• 제목/요약/키워드: Ras protein

검색결과 172건 처리시간 0.031초

Hypermethylation of the Ras Association Domain Family 1A (RASSF1A) Gene in Gallbladder Cancer

  • Kee, Se Kook;Lee, Ji Yun;Kim, Mi Jin;Lee, Su Man;Jung, Young Won;Kim, Young Joo;Park, Jae Yong;Bae, Han Ik;Hong, Hae Sook;Yun, Young Kook;Kim, Sang Geol;Kim, Dong Sun
    • Molecules and Cells
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    • 제24권3호
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    • pp.364-371
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    • 2007
  • The tumor suppressor gene Ras association domain family 1A (RASSF1A) is highly methylated in a wide range of human sporadic tumors. The current study investigated the hypermethylation of RASSF1A, the expression of RASSF1A protein, and the correlation between these and the clinicopathological features of gallbladder (GB) cancer in Korean patients. Formalin-fixed, paraffin-embedded tumors and non-neoplastic GB tissues (22 carcinomas, 8 adenomas, 26 normal epithelia) were collected from patients who had undergone surgical resection. The methylation status of two regions of the RASSF1A CpG island was determined by methylation-specific PCR (MSP), and the expression of RASSF1A protein was examined by immunohistochemistry using tissue microarrays. The K-RAS mutation was analyzed by direct sequencing. Methylation of the RASSF1A promoter (region 1) was detected in 22.7% (5/22) of carcinomas, 12.5% (1/8) of adenomas, and 0% (0/26) of normal gallbladder epithelia (P = 0.025). Methylation of the first exon (region 2) was found in 36.4% (8/22) of carcinomas, 25.0% (2/8) of adenomas, and 8.0% (2/26) of normal gallbladder epithelia (P = 0.038). K-RAS mutations were present in 4.5% (1/22) of carcinomas and 25% (2/8) of adenomas. RASSF1A methylaton was not associated with clinicopathological factors or K-ras mutation. Reduction or loss of RASSF1A expression was observed in most methylated adenocarcinomas. Three RASSF1A-expressing human biliary tract cancer cell lines examined contained unmethylated promoters and exons 1. These results suggest that downregulation of RASSF1A expression by DNA hypermethylation may be involved in GB carcinogenesis.

Inhibitory Effects of Phenolic Alkaloids of Menispermum Dauricum on Gastric Cancer in Vivo

  • Zhang, Hong-Feng;Wu, Di;Du, Jian-Kuo;Zhang, Yan;Su, Yun-Ming
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권24호
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    • pp.10825-10830
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    • 2015
  • The present study was conducted to investigate effects and mechanisms of action of phenolic alkaloids of Menispermum dauricum (PAMD) on gastric cancer in vivo. In vitro, cell apoptosis of human gastric cancer cell line SGC-7901 was observed using fluorescence staining. In vivo, a mice model was constructed to observe tumor growth with different doses. Cell apoptosis was examined using flow cytometry and K-RAS protein expression using Western blotting. The mRNA expression of P53, BCL-2, BAX, CASPASE-3, K-RAS was examined by real-time PCR. PAMD significantly suppressed tumor growth in the xenograft model of gastric cancer in a dose-dependent manner (p<0.01). Functionally, PAMD promoted cell apoptosis of the SGC-7901 cells and significantly increased the rate of cell apoptosis of gastric tumor cells (p<0.05). Mechanically, PAMD inhibited the expression of oncogenic K-RAS both at the mRNA and protein levels. In addition, PAMD affected the mRNA expression of the cell apoptosis-related genes (P53, BCL-2, BAX, CASPASE-3). PAMD could suppress gastric tumor growth in vivo, possibly through inhibiting oncogenic K-RAS, and induce cell apoptosis possibly by targeting the cell apoptosis-related genes of P53, BCL-2, BAX, CASPASE-3.

The cloning and characterization of the small GTP-binding Protein RacB in rice.

