1.Functional Modification of a Specific RNA with Targeted Trans-Splicing.
Young Hee PARK ; Sung Chun KIM ; Byung Su KWON ; Heung Su JUNG ; Kuchan KIMM ; Seong Wook LEE
Genomics & Informatics 2004;2(1):45-52
The self-splicing group I intron from Tetrahymena thermophila has been demonstrated to perform splicing reaction with its substrate RNA in the trans configuration. In this study, we explored the potential use of the trans-splicing group I ribozymes to replace a specific RNA with a new RNA that exerts any new function we want to introduce. We have chosen thymidine phosphorylase (TP) RNA as a target RNA that is known as a valid cancer prognostic factor. Cancer-specific expression of TP RNA was first evaluated with RT-PCR analysis of RNA from patients with gastric cancer. We determined next which regions of the TP RNA are accessible to ribozymes by employing an RNA mapping strategy, and found that the leader sequences upstream of the AUG start codon appeared to be particularly accessible. A specific ribozyme recognizing the most accessible sequence in the TP RNA with firefly luciferase transcript as a 3' exon was then developed. The specific trans-splicing ribozyme transferred an intended 3' exon tag sequence onto the targeted TP transcripts, resulting in a more than two fold induction of the reporter activity in the presence of TP RNA in mammalian cells, compared to the absence of the target RNA. These results suggest that the Tetrahymena ribozyme can be a potent anti-cancer agent to modify TP RNAs in tumors with a new RNA harboring anti-cancer activity.
Codon, Initiator
;
Exons
;
Fireflies
;
Humans
;
Introns
;
Luciferases
;
RNA*
;
RNA, Catalytic
;
Stomach Neoplasms
;
Tetrahymena
;
Tetrahymena thermophila
;
Thymidine Phosphorylase
;
Trans-Splicing*
2.Antibacterial and Pharmacological Evaluation of Fluoroquinolones: A Chemoinformatics Approach.
Damini SOOD ; Neeraj KUMAR ; Aarushi SINGH ; Meena Kishore SAKHARKAR ; Vartika TOMAR ; Ramesh CHANDRA
Genomics & Informatics 2018;16(3):44-51
Fluoroquinolone (FQ) antibiotics are an important class of synthetic antibacterial agents. These are the most extensively used drugs for treating bacterial infections in the field of both human and veterinary medicine. Herein, the antibacterial and pharmacological properties of four fluoroquinolones: lomefloxacin, norfloxacin, ciprofloxacin, and ofloxacin have been studied. The objective of this study was to analyze the antibacterial characteristics of the different fluoroquinolones. Also, the pharmacological properties of the compounds including the Lipinski rule of five, absorption, distribution, metabolism, and excretion, LD50, drug likeliness, and toxicity were evaluated. We found that among all four FQ molecules, ofloxacin showed the highest antibacterial activity through in silico assays with a strong interaction (−38.52 kJ/mol) with the antibacterial target protein (topoisomerase-II DNA gyrase enzyme). The pharmacological and pharmacokinetic analysis also showed that the compounds ciprofloxacin, ofloxacin, lomefloxacin and norfloxacin have good pharmacological properties. Notably, ofloxacin was found to possess an IGC50 (concentration needed to inhibit 50% growth) value of 0.286 μg/L against the Tetrahymena pyriformis protozoa. It also tested negative for the Ames toxicity test, showing its non-carcinogenic character.
Absorption
;
Anti-Bacterial Agents
;
Bacterial Infections
;
Ciprofloxacin
;
Computer Simulation
;
DNA Gyrase
;
Fluoroquinolones*
;
Humans
;
Lethal Dose 50
;
Metabolism
;
Norfloxacin
;
Ofloxacin
;
Tetrahymena pyriformis
;
Toxicity Tests
;
Veterinary Medicine
3.In vitro toxicity of melamine against Tetrahymena pyriformis cells.
