• 제목/요약/키워드: Chimeric transcript

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소아악성고형종의 진단에 있어서 chimeric transcript의 유용성 (Usefulness of Chimeric Transcript in the Diagnosis of Pediatric Solid Tumors)

  • 최승훈
    • Advances in pediatric surgery
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    • 제5권1호
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    • pp.45-52
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    • 1999
  • Pediatric solid tumors have many histologic similarity. These tumors contained small round cell types, and cause frequent diagnostic problems in pediatric pathology. An important advance in the differentiation of these small round cell tumors has been the identification of consistent chromosomal translocations associated with several types of tumors. Eighteen patients with soft tissue sarcoma were available for review. Seventeen cell lines were also included in this study. The RNA from the specimens were analyzed by reverse transcriptase-polymerase chain reaction (RT-PCR). PAX3-FKHR fusion was present in four of five alveolar rhabdomyosarcoma and PAX7-FKHR fusion was detected in one of five alveolar rhabdomyosarcoma. None of the specimens expressed more than one chimeric transcript. EWS-FLI1 or EWS-ERG fusions were detected in all seven Ewings' sarcoma. No specimens showed EWS-WT1 fusion. These results corresponded well to the histopathologic diagnosis. There were no differences in the histologic appearances of tumors with the more frequent PAX3-FKHR or EWS-FLI1 fusions compared with those containing the variant PAX7-FKHR or EWS-ERG fusions. RT-PCR assay for chimeric transcript is a useful tool for rapid and objective diagnosis of pediatric solid tumors. Through these tools, we can approach genetically to the differential diagnosis of undifferentiated small round tumors.

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Cucumber mosaic virus Paf 계통의 약독 병징과 관련된 satellite RNA의 유전자 해석 (Genomic Analysis of Satellite RNA of Cucumber mosaic virus-Paf Related with Mild Symptoms)

  • 성미영;정민영;이상용;류기현;최장경
    • 식물병연구
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    • 제10권4호
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    • pp.241-247
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    • 2004
  • Cucumber mosaic virus(CMV)-Paf 계통에 포함된 satellite RNA(Paf-satRNA)는 CMV의 병징을 완화시키는 약독병징 관련 유전자로 작용하였다(Choi 등, 2001). 이 연구는 Paf-satRNA의 약독병징 관련 유전자의 도메인을 확인하기 위하여, 고추에서 chlorosis 병징을 발현하는 PepY-satRNA와 키메라 satRNA를 구축하여 분석하였다. 두 종의 satRNA의 염기서열을 비교한 결과, 분자크기가 큰 PepY-satRNA에서 10염기의 삽입이 발견되기는 하였지만, 양 말단영역의 염기는 비교적 안정된 conserved sequence를 보였다. 그러나 이들 satRNA의 중간영역에 존재하는 염기서열, 즉 5' 말단의 81번째 염기로부터 113번째, 그리고 183번째 염기부터 265번째 염기까지의 영역에서는 많은 변화를 나타냈다. 약독병징과 관련된 도메인을 확인하기 위하여 구축한 각 satRNA 및 키메라 satRNA의 cDNA로부터 transcript RNA를 전사시키고, 전사된 각 satRNA transcript를 CMV-Fny의 게놈RNA1, RNA2 및 RNA3의 transcript와 혼합한 후 N. benthamiana에 접종하였다. 그 결과 RT-PCR에 의해서 모든 satRNA-cDNA로부터 전사된 transcript의 감염성이 확인되었으며, Paf-satRNA 및 키메라 Paf(H/N)-satRNA와 PepY(N/A)-satRNA를 접종한 N. benthamiana에서는 모두 약한 모자이크 또는 무병징 감염의 특성을 보였다. 이와는 대조적으로 PepY-satRNA 및 키메라 PepY(H/N)-satRNA와 Paf(N/A)-satRNA를 접종한 식물에서는 전형적인 모자이크 증상과 식물체의 위축을 동반하였다. 이들 각 키메라 satRNA에 감염된 N. benthamiana를 접종원으로 고추에 접종한 결과, Paf-satRNA와 혼합한 CMV-Fny를 접종한 고추에서는 무병징에 가까운 약한 모자이크 증상이 발현되었고, PepY-satRNA를 접종한 고추는 뚜렷한 chlorosis의 모자이크 증상이 발현되었다. 한편 이들 두 종 satRNA의 키메라, Paf(H/N)-satRNA와 PepY(N/A)-satRNA를 접종한 고추에서는 모두 약한 모자이크 또는 무병징 감염의 특성을 보였고, PepY(H/N)-satRNA와 Paf(N/A)-satRNA를 접종한 식물에서는 전형적인 chlorosis의 모자이크 증상과 식물체의 위축을 동반하였다. 이와 같은 결과를 종합해 보았을 때, N. benthamiana에서와 마찬가지로 Paf-satRNA의 약독병징과 관련된 유전자의 도메인은 HpaI-NarI 영역에 존재한다는 것을 나타냈다.