  • Jung, Young-Ho;Jaw, Nam-Soo
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.81.2-82
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    • 2003
  • Plants have evolved along with pathogens, and they have developed sophisticated defense systems against specific microorganisms to survive. G-protons are considered one of the upstream signaling components working as a key for the defense signal transduction pathway. For activation and inactivation of G-protein, GTP-biding proteins are involved. GTP -binding proteins are found in all organisms. Small GTP-binding proteins, having masses of 21 to 30kD, belong to a superfamily, often named the Ras supefamily because the founding members are encoded by human Ras genes initially discovered as cellular homologs of the viral ras oncogene. Members of this supefamily share several common structural features, including several guanine nucleotide binding domains and an effector binding domain. However, exhibiting a remarkable diversity in both structure and function. They are important molecular switches that cycle between the GDP-bound inactive form into the GTP-bound active form through GDP/GTP replacement. In addition, most GTP-binding proteins cycle between membrane-bound and cytosolic forms. such as the RAC family are cytosolic signal transduction proteins that often are involved in processing of extracellular stimuli. Plant RAC proteins are implicated in regulation of plant cell architecture secondary wall formation, meristem signaling, and defense against pathogens. But their molecular mechanisms and functions are not well known. We isolated a RacB homolog from rice to study its role of defense against pathogens. We introduced the constitutively active and the dominant negative forms of the GTP-hinging protein OsRacB into the wild type rice. The dominant negative foms are using two forms (full-sequence and specific RNA interference with RacB). Employing southern, and protein analysis, we examine to different things between the wild type and the transformed plant. And analyzing biolistic bombardment of onion epidermal cell with GFP-RacB fusion protein revealed association with the nucle.

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간질성 폐질환에서 p53 및 K-ras 암표지자의 발현 (p53 and K-ras Expression in Interstitial Lung Disease)

  • 오인채;김유일;김규식;유영권;김수옥;이은우;임성철;김영철;박경옥;박창수
    • Tuberculosis and Respiratory Diseases
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    • 제51권3호
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    • pp.201-210
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    • 2001
  • 연구배경 : 환경, 작업성노출, 바이러스감염, 유전적소인, 면역학적 이상 등 다양한 원인들이 특발성폐섬유화증(Idiopathic pulmonary fibrosis, IPF)의 원인인자들로 추정되어지고 있으나 아직 그 원인 및 병태생려는 분명하지 않다. 그런데, IPF환자의 10-13%는 폐암으로 사망하며, IPF에서 7배정도 폐암의 발생위험도 IPF 환자의 기관지 폐포상피세포가 p53과 p21단백을 과발현하고 있음이 보고되고 있고, 만성적인 유전자 손상의 결과로 이 두가지 단백의 발현이 증가되어 있을 것으로 추정된다. 방 법 : 연구자는 간질성 폐질환조직에서 p53과 K-ras단백의 발현정도와 임상양상을 관찰하고자 폐생검(개흉 폐생검 : 15예, 경기관지 폐생검 : 23예)조직에서 간질성 폐질환으로 진단된 38예를 대상으로 p53과 K-ras단백의 발현여부를 면역조직화학염색을 이용하여 관찰하였다. 결 과 : 간질성 폐질환 조직에서 p53은 21.1%에서, K-ras는 65.8%에서 암표지자단백 발현이 관찰되었다. 대조군으로 시행한 10예의 정상 기관지점막 표피세포는 전 예에서 두가지 p53, K-ras단백들이 발현되지 않았다. 간질성 폐질환의 조직형에 따라 암표지자 발현율이 차이를 보였는데, p53은 NSIP의 경우 36.4%로 양성율이 높았고, BOOP, AIP, DIP, UIP의 순이었다. K-ras는 전반적으로 p53에 비해 양성율이 높게 나타나서 UIP와 AIP가 75.0%로 가장 높았고, BOOP, DIP, NSIP의 순으로 나타났다. 이환기간과 암표지자 발현율과의 관계는 p53의 경우 증상이 오래 지속될수록 양성율이 높은 경향을 보였으며, K-ras의 경우는 증상의 기간과 관계없이 58-68%의 일정한 발현율을 보였고 전반적으로 p53보다 높은 양성율을 보였다. 결 론 : 본 연구의 결과 정상인의 상피세포에서는 관찰되지 않았으나 간질성 폐질환의 상피세포에서 p53과 K-ras단백의 발현이 증가되었음을 관찰할 수 있었고, 이러한 세포성장 또는 세포고사 조절인자들의 발현이 간질성 폐질환의 병태생리에 어떠한 역할을 하며 폐암의 발생과는 어떠한 관계에 있는지는 아직 분명하지 않으며 계속적인 연구가 요구된다.