Zhengfang WANG ; Liben CHEN ; Rashad AL-KASIR ; Bo HAN
Journal of Veterinary Science 2011;12(1):27-34
This study assessed the toxicity of melamine against the unicellular eukaryotic system of Tetrahymena (T.) pyriformis exposed to 0, 0.05, 0.25, 0.5, 2.5, and 5 mg/mL of melamine. Cell growth curves of different cultures, the half maximum inhibition concentration (IC50) value of melamine, and morphological changes in cells were obtained via optical and transmission electron microscopic observation. The effects of eleven melamine concentrations, 0.25, 0.5, 1, 1.5, 2, 2.5, 3, 3.5, 4, 4.5 and 5 mg/mL, on protein expression levels of T. pyriformis were examined using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS). The results showed an obvious inhibitory effect of melamine on the growth of eukaryotic cells. Cell growth dynamics indicated that the IC50 value of melamine on T. pyriformis was 0.82 mg/mL. The cellular morphology was also affected in a concentration-dependent manner, with characteristics of atrophy or cell damage developing in the presence of melamine. The relative contents of the top four main proteins corresponding to peak mass-to-charge ratios (m/z) of 4466, m/z 6455, m/z 6514, and m/z 7772 in the MALDI-TOF-MS spectra were all found to be closely correlated with the melamine concentrations. In conclusion, exposure of eukaryotic cells to melamine could inhibit cell growth, cause changes in cytomorphology and even disturb the expression of proteins in a concentration-dependent manner. The described method of examining four sensitive proteins affected by melamine was also proposed to be used in a preliminary study to identify protein biomarkers in T. pyriformis.
Animal Feed/analysis/toxicity
;
Biological Markers/analysis
;
Food Additives/analysis/toxicity
;
Inhibitory Concentration 50
;
Microscopy, Electron, Transmission
;
Protozoan Proteins/analysis
;
Spectrometry, Mass, Matrix-Assisted Laser De
;
Tetrahymena pyriformis/cytology/*drug effects
;
Triazines/*toxicity
4.Analysis of gene expression of Tetrahymena thermophila treated with Panax japonicas.
Xiao-Cui CHAI ; Wen-Tao YANG ; Qi TANG ; Xue-Feng MA ; Jie XIONG ; Ping WANG ; Wei MIAO
China Journal of Chinese Materia Medica 2019;44(12):2580-2587
Panax japonicus is a traditional Chinese medicine,and its principle components have shown certain pharmacological activities for cell damage,aging and cell apoptosis. In order to clarify the pharmacological mechanism and involved metabolic pathways of P. japonicas,the gene expression of Tetrahymena thermophila under P. japonicus treatment was analyzed through high-throughput transcriptome sequencing in this study. Based on the transcriptome analysis,3 544 differentially expressed genes were identified in control group,of which 1 945 genes showed up-regulated expression and 1 599 genes showed down-regulated expression. Under P. japonicas treatment in the experiment group,3 312 differentially expressed genes were screened,of which 1 `493 genes showed up-regulated expression and 1 819 genes showed down-regulated expression. GO enrichment analysis indicated that in control group,the genes in the cells in a series of fundamental biological process were down-regulated,such as DNA replication and protein synthesis; while the signal transduction process and fatty acids oxidizing process were enriched. Whereas in the experiment group,down-regulated genes were mainly enriched in oxidation-reduction,cofactor metabolic process and vitamin metabolic process; up-regulated genes were enriched in signal transduction process and protein modification process. In the analysis using KEGG database,cell cycle pathway was enhanced and autophagy pathway was inhibited under the condition of P. japonicas treatment. Real-time quantitative polymerase chain reaction( RT-qPCR) was used to detect the expression differences between 6 up-regulated and 4 down-regulated genes in related metabolic pathways. The RT-q PCR results and RNA-Seq data were highly correlated and consistent with each other. This study could provide important direction and basis for further study on the mechanism of cell growth regulation with the treatment of P. japonica.
