TY - JOUR
T1 - Development of a simplified and inexpensive RNA depletion method for plasmid DNA purification using size selection magnetic beads (SSMBs)
AU - Wang, Xi
AU - Zhao, Ling
AU - Wu, Xiaoxing
AU - Luo, Huaxiu
AU - Wu, Di
AU - Zhang, Meng
AU - Zhang, Jing
AU - Pakvasa, Mikhail
AU - Wagstaff, William
AU - He, Fang
AU - Mao, Yukun
AU - Zhang, Yongtao
AU - Niu, Changchun
AU - Wu, Meng
AU - Zhao, Xia
AU - Wang, Hao
AU - Huang, Linjuan
AU - Shi, Deyao
AU - Liu, Qing
AU - Ni, Na
AU - Fu, Kai
AU - Hynes, Kelly
AU - Strelzow, Jason
AU - El Dafrawy, Mostafa
AU - He, Tong Chuan
AU - Qi, Hongbo
AU - Zeng, Zongyue
N1 - Publisher Copyright:
© 2020 Chongqing Medical University
PY - 2021/5
Y1 - 2021/5
N2 - Plasmid DNA (pDNA) isolation from bacterial cells is one of the most common and critical steps in molecular cloning and biomedical research. Almost all pDNA purification involves disruption of bacteria, removal of membrane lipids, proteins and genomic DNA, purification of pDNA from bulk lysate, and concentration of pDNA for downstream applications. While many liquid-phase and solid-phase pDNA purification methods are used, the final pDNA preparations are usually contaminated with varied degrees of host RNA, which cannot be completely digested by RNase A. To develop a simple, cost-effective, and yet effective method for RNA depletion, we investigated whether commercially available size selection magnetic beads (SSMBs), such as Mag-Bind® TotalPure NGS Kit (or Mag-Bind), can completely deplete bacterial RNA in pDNA preparations. In this proof-of-principle study, we demonstrated that, compared with RNase A digestion and two commercial plasmid affinity purification kits, the SSMB method was highly efficient in depleting contaminating RNA from pDNA minipreps. Gene transfection and bacterial colony formation assays revealed that pDNA purified from SSMB method had superior quality and integrity to pDNA samples cleaned up by RNase A digestion and/or commercial plasmid purification kits. We further demonstrated that the SSMB method completely depleted contaminating RNA in large-scale pDNA samples. Furthermore, the Mag-bind-based SSMB method costs only 5–10% of most commercial plasmid purification kits on a per sample basis. Thus, the reported SSMB method can be a valuable and inexpensive tool for the removal of bacterial RNA for routine pDNA preparations.
AB - Plasmid DNA (pDNA) isolation from bacterial cells is one of the most common and critical steps in molecular cloning and biomedical research. Almost all pDNA purification involves disruption of bacteria, removal of membrane lipids, proteins and genomic DNA, purification of pDNA from bulk lysate, and concentration of pDNA for downstream applications. While many liquid-phase and solid-phase pDNA purification methods are used, the final pDNA preparations are usually contaminated with varied degrees of host RNA, which cannot be completely digested by RNase A. To develop a simple, cost-effective, and yet effective method for RNA depletion, we investigated whether commercially available size selection magnetic beads (SSMBs), such as Mag-Bind® TotalPure NGS Kit (or Mag-Bind), can completely deplete bacterial RNA in pDNA preparations. In this proof-of-principle study, we demonstrated that, compared with RNase A digestion and two commercial plasmid affinity purification kits, the SSMB method was highly efficient in depleting contaminating RNA from pDNA minipreps. Gene transfection and bacterial colony formation assays revealed that pDNA purified from SSMB method had superior quality and integrity to pDNA samples cleaned up by RNase A digestion and/or commercial plasmid purification kits. We further demonstrated that the SSMB method completely depleted contaminating RNA in large-scale pDNA samples. Furthermore, the Mag-bind-based SSMB method costs only 5–10% of most commercial plasmid purification kits on a per sample basis. Thus, the reported SSMB method can be a valuable and inexpensive tool for the removal of bacterial RNA for routine pDNA preparations.
KW - DNA transfection
KW - DNA vaccination
KW - Gene delivery
KW - Plasmid DNA purification
KW - RNA depletion
KW - Size selection magnetic beads
UR - http://www.scopus.com/inward/record.url?scp=85086122210&partnerID=8YFLogxK
U2 - 10.1016/j.gendis.2020.04.013
DO - 10.1016/j.gendis.2020.04.013
M3 - Article
AN - SCOPUS:85086122210
SN - 2352-4820
VL - 8
SP - 298
EP - 306
JO - Genes and Diseases
JF - Genes and Diseases
IS - 3
ER -