Biotechnology Bulletin ›› 2022, Vol. 38 ›› Issue (5): 183-190.doi: 10.13560/j.cnki.biotech.bull.1985.2021-1210
Previous Articles Next Articles
YI Fang(), LAI Peng-cheng, ZHENG Xi-ao, HU Shuai, GAO Yan-li()
Received:
2021-09-19
Online:
2022-05-26
Published:
2022-06-10
Contact:
GAO Yan-li
E-mail:309382275@qq.com;gaoyanli.025@163.com
YI Fang, LAI Peng-cheng, ZHENG Xi-ao, HU Shuai, GAO Yan-li. Research on the Preparation and Purification of Kod DNA Polymerase[J]. Biotechnology Bulletin, 2022, 38(5): 183-190.
引物名称 Primer name | 引物序列 Primer sequence(5'-3') | 产物大小 Product size/bp |
---|---|---|
AtVSR6 gDNA-F | ATGAGTCTCCAACCAATGAGAC | 3 194 |
AtVSR6 gDNA-R | ACATTTCCCCAACCAATTCATTC- TCTGT |
Table 1 Information of the primers used for PCR
引物名称 Primer name | 引物序列 Primer sequence(5'-3') | 产物大小 Product size/bp |
---|---|---|
AtVSR6 gDNA-F | ATGAGTCTCCAACCAATGAGAC | 3 194 |
AtVSR6 gDNA-R | ACATTTCCCCAACCAATTCATTC- TCTGT |
Fig.1 Effects of different concentrations of IPTG on the expressions of Kod DNA polymerases The effects of different concentrations of IPTG on the expressions of Kod DNA polymerase. M:Protein molecular weight standard. A:0.1 mmol/L IPTG induces the expression of Kod DNA polymerase. 1:The crude extract of Kod DNA polymerase(CSKod);2:suspension of residue after sonication and centrifugation(CMKod);3:Kod DNA polymerase stock solution diluted with storage buffer at 1∶1 after dialysis. B. 0.2 mmol/L IPTG induces the expression of Kod DNA polymerase. 1:The crude extract of Kod DNA polymerase(CSKod);2:suspension of residue after sonication and centrifugation(CMKod);3:Kod DNA polymerase stock solution diluted with storage buffer at 1∶1 after dialysis
Fig.2 Effects of different concentrations of imidazole on the purifications of Kod DNA polymerases The effect of different imidazole concentrations contained in elution buffer on the purification yield of Kod DNA polymerase. M:Protein molecule quality standard;1-3:500 mmol/L,200 mmol/L 100 mmol/L imidazole eluate;CK:the crude extracti of Kod DNA polymerase(CSKod)
Fig.3 Preparation effect of Kod DNA polymerase after comprehensive optimization conditions Kod preparation after comprehensive optimization induction and purification conditions. M:Protein molecule quality standard. CK:The crude extraction of Kod DNA polymerase(CSKod);1-3:elution times using 200 mmol/L imidazole;4-8:Different concentrations of BSA(0.5 mg/mL,1 mg/mL,0.25 mg/mL,0.125 mg/mL,0.0625 mg/mL)
Fig. 4 Effects of enzyme content and Mg2+ concentration on target gene amplification in Kod DNA polymerase reaction system M:DL5000 DNA marker;1-24:amplification of AtVSR6 fragments with a length of about 3 194 bp;1,7,13,19:amplification product with commercial GO Tag high-fidelity DNA polymerase;2-6,8-12,20-24:amplified results using different concentrations of Kod DNA polymerase(0.061 25 μg/µL,0.125 μg/µL,0.25 μg/µL,0.5μg/µL,and 1μg/µL);Mg2+1. Mg2+2,Mg2+3,Mg2+4:different concentrations of Mg2+(1.5 mmol/L,1.75 mmol/L,2.0 mmol/L and 2.25 mmol/L)
Fig.5 High-fidelity verification of Kod DNA polymerases A:M:DL5000 DNA marker;1-4:amplification of AtVSR6 fragments with a length of about 3 194 bp;CK+:positive control;CK-:negative control. B,C:The BLAST result between sequencing result of AtVSR6 gene in A. thaliana and AtVSR6 gene sequence in NCBI database
[1] |
Bębenek A, Ziuzia-Graczyk I. Fidelity of DNA replication-a matter of proofreading[J]. Curr Genet, 2018, 64(5):985-996.
doi: 10.1007/s00294-018-0820-1 pmid: 29500597 |
[2] |
Saiki RK, Gelfand DH, Stoffel S, et al. Primer-directed enzymatic amplification of DNA with a thermostable DNA polymerase[J]. Science, 1988, 239(4839):487-491.