Gene Expression
;
Gene Expression Profiling
;
Metabolic Networks and Pathways
;
Panax
;
chemistry
;
Plants, Medicinal
;
chemistry
;
Tetrahymena thermophila
;
drug effects
;
genetics
;
Transcriptome
5.The key role of CYC2 during meiosis in Tetrahymena thermophila.
Qianlan XU ; Ruoyu WANG ; A R GHANAM ; Guanxiong YAN ; Wei MIAO ; Xiaoyuan SONG
Protein & Cell 2016;7(4):236-249
Meiotic recombination is carried out through a specialized pathway for the formation and repair of DNA double-strand breaks (DSBs) made by the Spo11 protein. The present study shed light on the functional role of cyclin, CYC2, in Tetrahymena thermophila which has transcriptionally high expression level during meiosis process. Knocking out the CYC2 gene results in arrest of meiotic conjugation process at 2.5-3.5 h after conjugation initiation, before the meiosis division starts, and in company with the absence of DSBs. To investigate the underlying mechanism of this phenomenon, a complete transcriptome profile was performed between wild-type strain and CYC2 knock-out strain. Functional analysis of RNA-Seq results identifies related differentially expressed genes (DEGs) including SPO11 and these DEGs are enriched in DNA repair/mismatch repair (MMR) terms in homologous recombination (HR), which indicates that CYC2 could play a crucial role in meiosis by regulating SPO11 and participating in HR.
Cell Cycle Checkpoints
;
Cyclins
;
genetics
;
metabolism
;
DNA Breaks, Double-Stranded
;
DNA Mismatch Repair
;
DNA Repair
;
Endodeoxyribonucleases
;
genetics
;
metabolism
;
Homologous Recombination
;
Meiosis
;
Microscopy, Fluorescence
;
Phenotype
;
Protozoan Proteins
;
genetics
;
metabolism
;
Real-Time Polymerase Chain Reaction
;
Sequence Analysis, RNA
;
Tetrahymena thermophila
;
genetics
;
metabolism
;
Transcriptome
6.Specificity of Intracellular Trans-Splicing Reaction by hTERT-Targeting Group I Intron.
Heung Su JUNG ; Byung Su KWON ; Seong Wook LEE
Genomics & Informatics 2005;3(4):172-174
Recent anti-cancer approaches have been based to target tumor-specifically associated and/or causative molecules such as RNAs or proteins. As this specifically targeted anti-cancer modulator, we have previously described a novel human cancer gene therapeutic agent that is Tetrahymena group I intron-based trans-splicing ribozyme which can reprogram and replace human telomerase reverse transcriptase (hTERT) RNA to selectively induce tumor-specific cytotoxicity in cancer cells expressing the target RNA. Moreover, the specific ribozyme has been shown to efficiently retard tumor tissues in xenograft mice which had been inoculated with hTERT-expressing human cancer cells. In this study, we assessed specificity of trans-splicing reaction in cells to evaluate the therapeutic feasibility of the specific ribozyme. In order to analyze the trans-spliced products by the specific ribozyme in hTERT-positive cells, RT, 5'-end RACE-PCR, and sequencing reactions of the spliced RNAs were employed. Then, whole analyzed products resulted from reactions only with the hTERT RNA. This study suggested that the developed ribozyme perform highly specific RNA replacement of the target RNA in cells, hence trans-splicing ribozyme will be one of specific agents for genetic approach to revert cancer.
Animals
;
Genes, Neoplasm
;
Heterografts
;
Humans
;
Introns*
;
Mice
;
RNA
;
Sensitivity and Specificity*
;
Telomerase
;
Tetrahymena
;
Trans-Splicing*
7.In Vivo Target RNA Specificity of Trans-Splicing Phenomena by the Group I Intron.
