1.Screening of the specific aptamer of human CD20 extracellular protein expressed in Escherichia coli by systematic evolution of ligands by exponential enrichment.
Fan CHEN ; Fan YANG ; Lei GAO ; Yue HU ; Yun XUE ; Jing ZHOU ; Jianhua KANG ; Wei WANG
Chinese Journal of Biotechnology 2025;41(4):1467-1477
CD20 is a surface marker protein of B-cell lymphoma, and its extracellular region is the target of specific antibodies and drugs. To obtain a cheap and easily modified specific preparation targeting CD20, we optimized the gene of CD20 extracellular region according to codon degeneracy to facilitate its expression in Escherichia coli. The optimized gene was cloned into pGEX-4T-1 vector, and the recombinant vector was transformed into E. coli BL21(DE3) for expression. The purified protein was identified by SDS-PAGE and Western blotting. Systematic evolution of ligands by exponential enrichment (SELEX) was employed to screen the ssDNA aptamer that specifically binds to the fusion protein, and the affinity of the aptamer to CD20 was detected by flow cytometry. Then, the cytotoxicity test was carried out to examine the inhibitory effect of the aptamer on B lymphoma cells. In this study, we established the prokaryotic expression method of CD20 and obtained the aptamer specifically binding to the extracellular region of CD20, which laid a foundation for the development of therapeutic drugs targeting CD20.
Humans
;
Escherichia coli/metabolism*
;
SELEX Aptamer Technique/methods*
;
Aptamers, Nucleotide/genetics*
;
Antigens, CD20/metabolism*
;
Ligands
2.Screening specific recognition motif of RNA-binding proteins by SELEX in combination with next-generation sequencing technique.
Lu ZHANG ; Jinhao XU ; Jinbiao MA
Chinese Journal of Biotechnology 2016;32(7):966-974
RNA-binding protein exerts important biological function by specifically recognizing RNA motif. SELEX (Systematic evolution of ligands by exponential enrichment), an in vitro selection method, can obtain consensus motif with high-affinity and specificity for many target molecules from DNA or RNA libraries. Here, we combined SELEX with next-generation sequencing to study the protein-RNA interaction in vitro. A pool of RNAs with 20 bp random sequences were transcribed by T7 promoter, and target protein was inserted into plasmid containing SBP-tag, which can be captured by streptavidin beads. Through only one cycle, the specific RNA motif can be obtained, which dramatically improved the selection efficiency. Using this method, we found that human hnRNP A1 RRMs domain (UP1 domain) bound RNA motifs containing AGG and AG sequences. The EMSA experiment indicated that hnRNP A1 RRMs could bind the obtained RNA motif. Taken together, this method provides a rapid and effective method to study the RNA binding specificity of proteins.
Aptamers, Nucleotide
;
Gene Library
;
Heterogeneous Nuclear Ribonucleoprotein A1
;
genetics
;
High-Throughput Nucleotide Sequencing
;
Humans
;
RNA
;
SELEX Aptamer Technique
3.DNA aptamer selection in vitro for determining ketamine by FluMag-SELEX.
Mei-Qi SUN ; Fang-Qi CAO ; Xiao-Long HU ; Yu-Rong ZHANG ; Xin-Wei LU ; Li-Bo ZENG
Journal of Forensic Medicine 2014;30(5):346-349
OBJECTIVE:
To select specific DNA aptamer for determining ketamine by FluMag-SELEX.
METHODS:
Based on magnetic beads with tosyl surface modification as solid carrier and ketamine as target, a random ssDNA library with total length of 78 bp in vitro was compounded. After 13 rounds screening, DNA cloning and sequencing were done. Primary and secondary, structures were analyzed. The affinity, specificity and Kd values of selected aptamer were measured by monitoring the fluorescence intensity.
RESULTS:
Two ssDNA aptamers (Apt#4 and Apt#8) were successfully selected with high and specific abilities to bind ketamine as target with Kd value of 0.59 and 0.66 μmol/L. The prediction of secondary structure was main stem-loop and G-tetramer. The stem was the basis of stability of aptamer's structure. And loop and G-tetramer was the key of specific binding of ketamine.