doi: 10.1126/science.2448875 pmid: 2448875 |
[3] | 张立华, 刘莉平. 浅析PCR技术中使用的DNA聚合酶[J]. 生物学教学, 2015, 40(9):67-69. |
Zhang LH, Liu LP. Analysis of DNA polymerase used in PCR technology[J]. Biol Teach, 2015, 40(9):67-69. | |
[4] | Green MR, Sambrook J. E. coli DNA polymerase I and the klenow fragment[J]. Cold Spring Harb Protoc, 2020, 2020(5):100743. |
[5] |
Chien A, Edgar DB, Trela JM. Deoxyribonucleic acid polymerase from the extreme thermophile Thermus aquaticus[J]. J Bacteriol, 1976, 127(3):1550-1557.
doi: 10.1128/jb.127.3.1550-1557.1976 pmid: 8432 |
[6] |
Din RU, Khan MI, Jan A, et al. A novel approach for high-level expression and purification of GST-fused highly thermostable Taq DNA polymerase in Escherichia coli[J]. Arch Microbiol, 2020, 202(6):1449-1458.
doi: 10.1007/s00203-020-01860-9 URL |
[7] |
Erlich HA, Arnheim N. Genetic analysis using the polymerase chain reaction[J]. Annu Rev Genet, 1992, 26(1):479-506.
doi: 10.1146/annurev.ge.26.120192.002403 URL |
[8] | 汪峻岭, 李照丹, 徐兴伟, 等. PCR技术、抗酸染色法在肺结核病理学诊断中应用比较[J]. 中外医疗, 2016, 35(15):77-78. |
Wang JL, Li ZD, Xu XW, et al. Application comparison of PCR technique and acid-fast staining in diagnosis of pulmonary tuberculosis pathology[J]. China Foreign Med Treat, 2016, 35(15):77-78. | |
[9] | 李娟, 慕力, 韩兴乔, 等. PCR-SSP/PCR-SSO两种KIR基因分型方法的比较[J]. 生物医学工程与临床, 2021, 25(2):225-231. |
Li J, Mu L, Han XQ, et al. Comparison of kir genotyping between pcr-ssp and pcr-sso[J]. Biomed Eng Clin Med, 2021, 25(2):225-231. | |
[10] | 曾元凤, 肖移生, 梁莉, 等. 长片段基因FMNL2 PCR实验的体会[J]. 南昌大学学报:医学版, 2013, 53(4):19-21. |
Zeng YF, Xiao YS, Liang L, et al. PCR amplification of long fragment gene FMNL2[J]. J Nanchang Univ:Med Sci, 2013, 53(4):19-21. | |
[11] |
Kay T. Overview of thermostable DNA polymerases for classical PCR applications:from molecular and biochemical fundamentals to commercial systems[J]. Appl Microbiol Biotechnol, 2013, 97(24):10243-10254.
doi: 10.1007/s00253-013-5290-2 URL |
[12] | 曹淑中, 裘丽珍. DNA结合蛋白DbpA影响DNA聚合酶性能的研究[J]. 复旦学报:自然科学版, 2015, 54(4):469-477, 541. |
Cao SZ, Qiu LZ. Research of impact of DNA binding protein DbpA on the performance of pfu DNA polymerase[J]. J Fudan Univ:Nat Sci, 2015, 54(4):469-477, 541. | |
[13] |
Takagi M, Nishioka M, Kakihara H, et al. Characterization of DNA polymerase from Pyrococcus sp. strain KOD1 and its application to PCR[J]. Appl Environ Microbiol, 1997, 63(11):4504-4510.
doi: 10.1128/aem.63.11.4504-4510.1997 URL |
[14] |
Benson LM, Null AP, Muddiman DC. Advantages of Thermococcus kodakaraenis(KOD)DNA Polymerase for PCR-mass spectrometry based analyses[J]. J Am Soc Mass Spectrom, 2003, 14(6):601-604.
