Stabilization of enzyme prepareition protosubtilin G3X for use it on poultry farming

O. Selezniova, S. Tsehmistrenko, V. Polishchuk, S. Polishchuk
{"title":"Stabilization of enzyme prepareition protosubtilin G3X for use it on poultry farming","authors":"O. Selezniova, S. Tsehmistrenko, V. Polishchuk, S. Polishchuk","doi":"10.33245/2310-9289-2018-145-2-54-61","DOIUrl":null,"url":null,"abstract":"Enzyme preparations witchused in animal breeding are unstable. Instability is due to a partial or complete inactivation of the enzymes in the gastrointestinal tract under the influence of a strongly acidic environment, inhibitors and proteases. Increasing the effectiveness of the use of exogenous enzyme preparations is possible by the creation of stabilized forms of biopreparations. To do this, use the principles and methods of engineering enzymology. The aim of the research is to determine the optimal conditions for the immobilization of the enzyme preparation of protosubtilin G3X (proteolytic spectrum of the action) by the adsorption method. Conduct a comparative evaluation of the properties of native and immobilized biocatalysts on the conditions in vitro and in vivo.\nProteolytic activity was determined by Anson's method. The amount of protein on the carrier was evaluated by reducing its concentration in the reaction mixture, measured with Lowry O.H. et al .. The activity of the immobilized enzyme was expressed as a percentage of the activity of the native enzyme. The pH solutions were measured on the potentiometer pH- 340. For immobilization weused enzyme preparation of protosubtilin G3X with an activity of 70 units / g, as a carrier we used zeolite.\nThe immobilization procedure consisted of mixing the buffer solution of the enzyme with the carrier. During research and study of the influence of the ionic strength of the solution and pH on the adsorption process it was established that the catalytic activity of the obtained preparation falls in the buffers: phosphate, citrate, borate, acetate. Moreover, with an increase in the ionic strength of the solution, regardless of its composition, the enzyme activity of preparation was reduced. Optimal for immobilization was a 0.1 M phosphate buffer solution with pH in the range of 7.0–7.4. Protosubtilin G3X lost 80 % of the initial activity during immobilization in water.\nWhen determining the capacity of a carrier, it is found that 1 g of zeolite adsorbs 29.8 mg of protein. The maximum specific activity of the enzyme (0.16 U / mg protein) is appeared at the optimum load of the carrier 22.5 mg protein per 1 g zeolite and corresponded to 85.7 % of the activity of the native protosubtilin G3X. Consequently, the optimal conditions for the immobilization of protosubtilin G3X on zeolite are: 0.1 M phosphate buffer solution with pH 7.0–7.4, temperature 20–25 ºС, carrier capacity 22.5 mg / g, duration of the process 2 years.\nIn experiments in vitro studied the dependence of the catalytic activity of the pH value in the range of 1.5 to 8.0. After 1 hour of incubation in the buffer solutions, it was found that the optimal value of pH for both forms of preparations coincides (pH 7.2). With pH-inactivation of native and immobilized forms of protosubtilin G3X, the loss of catalytic activity of the modified preparation was significantly less than the native. Moreover, a significant expansion of the pH profile in the acidic zone was observed for the immobilized enzyme. If the native enzyme retained 20 % of the original activity at pH 5.0 and irreversibly inactivated at pH 4.5–4.8; the immobilized enzyme retained 42 % of the activity at pH 4.0.\nWe studied the proteolytic activity of digestive enzymes in different parts of the gastrointestinal tract of broilers: goitre (pH 4.5–5.8), glandular stomach (pH 3.6–4.7), duodenum (pH 5.7–6.2). The proteolytic activity of the contents of goiter in the groups of chickens witch received native and immobilized protosubtilin G3X, was the same or higher, than in the control groups (p <0.01). The value of the proteolytic activity of the contents of the glandular stomach in the group of broiler chickens witch received the native enzyme sharply decreased almost to the level of the value in the control group. same value in the group witch received the immobilized enzyme was higher by 30 % (p <0.05). There was also an increase of the proteolytic activity in the chyme of the duodenum in the experimental groups of chicks (p <0.05); however, the catalytic activity in the group witch received the immobilized enzyme, was higher by 12.8 %.\nIt should be noted that in conditions in vivo, in contrast to similar conditions in vitro, was observed partial reactivation of the catalytic properties of the native protosubtilin G3X after exposure to the strongly acid medium of the glandular stomach, which is obviously related to the biological environment of the protein molecule.\nTo show the intensity of metabolic processes witch provide growth and development of broiler, we use the integral indicator as productivity. Feeding of immobilized protosubtilin G3X to chickens positively influenced the weight gain and helped to reduce feed costs. At the end of the experiment, the weight of the chicks receiving the native enzyme was higher by 9.0 % (p> 0.1) and immobilized by 16.0 % (p <0.05) compared to the control group. The feed costs for 1 kg of gain in both experimental groups were the same (2.40 kg) and less than in the control group by 5.8 %.