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Hypermethylation and Clinicopathological Significance of RASAL1 Gene in Gastric Cancer

  • Chen, Hong;Pan, Ying;Cheng, Zheng-Yuan;Wang, Zhi;Liu, Yang;Zhao, Zhu-Jiang;Fan, Hong
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권11호
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    • pp.6261-6265
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    • 2013
  • Background: Recent studies have suggested that expression of the RAS protein activator like-1 gene (RASAL1) is decreased in gastric carcinoma tissues and cell lines, indicated a role in tumorigenesis and development of gastric cancer. Reduced expression of RASAL1 could result in aberrant increase of activity of RAS signaling pathways in cancer cells. However, the exact mechanism which induces down-regulation of the RASAL1 gene remains unclear. This study aimed to determine the methylation status and regulation of RASAL1 in gastric cancer. Materials and Methods: Using the methylation-specific polymerase chain reaction (MSP), the methylation status of CpG islands in the RASAL1 promoter in gastric cancers and paired adjacent non-cancerous tissues from 40 patients was assessed and its clinicopathological significance was analyzed. The methylation status of RASAL1 in gastric cancer lines MKN-28, SGC-790l, BGC-823, as well as in normal gastric epithelial cell line GES-l was also determined after treatment with a DNA methyltransferase inhibitor, 5-aza-2'-doexycytidine (5-Aza-CdR). RAS activity (GAS-GTP) was assessed through a pull-down method, while protein levels of ERK1/2, a downstream molecule of RAS signaling pathways, were determined by Western blotting. Results: The frequencies of RASAL1 promoter methylation in gastric cancer and paired adjacent non-cancerous tissues were 70% (28/40) and 30% (12/40) respectively (P<0.05). There were significantly correlations between RASAL1 promoter methylation with tumor differentiation, tumor size, invasive depth and lymph node metastasis in patients with gastric cancer (all P<0.05), but no correlation was found for age or gender. Promoter hypermethylation of the RASAL1 gene was detected in MKN-28, SGC-790l and BGC-823 cancer cells, but not in the normal gastric epithelial cell line GES-1. Elevated expression of the RASAL1 protein, a decreased RAS-GTP and p-ERK1/2 protein were detected in three gastric cancer cell lines after treatment with 5-Aza-CdR. Conclusions: Aberrant hypermethylation of the RASAL1 gene promoter frequently occurs in gastric cancer tissues and cells. In addition, the demethylating agent 5-Aza-CdR can reverse the hypermethylation of RASAL1 gene and up-regulate the expression of RASAL1 significantly in gastric cancer cells in vivo. Our study suggests that RASAL1 promoter methylation may have a certain relationship with the reduced RASAL1 expression in gastric cancer.

Prediction of male fertility using Ras-related proteins

  • Jeong-Won, Bae;Ju-Mi, Hwang;Woo-Sung, Kwon
    • Journal of Animal Science and Technology
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    • 제64권6호
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    • pp.1024-1034
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    • 2022
  • Identifying effective biomarkers for the diagnosis of male fertility is crucial for improving animal production and treating male infertility in humans. Ras-related proteins (Rab) are associated with morphological and motion kinematic functions in spermatozoa. Moreover, Rab2A, a Rab protein, is a possible male fertility-related biomarker. The present study was designed to identify additional fertility-related biomarkers among the various Rab proteins. First, the expression of Rab proteins (Rab3A, 4, 5, 8A, 9, 14, 25, 27A, and 34A) from 31 duroc boar spermatozoa was measured before and after capacitation; correlation between Rab protein expression and litter size was evaluated by statistical analysis. The results showed that the expression of Rab3A, 4, 5, 8A, 9, and 25 before capacitation and Rab3A, 4, 5, 8A, 9, and 14 after capacitation were negatively correlated with litter size. Moreover, depending on the cutoff values calculated by receiver operating curves, an increase in litter size was observed when evaluating the ability of the Rab proteins to forecast litter size. Therefore, we suggest that Rab proteins may be potential fertility-related biomarkers that could help select superior sires in the livestock industry.

