• Title/Summary/Keyword: Quantitative PCR (qPCR)

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말의 열충격 단백질(heat shock proteins)의 특성 구명과 운동 후 유전자의 발현 분석 (Identification of Equine Heat Shock Proteins Gene and Their mRNA Expression Analysis after Exercise)

  • 조현우;박정웅;최재영;시바 쿠마르;김남영;신택순;조성근;김병우;조병욱
    • 생명과학회지
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    • 제24권2호
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    • pp.105-111
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    • 2014
  • 본 연구의 목적은 말의 열충격 단백질 유전자의 특성을 구명하고 말의 각 조직과 운동 전과 후 혈액에서 열충격 단백질 유전자의 발현량을 분석함에 있다. 이전의 연구를 통해, 대표적인 경주마인 더러브렛의 혈액과 골격근에서 운동 전, 후 RNA-sequencing을 통해 차등발현유전자 분석을 실시하고, 본 연구를 위해 운동 전과 후에 차등 발현된 유전자 중, 열충격 단백질 유전자(HspH1, Hsp90${\alpha}$, Hsp70)를 선택하였다. 세 개의 열충격 단백질 유전자는 각각의 혈액이나 근육에서 운동 전에 비해 후에 발현이 증가된 것으로 확인됐다. 본 연구팀은 선정된 유전자에 대한 검증과 분석을 위해, 말의 조직별 RT-PCR 분석과 운동시간별 백혈구에서 real time qPCR 분석을 실시하였다. 그 결과 말의 각 조직(갑상선, 결장, 골격근, 맹장, 신장, 심장, 척수, 폐)에서 세 개의 열충격 단백질 유전자 mRNA가 모두 존재함을 알 수 있었다. 또한, 말의 운동 시간 별 혈액에서 mRNA를 추출하여 열충격 단백질의 운동 시간에 따른 발현 양상 분석을 실시한 결과, 운동 전에 비해 운동 120분 후 열충격 단백질 유전자의 발현량이 증가함을 확인하였다. 이러한 결과는 인간과 다른 동물 실험의 결과와 일치하며, 열충격 단백질 유전자 전사 조절기작이 종간에 보존이 되어왔음을 시사한다. 또한, 운동에 따른 열충격 단백질 유전자의 발현 양상과 운동 수행 및 회복 기작간의 상관관계에 대한 추가적인 연구가 필요함을 제안하는 바이다.

발육영점온도에서 파밤나방 5령 유충의 유전자 발현 저하 (Suppression of Gene Expression in the Fifth Instar Larvae of Spodoptera exigua at Low Developmental Threshold Temperature)

  • 최봉기;박영진;김용균
    • 한국응용곤충학회지
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    • 제52권4호
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    • pp.295-304
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    • 2013
  • 파밤나방(Spodoptera exigua)의 발육을 일으키는 최저온도를 결정하고, 이 상태의 생리적 특성을 서로 다른 기능군(대사, 신경, 면역 및 스트레스) 유전자의 발현 양상을 이해하기 위해 본 연구를 수행하였다. 알부터 번데기까지 파밤나방의 발육영점온도는 $5.5{\sim}11.6^{\circ}C$로 다양하였다. 유충은 알과 번데기에 비해 비교적 낮은 온도에서 발육이 가능하였다. 5령충의 경우 생리적 발육영점온도가 추정치($10.3^{\circ}C$)와 다르게 이보다 높은 $15^{\circ}C$에서 관찰되었다. 정량적 RT-PCR로 분석된 유전자의 발현양상은 유충 영기가 진행됨에 따라 모든 기능군의 대부분 유전자의 발현량이 증가하였고, 또한 5령 시기에서도 처리온도가 증가함에 따라 이들 유전자의 발현량도 증가하였다. 비록 동일한 갓 탈피한 5령이라 하더라도 이전에 노출된 외부 온도에 따라 발현량이 상이하였다. 5령충의 생리적 발육영점온도인 $15^{\circ}C$에서 대부분의 유전자 발현량은 저하되었다. 그러나 높은 온도에서와 마찬가지로 발육기간이 증가함에 따라 이들 유전자의 발현량이 증가하였다. 이상의 결과는 발육영점온도에서 파밤나방의 발육 관련 유전자의 발현이 전체적으로 수준은 낮지만 지속적으로 진행되고 있다는 것을 의미한다.

