PD Patel Institute of Applied Sciences, CHARUSAT, Changa, Anand Gujarat, India.
School of Health Sciences & Technology, UPES University, Dehradun, India.
J Biomol Struct Dyn. 2024 Sep;42(15):8114-8124. doi: 10.1080/07391102.2023.2243338. Epub 2023 Aug 6.
Biological enzymes are multifunctional macromolecules that can perform hundreds of reactions simultaneously. An enzyme must possess specific characteristics to meet industrial needs, such as stability over a wide pH and temperature range and high specific activity. A phytase and xylanase mixture is generally added to poultry feed to improve the bird's health and productivity. Despite this, animal farmers have noticed no difference in productivity, and a leading cause is the high temperature at which feed is pulverized, which inactivates enzymes. A thermo-stable enzyme system can overcome these hitches. Commonly, coatings and immobilization reduce losses caused by physical-chemical factors in feed processing and digestion. To this end, we engineered the multifunctional xylanase-phytase domains on a single polypeptide fused by a helical linker. First, the ideal linker sequence was chosen by computing each selected linker's root mean square deviation (RMSD). The selected helical linker provides sufficient structural flexibility for substrate binding and product release evaluated by molecular docking and molecular dynamic simulation studies. Furthermore, a domain-domain interaction has stabilized the bridging partners, attaining the thermal optima for xylanase and phytase at 90 °C. Even at the above-optimal temperature (100 °C), the recombinant PLX was relatively stable and retained 64.2% and 59.2% activity for xylanase and phytase, respectively, when surveyed for ten hours. So far, to this date, this is the highest degree of thermostability achieved by any recombinant phytase or xylanase.Communicated by Ramaswamy H. Sarma.
生物酶是多功能的大分子,可以同时进行数百种反应。酶必须具有特定的特性才能满足工业需求,例如在较宽的 pH 和温度范围内的稳定性和高比活性。植酸酶和木聚糖酶混合物通常添加到家禽饲料中,以提高禽类的健康和生产力。尽管如此,动物饲养者注意到生产力没有差异,一个主要原因是饲料粉碎时的高温使酶失活。热稳定的酶系统可以克服这些障碍。通常,涂层和固定化可以减少饲料加工和消化过程中物理化学因素造成的损失。为此,我们在单个多肽上设计了多功能木聚糖酶-植酸酶结构域,通过螺旋接头融合在一起。首先,通过计算每个选定接头的均方根偏差 (RMSD) 来选择理想的接头序列。所选的螺旋接头为底物结合和产物释放提供了足够的结构灵活性,这是通过分子对接和分子动力学模拟研究评估的。此外,结构域-结构域相互作用稳定了桥接伙伴,使木聚糖酶和植酸酶的热最佳温度达到 90°C。即使在上述最佳温度(100°C)下,重组 PLX 也相对稳定,当在 10 小时内进行测试时,木聚糖酶和植酸酶的活性分别保留了 64.2%和 59.2%。迄今为止,这是任何重组植酸酶或木聚糖酶达到的最高热稳定性程度。由 Ramaswamy H. Sarma 传达。