (pH 2.5–3.5, closed ...
<p>The recombinant CmLOX10 and CmLOX13 proteins displayed the highest catalytic activity at pH 5.0 (...
<p>(A) Effect of pH on β-glucosidase activity. The enzyme assay was performed at 80°C for 10 min. (B...
The optimum temperature is commonly determined in enzyme characterization. A search in the PubMed da...
<p>Thermostability of (A) PL1A; (B) PL1B; (C) PL9 towards PGA, after 30 min of incubation of the enz...
<p>(a) Effects of temperature, from 20°C to 45°C, on enzyme activity in the presence of Mg<sup>2+</s...
<p>(<b>a</b>) Optimum temperature of <i>Ye</i>SodA and <i>Ye</i>SodB was 4°C (<b>b</b>) while optimu...
The optimum temperature is commonly determined in enzyme characterization. A search in the PubMed da...
<p>(A) Effects of temperature on lipase activity (○) and thermostability of the lipase (•). For effe...
<p>(A) Effect of pH on Aga-F75M activity. (B) pH stability of Aga-F75M. (C) Effect of temperature on...
<p><b>(A)</b> The residual activities of the enzyme were measured after incubation at 45°C for diffe...