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山药(薯蓣属)纯化酪氨酸酶作为生物催化剂在交联蛋白质网络合成中的潜力。

Potentials of purified tyrosinase from yam ( spp) as a biocatalyst in the synthesis of cross-linked protein networks.

作者信息

Ilesanmi Olutosin Samuel, Adedugbe Omowumi Funke, Adewale Isaac Olusanjo

机构信息

Department of Chemical Sciences, Achievers University, Owo, Ondo State, Nigeria.

Department of Biochemistry and Molecular Biology, Obafemi Awolowo University, Ile-Ife, Nigeria.

出版信息

Heliyon. 2021 Aug 18;7(8):e07831. doi: 10.1016/j.heliyon.2021.e07831. eCollection 2021 Aug.

Abstract

We report the usefulness of yam tyrosinase as a catalyst in the synthesis of cross-linked protein networks for biopolymers. The enzyme was purified using aqueous two-phase partitioning (ATPs) and peptide mapping on SDS-PAGE was carried out to ascertain degree of similarities of tyrosinase from the yam species. The mapping revealed distinct peptide bands of 3, 4, 4 and 2 for tyrosinase from , , and respectively purified using conventional method. In contrast, continuous broad band was noticed for the ATPS-purified enzymes due to bound polyethylene glycol (PEG). Tyrosinase from with overall better properties was used in the synthesis of cross-linked protein networks. The enzyme catalyzed conversion of soluble proteins from whey, moringa leaves, pumpkin leaves and cow blood into fibrous (cross-linked) protein networks for improved properties and functionalities. The purified tyrosinase from was also covalently bonded to bovine serum albumin (BSA) forming tyrosinase-BSA adduct with molecular weight of 118 ± 2.0 kDa, revealing its potential as a reporter enzyme by reporting BSA. The overall result further reinforces yam tyrosinase as an enzyme of interest in various biotechnological applications.

摘要

我们报道了山药酪氨酸酶作为催化剂在生物聚合物交联蛋白网络合成中的应用。使用双水相分配法(ATPs)纯化该酶,并通过SDS-PAGE上的肽图谱分析来确定不同山药品种酪氨酸酶的相似程度。该图谱显示,分别使用传统方法纯化的来自不同品种山药的酪氨酸酶有明显的3、4、4和2条肽带。相比之下,由于结合了聚乙二醇(PEG),经ATPS纯化的酶呈现出连续的宽带。具有总体更好特性的来自某一品种山药的酪氨酸酶被用于交联蛋白网络的合成。该酶催化乳清、辣木叶、南瓜叶和牛血中的可溶性蛋白质转化为纤维状(交联)蛋白网络,以改善其性质和功能。从某一品种山药中纯化得到的酪氨酸酶还与牛血清白蛋白(BSA)共价结合,形成分子量为118±2.0 kDa的酪氨酸酶-BSA加合物,通过报告BSA揭示了其作为报告酶的潜力。总体结果进一步强化了山药酪氨酸酶作为一种在各种生物技术应用中具有重要意义的酶的地位。

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