CONCLUSION
FluMag-SELEX can greatly improve the selection efficiency of the aptamer, obtain the ketamine-binding DNA aptamer, and develop a new method for rapid detection of ketamine.
Aptamers, Nucleotide/metabolism*
;
DNA
;
DNA, Single-Stranded/genetics*
;
In Vitro Techniques
;
Ketamine/metabolism*
;
Oligonucleotides
;
SELEX Aptamer Technique/methods*
4.Selection and identification of ssDNA aptamers specific to clinical isolates of Streptococcus mutans strains with different cariogenicity.
Chenglong WANG ; Danyang HU ; Jiaojiao LIU ; Shaohua LI ; Donghua SU ; Qing XI ; Bingfeng CHU ; Wei XIA ; Qiang ZHAO ; Hongmei DING ; Yanping LUO ; Jiyong YANG ; Bin DENG ; Juan XU ; Ningsheng SHAO
Journal of Southern Medical University 2013;33(5):738-741
OBJECTIVETo select and identify ssDNA aptamers specific to Streptococcus mutans strains with different cariogenicity isolated from clinical specimens.
METHODSSubtractive SELEX technology targeting the whole intact cells was used to screen for ssDNA aptamers specific to the clinical isolates Streptococcus mutans strains with different cariogenicity. Radioactive isotope, flow cytometry, gene cloning and sequencing, MEME online software and RNA structure analysis software were employed to analyze the first and secondary structures of the aptamers and identify the screened aptamers.
RESULTSDetection by radioactive isotope showed sufficient pool enrichment after 9 rounds of subtractive SELEX. Flow cytometry showed that the selected aptamers H1, H16, H4, L1, L10 and H19 were capable of binding specifically with highly cariogenic Streptococcus mutans strains but not with strains with a low cariogenicity. The aptamer H19 had the strongest binding capacity to highly cariogenic Streptococcus mutans strains, with a dissociation constant of 69.45∓38.53 nmol/L.
CONCLUSIONWe have obtained the ssDNA aptamers specific to the clinical isolates of highly cariogenic Streptococcus mutans strains.
Aptamers, Nucleotide ; genetics ; Cloning, Molecular ; DNA Primers ; Dental Caries ; microbiology ; Gene Library ; Humans ; Nucleic Acid Conformation ; SELEX Aptamer Technique ; Species Specificity ; Streptococcus mutans ; classification ; genetics ; isolation & purification
5.Recent progress of the aptamer-based antiviral drugs.
Yao ZHU ; Ying-Hui LÜ ; Hui-Yong YANG ; Jun-Sheng LIN ; Qi-Zhao WANG
Acta Pharmaceutica Sinica 2013;48(4):447-456
Aptamers are capable of binding a wide range of biomolecular targets with high affinity and specificity. It has been widely developed for diagnostic and therapeutic purposes. Because of unique three dimensional structures and cell-membrane penetration, aptamers inhibit virus infection not only through binding specific target, such as the viral envelope, genomic site, enzyme, or other viral components, but also can be connected to each other or with siRNA jointly achieve antiviral activity. Taking human immunodeficiency virus and hepatitis C virus as examples, this paper reviewed the effects and mechanisms of aptamers on disturbing viral infection and replication steps. It may provide an insight to the development of aptamer-based new antiviral drugs.
Antiviral Agents
;
pharmacology
;
Aptamers, Nucleotide
;
pharmacology
;
therapeutic use
;
Genome, Viral
;
drug effects
;
HIV
;
drug effects
;
HIV Reverse Transcriptase
;
metabolism
;
Hepacivirus
;
drug effects
;
genetics
;
Humans
;
Macular Degeneration
;
drug therapy
;
Neoplasms
;
drug therapy
;
Oligodeoxyribonucleotides
;
therapeutic use
;
RNA, Small Interfering
;
pharmacology
;
SELEX Aptamer Technique
;
Viral Envelope Proteins
;
metabolism
;
Virus Replication
;
drug effects
6.Cell-ELA-based determination of binding affinity of DNA aptamer against U87-EGFRvIII cell.