Impact of phosphorus application on the indigenous arbuscular mycorrhizal fungi, soybean growth and yield in a 5-year phosphorus-unfertilized crop rotation

  • Higo, Masao;Sato, Ryohei;Serizawa, Ayu;Gunji, Kento;Suzuki, Daisuke;Isobe, Katsunori
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.351-351
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    • 2017
  • Arbuscular mycorrhizal fungi (AMF) are particular soil fungi that benefit many crops and require a symbiosis with plant roots to survive. In our previous study, there was a positive correlation between AMF root colonization and soybean grain yield in a four-year consecutive winter cover crop-soybean rotational system without phosphorus fertilizer. It is suggested that higher AMF root colonization can be a better solution for improving soybean growth and grain yield in P-limited soil. Our purpose in this study was to test the hypothesis that a P application is the main factor improving soybean growth, P nutrition and grain yield, and the benefit from AMF to soybean P uptake and growth in a P-limited soil. Impact of a P application on AMF root colonization and communities in soybean roots and their potential contribution to soybean growth and P nutrition under a five-year P-unfertilized crop rotational system were investigated over two-years. In this study, four cover crop treatments included 1) wheat (Triticum aestivum); 2) red clover (Trifolium pratense); 3) rapeseed (Brassica napus); and 4) fallow in the crop rotation. The amount of triple superphosphate as a P fertilizer applied rate after cultivation of cover crops was 120 and $360k\;ha^{-1}$ in 2014 and 2015, respectively. Soybean roots were sampled at full-flowering and analyzed for AMF communities using polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) and quantitative real-time PCR (qPCR) techniques. The AMF root colonization in the soybean roots at full bloom stage was significantly influenced by cover crop and P application throughout the two-year rotation. The two-year rotation of different cover crops or fallow impacted the molecular diversity of AMF communities colonizing roots of soybean. Redundancy analysis (RDA) indicated that AMF communities colonizing roots of soybean were significantly different among cover crop rotations. The AMF communities colonizing roots of soybean were clearly influenced by a P application in the two-year trial. Moreover, a P application may have positively impacts on the AMF communities under P-deficit soil due to the continuous cover crop-soybean rotational system without a P fertilizer.

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Molecular analysis of alternative transcripts of equine AXL receptor tyrosine kinase gene

  • Park, Jeong-Woong;Song, Ki-Duk;Kim, Nam Young;Choi, Jae-Young;Hong, Seul A;Oh, Jin Hyeog;Kim, Si Won;Lee, Jeong Hyo;Park, Tae Sub;Kim, Jin-Kyoo;Kim, Jong Geun;Cho, Byung-Wook
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권10호
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    • pp.1471-1477
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    • 2017
  • Objective: Since athletic performance is a most importance trait in horses, most research focused on physiological and physical studies of horse athletic abilities. In contrast, the molecular analysis as well as the regulatory pathway studies remain insufficient for evaluation and prediction of horse athletic abilities. In our previous study, we identified AXL receptor tyrosine kinase (AXL) gene which was expressed as alternative spliced isoforms in skeletal muscle during exercise. In the present study, we validated two AXL alternative splicing transcripts (named as AXLa for long form and AXLb for short form) in equine skeletal muscle to gain insight(s) into the role of each alternative transcript during exercise. Methods: We validated two isoforms of AXL transcripts in horse tissues by reverse transcriptase polymerase chain reaction (RT-PCR), and then cloned the transcripts to confirm the alternative locus and its sequences. Additionally, we examined the expression patterns of AXLa and AXLb transcripts in horse tissues by quantitative RT-PCR (qRT-PCR). Results: Both of AXLa and AXLb transcripts were expressed in horse skeletal muscle and the expression levels were significantly increased after exercise. The sequencing analysis showed that there was an alternative splicing event at exon 11 between AXLa and AXLb transcripts. 3-dimentional (3D) prediction of the alternative protein structures revealed that the structural distance of the connective region between fibronectin type 3 (FN3) and immunoglobin (Ig) domain was different between two alternative isoforms. Conclusion: It is assumed that the expression patterns of AXLa and AXLb transcripts would be involved in regulation of exercise-induced stress in horse muscle possibly through an $NF-{\kappa}B$ signaling pathway. Further study is necessary to uncover biological function(s) and significance of the alternative splicing isoforms in race horse skeletal muscle.

Molecular characterization and expression of a disintegrin and metalloproteinase with thrombospondin motifs 8 in chicken