doi: 10.1016/S1044-0305(03)00148-X URL |
[15] | 肖朝文, 杜娟, 李晚忱. Taq DNA聚合酶制备技术的优化[J]. 四川农业大学学报, 2004, 22(4):318-321. |
Xiao CW, Du J, Li WC. Optimization of preparation techniques of taq DNA polymerase[J]. J Sichuan Agric Univ, 2004, 22(4):318-321. | |
[16] | 王天云, 秦川, 杨瑞, 等. 基因重组Taq DNA聚合酶的制备[J]. 新乡医学院学报, 2007, 24(6):551-553. |
Wang TY, Qin C, Yang R, et al. Preparation of recombinant Taq DNA polymerase[J]. J Xinxiang Med Coll, 2007, 24(6):551-553. | |
[17] | 何钢, 王义强, 李樊, 等. 大肠杆菌表达重组Taq DNA聚合酶的分离和纯化[J]. 中南林学院学报, 2006, 26(5):50-54. |
He G, Wang YQ, Li F, et al. Separation and purification of taq DNA polymerase in E. coli[J]. J Central South For Univ, 2006, 26(5):50-54. | |
[18] | 丁燕华, 刘树涛, 齐庆远. Taq DNA聚合酶的热纯化制备[J]. 安徽农业科学, 2011, 39(17):10153-10155. |
Ding YH, Liu ST, Qi QY. Preparation of taq DNA polymerase by thermal purification[J]. J Anhui Agric Sci, 2011, 39(17):10153-10155. | |
[19] | 刘钦松, 刘孟刚, 张丛丛, 等. 重组Taq DNA聚合酶的表达和纯化鉴定[J]. 江西农业学报, 2012, 24(5):124-126. |
Liu QS, Liu MG, Zhang CC, et al. Expression, purification and identification of recombinant taq DNA polymerase[J]. Acta Agric Jiangxi, 2012, 24(5):124-126. | |
[20] | 祁浩, 刘新利. 大肠杆菌表达系统和酵母表达系统的研究进展[J]. 安徽农业科学, 2016, 44(17):4-6, 52. |
Qi H, Liu XL. Research progress of expression systems of Escherichia coli and yeast[J]. J Anhui Agric Sci, 2016, 44(17):4-6, 52. | |
[21] | 张云鹏, 温彤, 姜伟. 大肠杆菌和酵母表达系统的研究进展[J]. 生物技术进展, 2014, 4(6):389-393. |
Zhang YP, Wen T, Jiang W. The research progress of Escherichia coli expression systems and yeast expression systems[J]. Curr Biotechnol, 2014, 4(6):389-393.
doi: 10.2174/2211550105666151107001338 URL |
|
[22] |
Yeon YJ, Park HJ, Park HY, et al. Effect of His-tag location on the catalytic activity of 3-hydroxybutyrate dehydrogenase[J]. Biotechnol Bioprocess Eng, 2014, 19(5):798-802.
doi: 10.1007/s12257-014-0089-2 URL |
[23] |
Chen Z, Li Y, Yuan Q. Study the effect of His-tag on chondroitinase ABC I based on characterization of enzyme[J]. Int J Biol Macromol, 2015, 78:96-101.
doi: 10.1016/j.ijbiomac.2015.03.068 URL |
[24] |
Chen Y, Li Y, Liu P, et al. Optimized expression in Pichia pastoris eliminates common protein contaminants from subsequent His-tag purification[J]. Biotechnol Lett, 2014, 36(4):711-718.
doi: 10.1007/s10529-013-1411-3 URL |
[25] | 周彦霞, 孔慧芳, 赵商岐, 等. pET30a-EgG1Y162质粒的构建及目的蛋白的表达和纯化[J]. 中国病原生物学杂志, 2021, 16(3):287-291. |
Zhou YX, Kong HF, Zhao SQ, et al. Construction of a pET30a-EgG1Y162 plasmid and purification, identification, and expression of the recombinant protein[J]. J Pathog Biol, 2021, 16(3):287-291. | |
[26] | 胡兰兰, 田亚楠, 陈福生, 等. 重组大肠杆菌E. coli BL21/pET28a(+)-mle产苹果酸乳酸酶发酵条件的优化[J]. 中国酿造, 2018, 37(6):161-164. |
Hu LL, Tian YN, Chen FS, et al. Optimization of fermentation conditions for malolactic enzyme production by recombinant E. coli BL21/p ET28a(+)-mle[J]. China Brew, 2018, 37(6):161-164. | |
[27] |
Stefani M, Dobson CM. Protein aggregation and aggregate toxicity:new insights into protein folding, misfolding diseases and biological evolution[J]. J Mol Med, 2003, 81(11):678-699.
doi: 10.1007/s00109-003-0464-5 URL |
[28] |
Ventura S. Sequence determinants of protein aggregation:tools to increase protein solubility[J]. Microb Cell Fact, 2005, 4(1):11.
doi: 10.1186/1475-2859-4-11 URL |
[29] | 牟筱, 宗惠, 宫皓, 等. 重组大肠杆菌表达外源蛋白包涵体复性的研究进展[J]. 甘肃畜牧兽医, 2018, 48(4):35-37. |
Mou X, Zong H, Gong H, et al. Progress in renaturation of foreign protein inclusion bodies expressed in recombinant Escherichia coli[J]. Gansu Animal Husb Vet, 2018, 48(4):35-37. | |
[30] |
Dyson MR, Shadbolt SP, Vincent KJ, et al. Production of soluble mammalian proteins in Escherichia coli:identification of protein features that correlate with successful expression[J]. BMC Biotechnol, 2004, 4:32.
