Department of Biomedical Engineering, Chung-Ang University, Seoul, 06974, Republic of Korea.
J Microbiol. 2022 Sep;60(9):960-967. doi: 10.1007/s12275-022-2122-z. Epub 2022 Jul 14.
In protein biotechnology, large soluble fusion partners are widely utilized for increased yield and solubility of recombinant proteins. However, the production of additional large fusion partners poses an additional burden to the host, leading to a decreased protein yield. In this study, we identified two highly disordered short peptides that were able to increase the solubility of an artificially engineered aggregation-prone protein, GFP-GFIL4, from 0.6% to 61% (D3-DP00592) and 46% (D4-DP01038) selected from DisProt database. For further confirmation, the peptides were applied to two insoluble E. coli proteins (YagA and YdiU). The peptides also enhanced solubility from 52% to 90% (YagA) and from 27% to 93% (YdiU). Their ability to solubilize recombinant proteins was comparable with strong solubilizing tags, maltose-binding protein (40 kDa) and TrxA (12 kDa), but much smaller (< 7 kDa) in size. For practical application, the two peptides were fused with a restriction enzyme, I-SceI, and they increased I-SceI solubility from 24% up to 75%. The highly disordered peptides did not affect the activity of I-SceI while I-SceI fused with MBP or TrxA displayed no restriction activity. Despite the small size, the highly disordered peptides were able to solubilize recombinant proteins as efficiently as conventional fusion tags and did not interfere with the function of recombinant proteins. Consequently, the identified two highly disordered peptides would have practical utility in protein biotechnology and industry.
在蛋白质生物技术中,广泛使用大的可溶性融合伴侣来提高重组蛋白的产量和溶解度。然而,生产额外的大融合伴侣会给宿主带来额外的负担,导致蛋白产量下降。在本研究中,我们从 DisProt 数据库中鉴定出两个高度无序的短肽,它们能够将人工设计的易聚集蛋白 GFP-GFIL4 的溶解度从 0.6%提高到 61%(D3-DP00592)和 46%(D4-DP01038)。为了进一步验证,我们将这些肽应用于两种不溶性的大肠杆菌蛋白(YagA 和 YdiU)。这些肽也能将蛋白的溶解度从 52%提高到 90%(YagA)和从 27%提高到 93%(YdiU)。它们溶解重组蛋白的能力与强溶解标签麦芽糖结合蛋白(40 kDa)和 TrxA(12 kDa)相当,但大小要小得多(<7 kDa)。为了实际应用,我们将这两个肽与一种限制酶 I-SceI 融合,它们将 I-SceI 的溶解度从 24%提高到 75%。高度无序的肽不影响 I-SceI 的活性,而与 MBP 或 TrxA 融合的 I-SceI 则没有限制活性。尽管肽的大小较小,但它们能够像常规融合标签一样有效地溶解重组蛋白,并且不干扰重组蛋白的功能。因此,这两种新鉴定的高度无序肽在蛋白质生物技术和工业中有实际应用价值。