  • Lee, Ra Ham;Lee, Seokhyun;Kim, Yu Ra;Kim, Sung-Jo;Lee, Hak-Kyo;Song, Ki-Duk
    • Asian-Australasian Journal of Animal Sciences
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    • 제31권8호
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    • pp.1366-1372
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    • 2018
  • Objective: A disintegrin and metallopeptidase with thrombospondin motifs type 8 (ADAMTS8) is crucial for diverse physiological processes, such as inflammation, tissue morphogenesis, and tumorigenesis. The chicken ADAMTS8 (chADAMTS8) gene was differentially expressed in the kidney following exposure to different calcium concentrations, suggesting a pathological role of this protein in metabolic diseases. We aimed to examine the molecular characteristics of chADAMTS8 and analyze the gene-expression differences in response to toll-like receptor 3 (TLR3) stimulation. Methods: The ADAMTS8 mRNA and amino acid sequences of various species (chicken, duck, cow, mouse, rat, human, chimpanzee, pig, and horse) were retrieved from the Ensembl database and subjected to bioinformatics analyses. Reverse-transcription polymerase chain reaction (RT-PCR) and quantitative PCR (qPCR) experiments were performed with various chicken tissues and the chicken fibroblast DF-1 cell line, which was stimulated with polyinosinic-polycytidylic acid (poly[I:C]; a TLR3 ligand). Results: The chADAMTS8 gene was predicted to contain three thrombospondin type 1 (TSP1) domains, whose amino acid sequences shared homology among the different species, whereas sequences outside the TSP1 domains (especially the amino-terminal region) were very dif­ferent. Phylogenetic analysis revealed that chADAMTS8 is evolutionarily clustered in the same clade with that of the duck. chADAMTS8 mRNA was broadly expressed in chicken tissues, and the expression was significantly up-regulated in the DF-1 cells in response to poly(I:C) stimulation (p<0.05). These results showed that chADAMTS8 may be a target gene for TLR3 signaling. Conclusion: In this report, the genetic information of chADAMTS8 gene, its expression in chicken tissues, and chicken DF-1 cells under the stimulation of TLR3 were shown. The result suggests that chADAMTS8 expression may be induced by viral infection and correlated with TLR3-mediated signaling pathway. Further study of the function of chADAMTS8 during TLR3-dependent inflammation (which represents RNA viral infection) is needed and it will also be important to examine the molecular mechanisms during different regulation, depending on innate immune receptor activation.

Relationship between DNA mismatch repair and CRISPR/Cas9-mediated knock-in in the bovine β-casein gene locus

  • Kim, Seung-Yeon;Kim, Ga-Yeon;You, Hyeong-Ju;Kang, Man-Jong
    • Animal Bioscience
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    • 제35권1호
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    • pp.126-137
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    • 2022
  • Objective: Efficient gene editing technology is critical for successful knock-in in domestic animals. RAD51 recombinase (RAD51) gene plays an important role in strand invasion during homologous recombination (HR) in mammals, and is regulated by checkpoint kinase 1 (CHK1) and CHK2 genes, which are upstream elements of RAD51 recombinase (RAD51). In addition, mismatch repair (MMR) system is inextricably linked to HR-related pathways and regulates HR via heteroduplex rejection. Thus, the aim of this study was to investigate whether clustered regularly interspaced short palindromic repeats/CRISPR-associated 9 (CRISPR/Cas9)-mediated knock-in efficiency of human lactoferrin (hLF) knock-in vector in the bovine β-casein gene locus can be increased by suppressing DNA MMR-related genes (MSH2, MSH3, MSH6, MLH1, and PMS2) and overexpressing DNA double-strand break (DSB) repair-related genes (RAD51, CHK1, CHK2). Methods: Bovine mammary epithelial (MAC-T) cells were transfected with a knock-in vector, RAD51, CHK1, or CHK2 overexpression vector and CRISPR/sgRNA expression vector to target the bovine β-casein gene locus, followed by treatment of the cells with CdCl2 for 24 hours. After 3 days of CdCl2 treatment, the knock-in efficiency was confirmed by polymerase chain reaction (PCR). The mRNA expression levels of DNA MMR-related and DNA DSB repair-related genes were assessed by quantitative real-time PCR (RT-qPCR). Results: Treatment with CdCl2 decreased the mRNA expression of RAD51 and MMRrelated genes but did not increase the knock-in efficiency in MAC-T cells. Also, the overexpression of DNA DSB repair-related genes in MAC-T cells did not significantly affect the mRNA expression of MMR-related genes and failed to increase the knock-in efficiency. Conclusion: Treatment with CdCl2 inhibited the mRNA levels of RAD51 and DNA MMR-related genes in MAC-T cells. However, the function of MMR pathway in relation to HR may differ in various cell types or species.

Engineering of Recombinant Escherichia coli Towards Methanol Sensing Using Methylobacterium extroquens Two-component Systems

  • Selvamani, Vidhya;Ganesh, Irisappan;Chae, Sowon;Maruthamuthu, Murali kannan;Hong, Soon Ho
    • 한국미생물·생명공학회지
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    • 제48권1호
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    • pp.24-31
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    • 2020
  • Five genes (mxbDM, mxcQE and mxaB) are responsible for the transcription of methanol oxidation genes in Methylobacterium strains. Among these, MxbDM and MxcQE constitute the two-component system (TCS) regulating methanol metabolism. In this study, we integrated the methanol-sensing domain of MxbD and MxcQ with the EnvZ/OmpR from Escherichia coli. The domain-swapping strategy resulted in chimeric histidine kinases (HK's) MxbDZ and MxcQZ AM1 containing recombinant E. coli. Real-time quantitative PCR was used to monitor OmpC expression mediated by the chimeric HK and response regulator (RR) OmpR. Further, an ompC promoter based fluorescent biosensor for sensing methanol was developed. GFP fluorescence was studied both qualitatively and quantitatively in response to environmental methanol. GFP measurement also confirmed ompC expression. Maximum fluorescence was observed at 0.05% methanol and 0.01% methanol using MxbDZ and MxcQZ AM1, respectively. Thus the chimeric HK containing E. coli were found to be highly sensitive to methanol, resulting in a rapid response making them an ideal sensor.

