The enzyme activity dynamic relationship with the content of structural polypeptides of enterocyte membranes in cattle fetal

D. Masiuk
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引用次数: 1

Abstract

The article performs new data on the relationship between the hydrolytic and transport enzyme activity at different poles of the enterocytes plasmolemma of cow's fetal large intestine with the content of individual fractions of polypeptides. An expressive direct dependence of enzyme activity dynamics on the apical and basolateral membranes of enterocytes containing low molecular weight proteins and an inverse relationship with the concentration of proteins with medium and large molecular weights has been proved. It was found that the alkaline activity of the phosphatase and γ-glutamyltransferase on the apical domain of enterocyte plasmolemma is directly related to the proteins content with molecular masses of 9.6–14.2 kD, 21 kD, 22.5 kD, 26 kD, 33 kD, 35 kD, 170–185 kD, and 205 kD (P ≤ 0.05–0.001). Gamma-glutamyltransferase activity is straightly related to protein quantity with molecular weights of 15.5 kDa and 39 kD (P ≤ 0.05). In contrast, alkaline phosphatase and GGT activity have inverse correlations with the content of polypeptides with molecular masses of 46 kD, 63 kD, and 250 kD in the apical membrane of enterocytes (P ≤ 0.01–0.001). The lactase activity in the cattle enterocytes apical membrane during the test period has significant direct correlations only with the amount of the polypeptide of polypeptides with molecular weights of 31 kD, 39 kD, and 100 kD (P ≤ 0.05–0.01) and inverse relationships containing proteins with molecular masses of 46 kD and 120 kD (P ≤ 0.05). A linear dependence of the different ATPase activity of the apical membrane of red blood cells containing proteins with molecular weights of 9.6–14.2 kD, 15.5 kD, 21 kD, 22.5 kD, 33 kD, 35 kD, 39 kD, and 205 kD (P ≤ 0.05–0.001) was observed. Alkaline phosphatase activity in the apical membrane of enterocytes is only directly related to the number of proteins with molecular weights of 17 kD and 24 kD (P ≤ 0.001) in this domain. It inversely depends on the content of proteins with molecular masses of 9.6–14.2 kD and 52 kD (P ≤ 0.001). G-glutamyltransferase activity is inversely related to protein content with molecular weights of 43 kD, 52 kD, 66 kD, 87 kD, and 100 kD and 155 kD (P ≤ 0.001). The Ca2+, Mg2+-ATPase of the basolateral membrane activity of enterocytes is directly related to the protein amount with molecular weights of 26 kD (P ≤ 0.01), Mg2+-ATPase and Mg2+-ATPase with protein content with the molecular value of 100 kD (P ≤ 0.05).
牛胎儿肠细胞膜结构多肽含量与酶活性的动态关系
本文对奶牛胎儿大肠肠细胞质膜不同极性水解和转运酶活性与多肽单个组分含量之间的关系进行了新的研究。酶活性动态直接依赖于含有低分子量蛋白质的肠细胞的顶膜和基底膜,并与中、大分子质量蛋白质的浓度呈反比关系。结果表明,肠细胞质膜顶端结构域磷酸酶和γ-谷氨酰转移酶的碱性活性与其分子量为9.6 ~ 14.2 kD、21 kD、22.5 kD、26 kD、33 kD、35 kD、170 ~ 185 kD和205 kD的蛋白含量直接相关(P≤0.05 ~ 0.001)。γ -谷氨酰转移酶活性与蛋白数量直接相关,分子量分别为15.5 kDa和39 kD (P≤0.05)。而碱性磷酸酶和GGT活性与肠细胞顶膜中分子量为46、63、250 kD的多肽含量呈负相关(P≤0.01 ~ 0.001)。试验期间牛肠细胞顶膜乳糖酶活性仅与分子量为31 kD、39 kD和100 kD的多肽的多肽含量呈显著正相关(P≤0.05 ~ 0.01),与分子量为46 kD和120 kD的蛋白含量呈显著负相关(P≤0.05)。在含有分子量为9.6 ~ 14.2 kD、15.5 kD、21 kD、22.5 kD、33 kD、35 kD、39 kD和205 kD蛋白的红细胞顶膜中,atp酶活性呈线性相关(P≤0.05 ~ 0.001)。肠细胞顶膜碱性磷酸酶活性仅与该结构域内分子量为17 kD和24 kD的蛋白数量直接相关(P≤0.001)。与分子质量为9.6 ~ 14.2 kD和52 kD的蛋白含量成反比(P≤0.001)。g -谷氨酰转移酶活性与分子量为43 kD、52 kD、66 kD、87 kD、100 kD和155 kD的蛋白质含量呈负相关(P≤0.001)。肠细胞底侧膜Ca2+、Mg2+-ATPase活性与分子量为26 kD的蛋白含量(P≤0.01)、分子值为100 kD的蛋白含量(P≤0.05)直接相关。
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