\nKey words: enzyme, immobilization, native enzyme, zeolite, adsorption, proteolytic activity, pH, buffer solution.","PeriodicalId":34454,"journal":{"name":"Tekhnologiia virobnitstva i pererobki produktiv tvarinnitstva","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2018-12-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Tekhnologiia virobnitstva i pererobki produktiv tvarinnitstva","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.33245/2310-9289-2018-145-2-54-61","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Enzyme preparations witchused in animal breeding are unstable. Instability is due to a partial or complete inactivation of the enzymes in the gastrointestinal tract under the influence of a strongly acidic environment, inhibitors and proteases. Increasing the effectiveness of the use of exogenous enzyme preparations is possible by the creation of stabilized forms of biopreparations. To do this, use the principles and methods of engineering enzymology. The aim of the research is to determine the optimal conditions for the immobilization of the enzyme preparation of protosubtilin G3X (proteolytic spectrum of the action) by the adsorption method. Conduct a comparative evaluation of the properties of native and immobilized biocatalysts on the conditions in vitro and in vivo. Proteolytic activity was determined by Anson's method. The amount of protein on the carrier was evaluated by reducing its concentration in the reaction mixture, measured with Lowry O.H. et al .. The activity of the immobilized enzyme was expressed as a percentage of the activity of the native enzyme. The pH solutions were measured on the potentiometer pH- 340. For immobilization weused enzyme preparation of protosubtilin G3X with an activity of 70 units / g, as a carrier we used zeolite. The immobilization procedure consisted of mixing the buffer solution of the enzyme with the carrier. During research and study of the influence of the ionic strength of the solution and pH on the adsorption process it was established that the catalytic activity of the obtained preparation falls in the buffers: phosphate, citrate, borate, acetate. Moreover, with an increase in the ionic strength of the solution, regardless of its composition, the enzyme activity of preparation was reduced. Optimal for immobilization was a 0.1 M phosphate buffer solution with pH in the range of 7.0–7.4. Protosubtilin G3X lost 80 % of the initial activity during immobilization in water. When determining the capacity of a carrier, it is found that 1 g of zeolite adsorbs 29.8 mg of protein. The maximum specific activity of the enzyme (0.16 U / mg protein) is appeared at the optimum load of the carrier 22.5 mg protein per 1 g zeolite and corresponded to 85.7 % of the activity of the native protosubtilin G3X. Consequently, the optimal conditions for the immobilization of protosubtilin G3X on zeolite are: 0.1 M phosphate buffer solution with pH 7.0–7.4, temperature 20–25 ºС, carrier capacity 22.5 mg / g, duration of the process 2 years. In experiments in vitro studied the dependence of the catalytic activity of the pH value in the range of 1.5 to 8.0. After 1 hour of incubation in the buffer solutions, it was found that the optimal value of pH for both forms of preparations coincides (pH 7.2). With pH-inactivation of native and immobilized forms of protosubtilin G3X, the loss of catalytic activity of the modified preparation was significantly less than the native. Moreover, a significant expansion of the pH profile in the acidic zone was observed for the immobilized enzyme. If the native enzyme retained 20 % of the original activity at pH 5.0 and irreversibly inactivated at pH 4.5–4.8; the immobilized enzyme retained 42 % of the activity at pH 4.0. We studied the proteolytic activity of digestive enzymes in different parts of the gastrointestinal tract of broilers: goitre (pH 4.5–5.8), glandular stomach (pH 3.6–4.7), duodenum (pH 5.7–6.2). The proteolytic activity of the contents of goiter in the groups of chickens witch received native and immobilized protosubtilin G3X, was the same or higher, than in the control groups (p <0.01). The value of the proteolytic activity of the contents of the glandular stomach in the group of broiler chickens witch received the native enzyme sharply decreased almost to the level of the value in the control group. same value in the group witch received the immobilized enzyme was higher by 30 % (p <0.05). There was also an increase of the proteolytic activity in the chyme of the duodenum in the experimental groups of chicks (p <0.05); however, the catalytic activity in the group witch received the immobilized enzyme, was higher by 12.8 %. It should be noted that in conditions in vivo, in contrast to similar conditions in vitro, was observed partial reactivation of the catalytic properties of the native protosubtilin G3X after exposure to the strongly acid medium of the glandular stomach, which is obviously related to the biological environment of the protein molecule. To show the intensity of metabolic processes witch provide growth and development of broiler, we use the integral indicator as productivity. Feeding of immobilized protosubtilin G3X to chickens positively influenced the weight gain and helped to reduce feed costs. At the end of the experiment, the weight of the chicks receiving the native enzyme was higher by 9.0 % (p> 0.1) and immobilized by 16.0 % (p <0.05) compared to the control group. The feed costs for 1 kg of gain in both experimental groups were the same (2.40 kg) and less than in the control group by 5.8 %. Key words: enzyme, immobilization, native enzyme, zeolite, adsorption, proteolytic activity, pH, buffer solution.
