Mitani Yasuo, Yasuno Rie, Kihira Kiyohito, Chung KwiMi, Mitsuda Nobutaka, Kanie Shusei, Tomioka Azusa, Kaji Hiroyuki, Ohmiya Yoshihiro
Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Sapporo, Japan.
Cellular and Molecular Biotechnology Research Institute, AIST, Tsukuba, Japan.
Front Bioeng Biotechnol. 2022 Feb 7;10:774786. doi: 10.3389/fbioe.2022.774786. eCollection 2022.
luciferase (CLuc) is a secreted luminescent protein that reacts with its substrate (Cypridina luciferin) to emit light. CLuc is known to be a thermostable protein and has been used for various research applications, including imaging and high-throughput reporter assays. Previously, we produced a large amount of recombinant CLuc for crystallographic analysis. However, this recombinant protein did not crystallize, probably due to heterogeneous N-glycan modifications. In this study, we produced recombinant CLuc without glycan modifications by introducing mutations at the N-glycan modification residues using mammalian Expi293F cells, silkworms, and tobacco Bright Yellow-2 cells. Interestingly, recombinant CLuc production depended heavily on the expression hosts. Among these selected hosts, we found that Expi293F cells efficiently produced the recombinant mutant CLuc without significant effects on its luciferase activity. We confirmed the lack of N-glycan modifications for this mutant protein by mass spectrometry analysis but found slight O-glycan modifications that we estimated were about 2% of the ion chromatogram peak area for the detected peptide fragments. Moreover, by using CLuc deletion mutants during the investigation of O-glycan modifications, we identified amino acid residues important to the luciferase activity of CLuc. Our results provide invaluable information related to CLuc function and pave the way for its crystallographic analysis.
荧光素酶(CLuc)是一种分泌型发光蛋白,它与其底物(海萤荧光素)反应发光。已知CLuc是一种热稳定蛋白,已被用于各种研究应用,包括成像和高通量报告基因检测。此前,我们制备了大量重组CLuc用于晶体学分析。然而,这种重组蛋白未能结晶,可能是由于N-聚糖修饰的异质性。在本研究中,我们通过在N-聚糖修饰残基处引入突变,利用哺乳动物Expi293F细胞、家蚕和烟草Bright Yellow-2细胞制备了无聚糖修饰的重组CLuc。有趣的是,重组CLuc的产生在很大程度上依赖于表达宿主。在这些选定的宿主中,我们发现Expi293F细胞能高效产生重组突变体CLuc,且对其荧光素酶活性无显著影响。我们通过质谱分析证实了该突变蛋白缺乏N-聚糖修饰,但发现了轻微的O-聚糖修饰,估计其占检测到的肽片段离子色谱峰面积的2%左右。此外,在研究O-聚糖修饰过程中,通过使用CLuc缺失突变体,我们确定了对CLuc荧光素酶活性重要的氨基酸残基。我们的结果提供了与CLuc功能相关的宝贵信息,并为其晶体学分析铺平了道路。