doi: 10.1186/1472-6750-4-32 URL |
[31] | 陈颜亮, 郑治, 王剑龙, 等. 带Myc、His标签的SPAG4L真核表达载体的构建与表达[J]. 生物工程学报, 2013, 29(11):1654-1662. |
Chen YL, Zheng Z, Wang JL, et al. Construction of eukaryotic expression vector of SPAG4L tagged with Myc and His[J]. Chin J Biotechnol, 2013, 29(11):1654-1662. | |
[32] | 贾平. 高纯度Taq DNA聚合酶制备技术研究[D]. 南京: 南京理工大学, 2013. |
Jia P. Study on preparation of high-purity taq DNA polymerase[D]. Nanjing: Nanjing University of Science and Technology, 2013. |
[1] | QIN Xue-jing, WANG Yu-han, CAO Yi-bo, ZHANG Ling-yun. Prokaryotic Expression and Preparation of Polyclonal Antibody of PwHAP5 Gene in Picea wilsonii [J]. Biotechnology Bulletin, 2022, 38(8): 142-149. |
[2] | CHEN Xiao-yu, ZHANG Jian, ZHANG Xin-ya, TANG Yu-ting, SHAO Yu-chen, LUO Zhi-dan, LU Chen. A Rapid and Accurate Method for Tth DNA Polymerase Activity Assay [J]. Biotechnology Bulletin, 2021, 37(5): 281-286. |
[3] | TANG Lu, DONG Li-ping, YIN Mo-li, LIU Lei, DONG Yuan, WANG Hui-yan. Preparation and Identification of a Novel FGF20 Monoclonal Antibody [J]. Biotechnology Bulletin, 2021, 37(10): 179-185. |
[4] | MENG Li, DU Cai-ping. Eukaryotic Expression,Purification and Activity Identification of Rat His-Akt1 Recombinant Protein [J]. Biotechnology Bulletin, 2020, 36(12): 98-103. |
[5] | ZHOU Yang, WANG Tao-tao, YAN Dan-dan, WANG Ying-ying, SHI Qin-xuan, SUN Li-hui, LIN Feng. Advances in Biotechnological Application of Elastin-like Polypeptides as Functional Nanomaterials [J]. Biotechnology Bulletin, 2020, 36(11): 198-208. |
[6] | LI Ling, BAI Juan-juan, GUO Mei, WANG Si-yu, WANG Xiao-yue. Prokaryotic Expression,Purification and Antibody Preparation of Transcription Factor CNR in Tomato Fruit [J]. Biotechnology Bulletin, 2019, 35(2): 1-8. |
[7] | ZHANG Peng-fei, BIAN Shuai, ZHAO Yue, ZHAO Yu, WANG Jia-wen. Cloning,Prokaryotic Expression and Activity Research of Panax ginseng Thionins [J]. Biotechnology Bulletin, 2019, 35(2): 53-57. |
[8] | CHEN Jian-jun, LIU Liang-tao, CAO Xiang-lin. Cloning,Expression and Enzyme Production of Laccase Gene lac1680 in Phanerochaete chrysosporium [J]. Biotechnology Bulletin, 2018, 34(4): 214-220. |
[9] | WANG Peng-ju,TAN Huan-bo,SU Wen-cheng,ZHANG Wen-yu,ZOU Pei-jian. Study on Refolding and Purification of Plectasin MP1106 [J]. Biotechnology Bulletin, 2017, 33(9): 94-100. |
[10] | YUAN Min, QI Yu-rong ,WANG Rui-ju. Purification and Activity Analysis of Tag-free Protein Kinase BIN2 [J]. Biotechnology Bulletin, 2017, 33(7): 145-149. |
[11] | WANG Ya-mei WEI Yuan-jie AI Xin-yu LIU Xiao-ning. Isolation and Purification of His-CYP6J1 Fusion Protein from Aphis gossypii and Preparation of Its Polyclonal Antibody [J]. Biotechnology Bulletin, 2017, 33(5): 164-169. |
[12] | YU Fang, YANG Zhong-hua, FAN Han-dong, ZUO Zhen-yu. The Construction of Prokaryotic Expression Vector for Human Gene IL-24 and Expression and Purification of Its Protein [J]. Biotechnology Bulletin, 2016, 32(2): 84-89. |
[13] | LI Jing-quan, XU Yong-ping, WANG Xi-tao, LI Yuan, WANG Li-li, LI Xiao-yu. Prokaryotic Expression and Purification of Single-chain Variable Fragment(scFv)Against Staphylococcus aureus [J]. Biotechnology Bulletin, 2016, 32(11): 194-201. |
[14] | YANG Chuan, HU Min. Prokaryotic Expression and Purification of Zebrafish SFPQ [J]. Biotechnology Bulletin, 2016, 32(1): 163-168. |
[15] | Luo Zhongqin, Cheng Lin, Zhang Xi, Chen Guohua. A Rapid Method of Preparing DNA Template of Filamentous Fungi for PCR Amplification [J]. Biotechnology Bulletin, 2015, 31(9): 79-83. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||