Yan TAN ; Huiyu LIANG ; Xidong WU ; Yubo GAO ; Xingmei ZHANG
Chinese Journal of Biotechnology 2013;29(5):664-671
A15, a DNA aptamer with binding specificity for U87 glioma cells stably overexpressing the epidermal growth factor receptor variant III (U87-EGFRvIII), was generated by cell systematic evolution of ligands by exponential enrichment (cell-SELEX) using a random nucleotide library. Subsequently, we established a cell enzyme-linked assay (cell-ELA) to detect the affinity of A15 compared to an EGFR antibody. We used A15 as a detection probe and cultured U87-EGFRvIII cells as targets. Our data indicate that the equilibrium dissociation constants (K(d)) for A15 were below 100 nmol/L and had similar affinity compared to an EGFR antibody for U87-EGFRvIII. We demonstrated that the cell-ELA was a useful method to determine the equilibrium dissociation constants (K(d)) of aptamers generated by cell-SELEX.
Aptamers, Nucleotide
;
metabolism
;
Brain Neoplasms
;
metabolism
;
Cell Line, Tumor
;
Glioma
;
metabolism
;
pathology
;
Humans
;
Mutation
;
Protein Binding
;
Receptor, Epidermal Growth Factor
;
genetics
;
metabolism
;
SELEX Aptamer Technique
;
methods
7.Engineering and screening of artificial riboswitch as a novel gene control element.
Huiyong YANG ; Yong DIAO ; Junsheng LIN ; Rui'an XU
Chinese Journal of Biotechnology 2012;28(2):134-143
Various artificial riboswitches have been constructed by utilization of designed aptamers or by modification of natural riboswitch systems, because they can regulate gene expression in a highly efficient, precise and fast way, and promise to supply simple cis-acting, modular, and non-immunogenic system for use in future gene therapy applications. In this review, we present an overview of currently available technologies to design and select engineered riboswitches, and discuss some possible technologies that would allow them highly responsive to non-natural ligands, and dynamic control of gene expression in mammalian cells. Though how to bring custom-designed riboswitches as a novel and versatile tool box to gene control system is still a great challenge, the combination of structure-activity relationship information, computer based molecular design, in vitro selection, and high-through screening will serve as powerful tools for further development of riboswitch based gene regulatory systems.
Aptamers, Nucleotide
;
genetics
;
Gene Expression Regulation
;
genetics
;
Genetic Engineering
;
Genetic Therapy
;
Humans
;
Protein Biosynthesis
;
RNA, Catalytic
;
chemistry
;
genetics
;
Ribosomes
;
genetics
;
Riboswitch
;
genetics
8.Screening and characterization of aptamers of Cepsilon3-Cepsilon4 protein.
Zhong-Cheng LIU ; Li-Jun ZHAO ; Yan-Fen ZHANG ; Hai-Lang SHI ; Yao XIE
Acta Pharmaceutica Sinica 2012;47(12):1605-1611
In order to obtain nucleotides aptamers bind to IgE, 80 bp nucleotides single-stranded DNA library containing 40 random nucleotides was designed and synthesized. Oligonucleotides that bind to human Cepsilon3-Cepsilon4 protein were isolated from ssDNA pools by the systematic evolution of ligands by exponential enrichment (SELEX) method using nitrocellulose filters as screening medium. Through the optimization of critical PCR and asymmetric PCR parameters including annealing temperature, cycles, and molar ratios of target protein and ssDNA etc, a suitable screening system was established. The aptamers of Cepsilon3-Cepsilon4 protein with high affinity and high specificity were identified by ELISA with biotin-streptavidin-horseradish peroxidase system, and its primary sequence and second structure were analyzed by DNAMAN package and DNA folding sever after being cloned and sequenced. Moreover, target protein was bound to one aptamer and another aptamer modified with biotion together forming a sandwich-like complex, which was captured in microwell to detect IgE concentration using the optimal combination in the sandwich method named enzyme-linked aptamers sorption assay (ELASA). The method could be used for the quantitative detection of human IgE, and whose sensitivity reached to 120 ng x mL(-1).