오이 모자이크 바이러스 As계통 외피단백질 유전자의 식물체 형질질환을 위한 발현벡타의 구축 (Construction of a Plant Expression Vector for the Coat Protein Gene of Cucumber Mosaic Virus-As Strain for Plant Transformation)

  • 류기현;박원목
    • 한국식물병리학회지
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    • 제11권1호
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    • pp.66-72
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    • 1995
  • The coat protein (CP) gene of cucumber mosaic virus-As (CMV-As) strain was engineered for expression in the plant by using the cauliflower mosaic virus 35S transcript regulatory sequences. The CP gene was cloned into an Agrobacterium-derived binary vector. A chimeric gene was constructed by the cDNA of CMV-As CP and plant expression vector pBI121. The clone, pCMAS66, was first introduced into the phagemid vector pSPORT1 for situating sense orientation for translation and making restriction sites in order to re-introduce plant expression vector, pHI121. The resulting subclone pCASCP02 and plant expression vector pBI121 were treated with BamHI-SacI for excising the target gene and removing GUS gene, respectively. After Agrobacterium transformation by freeze-thaw technique, the clone, pCMASCP121-123 which contains sense orientation of the target gene, was selected and confirmed by restriction endonuclease analysis. The CMV-As CP gene was introduced into A. tumefaciens. The results on tobacco plant transformation with the vector system revealed that the system could be successfully introduced and showed high frequency of selection to putative transformations.

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Isolation and Characterization of ACC Synthase Gene Family in Mung Bean (Vigna radiata L.): Differential Expression of the Three ACC Synthase enes in Response to Auxin and Brassinosteroid

  • Sunjoo Joo;Kim, Woo-Taek
    • Journal of Plant Biotechnology
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    • 제2권2호
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    • pp.61-71
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    • 2000
  • By screening a cDNA library of auxin-treated mung bean (Vigna radiata L.) hypocotyls, we have isolated two full-length cDNA clones, pVR-ACS6 and pVR-ACS7, for 1-aminocyclopropane-1-carboxylate (ACC) synthase, the rate-limiting enzyme in the ethylene biosynthetic pathway. While PVR-ACS6 corresponds to the previously identified PCR fragment pMBA1, pVR-ACS7 is a new cDNA clone. A comparison of deduced amino acid sequences among auxin-induced ACC synthases reveal that these enzymes share a high degree of homology (65-75%) to VR-ACS6 and VR-ACS7 polypeptides, but only about 50% to VR-ACS1 polypeptide. ACS6 and ACS7 are specifically induced by auxin, while ACS1 is induced by cycloheximide, and to lesser extent by excision and auxin treatment. Results from nuclear run-on transcription assay and RNA gel blot studies revealed that all three genes were transcriptionally active displaying unique patterns of induction by IAA and various hormones in etiolated hypocotyls. Particularly, 24-epibrassinolide (BR), an active brassinosteroid, specifically enhanced the expression of VR-ACS7 by distinct temporal induction mechanism compared to that of IAA. In addition, BR synergistically increased the IAA-induced VR-ACS6 and VR-ACS7 transcript levels, while it effectively abolished both the IAA- and kinetin-induced accumulation of VR-ACS1 mRNA. In light-grown plants, VR-ACS1 was induced by IAA in roots, whereas W-ACS6 in epicotyls. IAA- and BR-treatments were not able to increase the VR-ACS7 transcript in the light-grown tissues. These results indicate that the expression of ACC synthase multigene family is regulated by complex hormonal and developmental networks in a gene- and tissue-specific manner in mung bean plants. The VR-ACS7 gene was isolated, and chimeric fusion between the 2.4 kb 5'-upstream region and the $\beta$-glucuronidase (GUS) reporter gene was constructed and introduced into Nicotiana tobacum. Analysis of transgenic tobacco plants revealed the VR-ACS7 promoter-driven GUS activity at a highly localized region of the hypocotyl-root junction of control seedlings, while a marked induction of GUS activity was detected only in the hypocotyl region of the IAA-treated transgenic seedlings where rapid cell elongation occurs. Although there was a modest synergistic effect of BR on the IAA-induced GUS activity, BR alone failed to increase the GUS activity, suggesting that induction of VR-ACS7 occurs via separate signaling pathways in response to IAA and BR.

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