Genomics & Informatics 2008;6(2):84-86
The Tetrahymena group I intron has been shown to employ a trans-splicing reaction and has been modified to specifically target and replace human telomerase reverse transcriptase (hTERT) RNA with a suicide gene transcript, resulting in the induction of selective cytotoxicity in cancer cells that express the target RNA, in animal models as well as in cell cultures. In this study, we evaluated the target RNA specificity of trans -splicing phenomena by the group I intron in mice that were intraperitoneally inoculated with hTERT-expressing human cancer cells to validate the anti-cancer therapeutic applicability of the group I intron. To this end, an adenoviral vector that encoded for the hTERT-targeting group I intron was constructed and systemically injected into the animal. 5'-end RACE-PCR and sequencing analyses of the trans-spliced cDNA clones revealed that all of the analyzed products in the tumor tissue of the virus-infected mice resulted from reactions that were generated only with the targeted hTERT RNA. This study implies the in vivo target specificity of the trans - splicing group I intron and hence suggests that RNA replacement via a trans -splicing reaction by the group I intron is a potent anti-cancer genetic approach.
Animals
;
Cell Culture Techniques
;
Clone Cells
;
DNA, Complementary
;
Humans
;
Introns
;
Mice
;
Models, Animal
;
RNA
;
Sensitivity and Specificity*
;
Suicide
;
Telomerase
;
Tetrahymena
;
Trans-Splicing
8.Construction of a trans-splicing ribozyme for restoring EGFP truncation mutation.
Bing LI ; Yu-Quan XIONG ; Hong-Bin TU ; Qi-Cai LIU ; Dong-Ting ZOU ; Wen-Qu ZHOU ; Yao-Yong CHEN
Chinese Journal of Biotechnology 2005;21(5):748-753
Special designed group I intron ribozymes can specifically splice objective RNA, repair the mutant gene in RNA level. The specificity of ribozyme is determined by nucleotides specific internal guide sequence (IGS) introduced to the enzyme. In this study, fragment sequence containing Tetrahymena thermophilia intron I of 26S rRNA gene was cloned and cis-splicing activity of this ribozyme was confirmed by in vitro transcription. For evaluating the trans-splicing activity of this ribozyme, a truncated mutant Green Fluorescence Protein (GFP) vector, XYQ5/XYQ10- pEGFP-C2, was constructed. This vector deleted the 3' end 564bp fragment of EGFP coding sequence, led to the lost the activity of emitting green fluorescence. Trans-splicing ribozyme plasmids ptrans-rib-CMV2 for remedy of the truncated mutant EGFP was constructed by PCR and molecular cloning techniques. This vector utilizing cloned 26S rRNA intron 1 as core enzyme; selecting T-G site at 194bp of EGFP coding sequence as splicing receptor, designed an IGS which is inversely complement to the 188-193nt of EGFP mRNA; the 195-890bp fragment of EGFP coding sequence was ligated to the 3'-end of ribozyme core. The fragment containing these components was inserted to a eukayotic expression vector pRC-CMV2. Using linearized XYQ5/XYQ10- pEGFP-C2 and ptrans-rib-CMV2 as templates, truncated EGFP mRNA and the constructed ribozyme vector were transcribed and mixed to evaluate the trans-splicing activity. Analysis of in vitro transcription products mix by RT-PCR verified the existence of wild type EGFP mRNA molecule. Co-transfection of XYQ5/XYQ10- pEGFP-C2 with ptrans-rib-CMV2 to Hela cells proved this ribozyme restored green fluorescence within cell, but the efficiency was low.
Animals
;
Base Sequence
;
Green Fluorescent Proteins
;
genetics
;
HeLa Cells
;
Humans
;
Introns
;
genetics
;
Molecular Sequence Data
;
Mutant Proteins
;
genetics
;
Mutation
;
RNA, Catalytic
;
genetics
;
RNA, Messenger
;
genetics
;
Tetrahymena
;
enzymology
;
Trans-Splicing
;
Transcription, Genetic