Aptamers, Nucleotide
;
chemistry
;
genetics
;
isolation & purification
;
Base Sequence
;
DNA, Single-Stranded
;
chemistry
;
Humans
;
Immunoglobulin epsilon-Chains
;
chemistry
;
genetics
;
Oligonucleotides
;
chemistry
;
SELEX Aptamer Technique
;
methods
;
Sensitivity and Specificity
9.Aptamer-based molecular imaging.
Protein & Cell 2012;3(10):739-754
Molecular imaging has greatly advanced basic biology and translational medicine through visualization and quantification of single/multiple molecular events temporally and spatially in a cellular context and in living organisms. Aptamers, short single-stranded nucleic acids selected in vitro to bind a broad range of target molecules avidly and specifically, are ideal molecular recognition elements for probe development in molecular imaging. This review summarizes the current state of aptamer-based biosensor development (probe design and imaging modalities) and their application in imaging small molecules, nucleic acids and proteins mostly in a cellular context with some animal studies. The article is concluded with a brief discussion on the perspective of aptamer-based molecular imaging.
Animals
;
Aptamers, Nucleotide
;
genetics
;
metabolism
;
Base Sequence
;
Biosensing Techniques
;
Humans
;
Molecular Imaging
;
methods
10.In vitro selection of single strand deoxyribonucleic acid aptamers binding to cells from patients with acute myeloblastic leukemia.
Ping ZHU ; Guangping WANG ; Shuqin ZHANG ; Yajing XU ; Minyuan PENG ; Hui YIN ; Yan CHEN ; Sanqin TAN ; Fangping CHEN
Journal of Central South University(Medical Sciences) 2012;37(8):771-776
OBJECTIVE:
To screen aptamers binding CD33+/CD34- cells from patients with acute myeloblastic leukemia M2 subtype (AML-M2).
METHODS:
CD33+/CD34- cells from patients with AML-M2 were taken as targeted cells, CD33+/ CD34- cells from normal people were taken as anti-selecting cells, and aptamers in the single strand deoxyribonucleic acid (ssDNA) library were then selected repeatedly by cell-systematic evolution of ligands by exponential enrichment (C-SELEX) technology, and amplified by polymerase chain reaction (PCR) to generate sub-ssDNA library. During the experiment, PCR amplification with fluorescently labeled primer and flow cytometry were performed to analyze the aptamers'enrichment of sub-library, and the final round product of the sub-ssDNA library was cloned. After the sequencing, the primary and secondary structures of the aptamers were analyzed.
RESULTS:
Electrophoresis indicated that the product of PCR amplification for each round subssDNA library was able to see a clear DNA band in the agarose gel. After 13 rounds of screening, the fluorescence intensity of the sub-ssDNA library binding the cells ranged from 2.14% to 51.12%, reaching a steady state at the 13th round. A total of 30 clones were selected and sequenced, 22 of which contained 1 of the 4 conserved sequences of AAGTA, TATCT, AGATG and AAATT in their primary structure, but the remained eight aptamers contained none of the conserved sequence. Secondary structure analysis indicated that four stem-loops and loop simulation convex structures existed in the aptamers.
CONCLUSION
C-SELEX technology can be used to screen the aptamers binding primary cells from patients with leukemia. The aptamers selected from the CD33+/CD34- cells from the patients of AML-M2 subtype might be used for the diagnosis and treatment for leukemia.
Adolescent
;
Adult
;
Antigens, CD34
;
genetics
;
immunology
;
Antigens, Differentiation, Myelomonocytic
;
genetics
;
immunology
;
Aptamers, Nucleotide
;
genetics
;
metabolism
;
DNA, Single-Stranded
;
genetics
;
Female
;
Humans
;
Leukemia, Myeloid, Acute
;
genetics
;
immunology
;
Male
;
Middle Aged
;
SELEX Aptamer Technique
;
Sialic Acid Binding Ig-like Lectin 3
;
genetics
;
immunology
;
Young Adult

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