Program in Biotechnology and Bioengineering, İzmir Institute of Technology, Gülbahce, Urla Izmir, Turkey.
Department of Bioengineering, İzmir Institute of Technology, Gülbahce, Urla Izmir, Turkey.
Biotechnol Appl Biochem. 2022 Feb;69(1):136-144. doi: 10.1002/bab.2089. Epub 2021 Jan 5.
Silk consists of two proteins called fibroin and sericin. While fibroin is used in the textile industry and has various biomaterial applications, sericin has been considered as waste material until recently. Sericin is a multicomponent protein and it has important properties such as biocompatibility, biodegradability, cryoprotectivity, and antioxidant. Sericin from silkworm cocoons can be obtained by chemical, enzymatic, and heat treatment methods. However, sericin obtained with these treatment methods is not of consistent and high quality. Moreover, the exposure of sericin to harsh conditions during extraction leads to inconsistencies in the composition and structure of the sericin obtained. The inconsistencies in sericin structure and composition decrease application of sericin as a biomaterial. Here, we produce a sericin-like protein (Ser4mer) with native sequence of sericin encoding four repeats of the conserved 38 amino acid motif recombinantly in Escherichia coli and characterize its structural properties. Ser4mer protein shows similar structure to native sericin and higher solubility than previously obtained recombinant sericin-like proteins. Recombinant production of a soluble sericin-like protein will significantly expand its applications as a biomaterial. In addition, recombinant production of silk proteins will allow us to understand sequence-structure relationships in these proteins.
丝由两种蛋白质组成,分别称为丝素和丝胶。虽然丝素在纺织工业中被广泛应用,并具有各种生物材料的应用,但直到最近,丝胶才被视为废物材料。丝胶是一种多组分蛋白质,具有生物相容性、可生物降解性、冷冻保护和抗氧化等重要特性。可以通过化学、酶和热处理方法从蚕茧中提取丝胶。然而,用这些处理方法获得的丝胶质量并不一致,而且在提取过程中丝胶暴露在恶劣的条件下会导致提取得到的丝胶的组成和结构不一致。丝胶结构和组成的不一致性降低了其作为生物材料的应用。在这里,我们在大肠杆菌中重组表达了具有天然丝胶序列的丝胶样蛋白(Ser4mer),该蛋白编码四个重复的保守 38 个氨基酸基序,并对其结构特性进行了表征。Ser4mer 蛋白的结构与天然丝胶相似,且比以前获得的重组丝胶样蛋白具有更高的溶解度。可溶性丝胶样蛋白的重组生产将显著扩大其作为生物材料的应用。此外,丝蛋白的重组生产将使我们能够了解这些蛋白质中的序列-结构关系。