Deregulation of MTDH Gene Expression in Gastric Cancer

  • Baygi, Modjtaba Emadi;Nikpour, Parvaneh
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권6호
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    • pp.2833-2836
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    • 2012
  • Aim: Gastric cancer is the third most frequent cause of cancer mortality worldwide. In Iran, it is one of the leading causes at the national level. Localized at chromosome 8q22, the human MTDH gene has been reported to be over-expressed in a spectrum of malignancies. However, since there is a lack of data concerning with expression in gastric cancer at the transcriptional level, in this study we evaluated MTDH expression in Iranian cases. Methods: Totally, thirty paired gastric samples were examined by quantitative real-time RT-PCR. Results: Although the mRNA expression was significantly elevated in 46.6% of the examined tumor tissues; its expression was low in others (36.6%). Moreover, there was only a marginal statistical difference between the MTDH gene expression of all tumor specimens compared to their paired non-tumor ones and no statistically significant association with the grades and types of the tumors. Conclusion: Taken together, our results demonstrated that expression of MTDH at the transcriptional level may be increased in gastric cancer tissue samples but with considerable heterogeneity. Due to this, it may have the potential to be used as a target for diagnostic/therapeutic purposes only in a subset of patients.

Comprehensive Evaluation of the Anti-Helicobacter pylori Activity of Scutellariae Radix

  • Lee, Ba Wool;Park, Il-Ho;Yim, Dongsool;Choi, Sung Sook
    • Natural Product Sciences
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    • 제23권1호
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    • pp.46-52
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    • 2017
  • The aim of this study was to evaluate the anti-Helicobacter pylori activity of fractions and major aglycon compounds (baicalein, chrysin, oroxylin A, wogonin) of Scutellariae Radix. Minimum inhibitory concentration (MIC) measurement, DPPH radical-scavenging assay, DNA protection assay, and urease inhibition analysis were performed. The ethyl acetate (EtOAc) fraction showed the potent anti-Helicobacter activity, and therefore, compounds in the EtOAc fraction were subjected to further assay. The MICs of chrysin, oroxylin A, and wogonin against Helicobacter pylori 26695 were 6.25, 12.5 and $25{\mu}g/mL$, respectively. Baicalein exhibited the most effective DPPH radical-scavenging activity. DNA protection using Fenton reaction, chrysin, oroxylin A, and wogonin showed effective DNA protective effect. This result was also confirmed by quantitative real-time polymerase chain reaction (qRT-PCR). Regarding Jack bean urease (0.5 mg/mL, 50 unit/mg) inhibition, 20 mM ofbaicalein and chrysin inhibited urease activity by 88.2% and 72.5%, respectively.

Production and bioactivity of recombinant tilapia IL-$1\beta$

  • Hong, Su-Hee
    • 한국어병학회지
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    • 제22권2호
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    • pp.147-153
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    • 2009
  • To study the biological activity of interleukin-$1\beta$(IL-$1\beta$), a proinflammatory cytokine, in nile tilapia, Oreochromis niliticus, the recombinant tilapia IL-$1\beta$ was produced in E. coli cells based on pQE vector. Ni-NTA (nitriloacetic acid) metal affinity chromatography was used to purify recombinant protein. The eluted fractions exhibited a single band of protein with a molecular weight of about 25kDa, which is in close agreement with 25.4 kDa predicted by the cDNA sequence. The biological activity of the purified recombinant tilapia IL-$1\beta$ was tested through its effects on IL-$1\beta$ gene expression, which are known as IL-$1\beta$ inducible genes in mammals and fishes. IL-$1\beta$ gene expression induced by poly I:C, a synthetic double stranded RNA, was also assessed in tilapia head kidney cells. IL-$1\beta$ gene expression was analysed using QPCR (quantitative polymerase chain reaction). The ratio of the indicated gene expression was expressed as the relative mRNA level to $\beta$-actin mRNA level, which is constitutively expressed in macrophages. Consequently, head kidney cells incubated for three hours with rIL-$1\beta$(10, 2, 1 $\mu{g}$/ml) showed a dose dependent increase in IL-$1\beta$ mRNA levels and 1 $\mu{g}$/ml of poly I:C was also able to induce IL-$1\beta$ gene expression in head kidney in tilapia.