Production of Bioactive Porcine Lactoferrin through a Novel Glucose-Inducible Expression System in Pichia pastoris: Unveiling Antimicrobial and Anticancer Functionalities

被引:8
作者
Yen, Chih-Ching [1 ,2 ]
Wu, Pei-Ying [2 ]
Ou-Yang, Huan [2 ]
Chen, Hsiao-Ling [3 ]
Chong, Kowit-Yu [4 ,5 ]
Chang, Ro-Lin [2 ]
Chen, Chuan-Mu [2 ,6 ]
机构
[1] China Med Univ, China Med Univ Hosp, Dept Internal Med, Coll Hlth Care, Taichung 404, Taiwan
[2] Natl Chung Hsing Univ, Dept Life Sci, PhD Program Translat Med, Taichung 402, Taiwan
[3] Da Yeh Univ, Dept Biomed Engn, Changhua 515, Taiwan
[4] Chang Gung Univ, Coll Med, Dept Med Biotechnol & Lab Sci, Taoyuan 333, Taiwan
[5] Chang Gung Mem Hosp, Bone & Joint Res Ctr, Hyperbar Oxygen Med Res Lab, Taoyuan 333, Taiwan
[6] Natl Chung Hsing Univ, iEGG & Anim Biotechnol Ctr, Rong Hsing Res Ctr Translat Med, Taichung 402, Taiwan
关键词
lactoferrin; G1; promoter; Pichia pastoris; fermentation; tangential-flow ultrafiltration; iron-binding; antimicrobial; anticancer; RECOMBINANT HUMAN LACTOFERRIN; BOVINE LACTOFERRIN; MOLECULAR-CLONING; YEAST; PURIFICATION; ANTIBACTERIAL; PEPTIDES; CANCER; GENE; INHIBITION;
D O I
10.3390/ijms25031818
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lactoferrin (LF) stands as one of the extensively investigated iron-binding glycoproteins within milk, exhibiting diverse biological functionalities. The global demand for LF has experienced consistent growth. Biotechnological strategies aimed at enhancing LF productivity through microbial expression systems offer substantial cost-effective advantages and exhibit fewer constraints compared to traditional animal bioreactor technologies. This study devised a novel recombinant plasmid, wherein the AOX1 promoter was replaced with a glucose-inducible G1 promoter (PG1) to govern the expression of recombinant porcine LF (rpLF) in Pichia pastoris GS115. High-copy-number PG1-rpLF yeast clones were meticulously selected, and subsequent induction with 0.05 g/L glucose demonstrated robust secretion of rpLF. Scaling up production transpired in a 5 L fermenter, yielding an estimated rpLF productivity of approximately 2.8 g/L by the conclusion of glycerol-fed fermentation. A three-step purification process involving tangential-flow ultrafiltration yielded approximately 6.55 g of rpLF crude (approximately 85% purity). Notably, exceptional purity of rpLF was achieved through sequential heparin and size-exclusion column purification. Comparatively, the present glucose-inducible system outperformed our previous methanol-induced system, which yielded a level of 87 mg/L of extracellular rpLF secretion. Furthermore, yeast-produced rpLF demonstrated affinity for ferric ions (Fe3+) and exhibited growth inhibition against various pathogenic microbes (E. coli, S. aureus, and C. albicans) and human cancer cells (A549, MDA-MB-231, and Hep3B), similar to commercial bovine LF (bLF). Intriguingly, the hydrolysate of rpLF (rpLFH) manifested heightened antimicrobial and anticancer effects compared to its intact form. In conclusion, this study presents an efficient glucose-inducible yeast expression system for large-scale production and purification of active rpLF protein with the potential for veterinary or medical applications.
引用
收藏
页数:15
相关论文
共 52 条
[1]   Parasiticidal effect of synthetic bovine lactoferrin peptides on the enteric parasite Giardia intestinalis [J].