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酶制剂原枯草菌素G3X用于家禽养殖的稳定性研究
用于动物育种的酶制剂是不稳定的。不稳定性是由于胃肠道中的酶在强酸性环境、抑制剂和蛋白酶的影响下部分或完全失活。通过创建稳定形式的生物修复,可以增加外源性酶制剂使用的有效性。要做到这一点,使用工程酶学的原理和方法。本研究的目的是通过吸附法确定原枯草菌素G3X酶制剂的最佳固定化条件(作用蛋白水解谱)。在体外和体内条件下,对天然生物催化剂和固定化生物催化剂的性能进行比较评价。蛋白水解活性用Anson法测定。通过降低反应混合物中蛋白质的浓度来评估载体上的蛋白质量,由Lowry O.H.等人测量。固定化酶的活性以天然酶活性的百分比表示。pH溶液在电位计pH- 340上测定。固定化采用酶法制备活性为70单位/ g的原枯草菌素G3X,载体选用沸石。固定化过程包括将酶的缓冲溶液与载体混合。在研究溶液的离子强度和pH对吸附过程的影响时,确定了所获得的制剂的催化活性在缓冲液中下降:磷酸盐,柠檬酸盐,硼酸盐,醋酸盐。此外,随着溶液离子强度的增加,无论其组成如何,制备的酶活性都降低。固定的最佳条件是0.1 M的磷酸盐缓冲液,pH值在7.0-7.4之间。原枯草菌素G3X在水中固定期间失去了80%的初始活性。测定载体容量时,发现1g沸石可吸附29.8 mg蛋白质。在载体22.5 mg / 1 g沸石的最佳负载下,酶的最大比活性为0.16 U / mg蛋白,相当于原生枯草菌素G3X活性的85.7%。因此,原枯草菌素G3X在沸石上固定化的最佳条件为:0.1 M磷酸盐缓冲液,pH 7.0-7.4,温度20-25ºС,载体容量22.5 mg / g,工艺时间2年。在体外实验中研究了pH值在1.5 ~ 8.0范围内对催化活性的依赖性。在缓冲液中孵育1小时后,发现两种制剂的最佳pH值一致(pH值为7.2)。对原生和固定化形式的原枯草菌素G3X进行ph失活后,改性制剂的催化活性损失明显小于原生制剂。此外,固定化酶在酸性区域的pH分布显著扩大。如果天然酶在pH 5.0时保持20%的活性,在pH 4.5-4.8时不可逆失活;固定化酶在pH 4.0条件下保持42%的活性。研究了肉仔鸡胃肠道不同部位(甲状腺(pH 4.5 ~ 5.8)、腺胃(pH 3.6 ~ 4.7)、十二指肠(pH 5.7 ~ 6.2)消化酶的蛋白水解活性。原生和固定化原枯草菌素G3X组鸡甲状腺肿内容物的蛋白水解活性与对照组相同或高于对照组(p < 0.1),与固定化组相比提高了16.0% (p <0.05)。两试验组每增重1 kg的饲料成本相同(2.40 kg),比对照组低5.8%。关键词:酶,固定化,天然酶,沸石,吸附,蛋白水解活性,pH,缓冲溶液。
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