Aguilar-Diaz, Hugo ;
Canizalez-Roman, Adrian ;
Nepomuceno-Mejia, Tomas ;
Gallardo-Vera, Francisco ;
Hornelas-Orozco, Yolanda ;
Nazmi, Kamran ;
Bolscher, Jan G. M. ;
Carrero, Julio Cesar ;
Leon-Sicairos, Claudia ;
Leon-Sicairos, Nidia .
BIOCHEMISTRY AND CELL BIOLOGY, 2017, 95 (01) :82-90
[2]   Translation elongation factor 1-α gene from Pichia pastoris:: molecular cloning, sequence, and use of its promoter [J].
Ahn, Jungoh ;
Hong, Jiyeon ;
Lee, Hyeokweon ;
Park, Myongsoo ;
Lee, Eungyo ;
Kim, Chunsuk ;
Choi, Euisung ;
Jung, Joonki ;
Lee, Hongweon .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2007, 74 (03) :601-608
[3]   Bovine lactoferrin and Crohn's disease: a case study [J].
Alexander, David B. ;
Iigo, Masaaki ;
Abdelgied, Mohamed ;
Ozeki, Keiji ;
Tanida, Satoshi ;
Joh, Takashi ;
Takahashi, Satoru ;
Tsuda, Hiroyuki .
BIOCHEMISTRY AND CELL BIOLOGY, 2017, 95 (01) :133-141
[4]  
Alexander DB, 2012, BIOCHEM CELL BIOL, V90, P279, DOI [10.1139/o2012-013, 10.1139/O2012-013]
[5]   Bovine and human lactoferricin peptides: chimeras and new cyclic analogs [J].
Arias, Mauricio ;
McDonald, Lindsey J. ;
Haney, Evan F. ;
Nazmi, Kamran ;
Bolscher, Jan G. M. ;
Vogel, Hans J. .
BIOMETALS, 2014, 27 (05) :935-948
[6]   Antitumor activity of bovine lactoferrin and its derived peptides against HepG2 liver cancer cells and Jurkat leukemia cells [J].
Arredondo-Beltran, Izamar G. ;
Ramirez-Sanchez, Diana A. ;
Zazueta-Garcia, Jesus R. ;
Canizalez-Roman, Adrian ;
Angulo-Zamudio, Uriel A. ;
Velazquez-Roman, Jorge A. ;
Bolscher, Jan G. M. ;
Nazmi, Kamran ;
Leon-Sicairos, Nidia .
BIOMETALS, 2023, 36 (03) :639-655
[7]   Phylogenomic analysis of transferrin family from animals and plants [J].
Bai, Lina ;
Qiao, Mu ;
Zheng, Rong ;
Deng, Changyan ;
Mei, Shuqi ;
Chen, Wanping .
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY D-GENOMICS & PROTEOMICS, 2016, 17 :1-8
[8]   Antiviral Properties of Lactoferrin-A Natural Immunity Molecule [J].
Berlutti, Francesca ;
Pantanella, Fabrizio ;
Natalizi, Tiziana ;
Frioni, Alessandra ;
Paesano, Rosalba ;
Polimeni, Antonella ;
Valenti, Piera .
MOLECULES, 2011, 16 (08) :6992-7018
[9]   YEAST SYSTEMS FOR THE COMMERCIAL PRODUCTION OF HETEROLOGOUS PROTEINS [J].
BUCKHOLZ, RG ;
GLEESON, MAG .
BIO-TECHNOLOGY, 1991, 9 (11) :1067-1072
[10]   KFP-1, a Novel Calcium-Binding Peptide Isolated from Kefir, Promotes Calcium Influx Through TRPV6 Channels [J].
Chang, Gary Ro-Lin ;
Tu, Min-Yu ;
Chen, Yu-Hsuan ;
Chang, Ku-Yi ;
Chen, Chien-Fu ;
Lai, Jen-Chieh ;
Tung, Yu-Tang ;
Chen, Hsiao-Ling ;
Fan, Hueng-Chuen ;
Chen, Chuan-Mu .
MOLECULAR NUTRITION & FOOD RESEARCH, 2021, 65 (22)