DMBA 매식과 방사선 조사로 유도된 백서 타액선 종양에서 H-ras 암유전자의 활성화 (ACTIVATION OF H-RAS ONCOGENE IN RAT SALIVARY GLAND TUMORS INDUCED BY DMBA AND IRRADIATION)

  • 허기수;최종환;최순철;박태원;유동수
    • 치과방사선
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    • 제28권1호
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    • pp.245-259
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    • 1998
  • Cellular transforming genes have been identified in a number of different tumor cell lines and tumor types. A significant number of these oncogenes belong to the ras gene family. The ras gene family consists of three closely related genes:H-ras, K-ras and N-ras which code for a related 21 kDa protein. Mutations in codon 12, 13 and 61 of one of the three ras genes convert these genes into acute oncogenes. The presence of H-ras gene mutations has important prognostic implications in various tumors. Each genomic DNA was isolated from tumors induced by implantation with DMBA, or by treatment with DMBA -implantation/irradiation. When genome DNA was transfected into NIH 3T3 cells and investigated by two-step PCR-RFLP, the fOllowing results were concluded: 1. Transformation foci developed in two groups when the genome DNA of two experimental groups were transfected into NIH 3T3 cells. 2. Transformation efficiency was 0.01-0.02 foci/㎍DNA in the experimental group with the DMBA-implantation, 0.01-0.03 foci/㎍lgDNA in the experimental group with the DMBA-implantation/irradiation according to results of transfection assay. 3. When the point mutation of H-ras gene was investigated by a two-step PCR-RFLP, there was 13.9% (5/36) in the experimental group with the DMBA implantation, 15.4 % (6/39) in the experimental group with the DMBA -implantation/irradiation. 4. The point mutation in codon 12 and 61 of H-ras was 5.6%(2/36) and 8.3%(3/36) in the experimental group with the DMBA implantation. 5. The point mutation in codon 12 and 61 of H-ras gene was 7.7%(3/39) in the experimental group with the DMBA -implantation/irradiation.

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신경성장기전 및 치료제개발

  • 양성일
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1993년도 제1회 추계심포지움 and 제2회 생리분자과학연구센터워크숍
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    • pp.28-33
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    • 1993
  • Regulation of nerve growth factor (NGF)-induced neuronal differentiation by GTPase activating protein(GAP) and its mechanism were investigated in rat pheochromocytoma cell line, PCl2. Overexpression of GAP caused the delay in the onset of neurite outgrowth of PCl2 eel Is in response to NGF. GAP has been known to inhibit p21$\^$ras/, the activated form of which induces neuronal differentiation. Therefore, the activity of p21$\^$ras/ was compared in control cells and cells overexpressing GAP indirectly by measuring the activities of B-Raf and MAP kinase that are known to be positively regulated by p21$\^$ras/. Surprisingly, NGF-induced activities of these two proteins were the same in control eells and GAP-overexpressing cells. Activities of Trk, PLC-r and SMC that act at a site upstream to p21$\^$ras/ in NGF signal transduction pathway were not also affected by GAP overexpression. Interestingly, however, the extent of tyrosine phosphorylation of SNT was found to be remarkably low in cells overexpressing GAP. It has been shown previously that neurotrophins and not mitogens induce SNT tyrosine phosphorylation in PCl2 cells. Thus it is possible that the timing of NGF-induced neuronal differntiation may be in part regulated by SNT and the slower onset of neurite outgrowth in cells overexpressing GAP may be through the inhibition of SNT by GAP.

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Direct Interaction between Ras Homolog Enriched in Brain and FK506 Binding Protein 38 in Cashmere Goat Fetal Fibroblast Cells

  • Wang, Xiaojing;Wang, Yanfeng;Zheng, Xu;Hao, Xiyan;Liang, Yan;Wu, Manlin;Wang, Xiao;Wang, Zhigang
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권12호
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    • pp.1671-1677
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    • 2014
  • Ras homolog enriched in brain (Rheb) and FK506 binding protein 38 (FKBP38) are two important regulatory proteins in the mammalian target of rapamycin (mTOR) pathway. There are contradictory data on the interaction between Rheb and FKBP38 in human cells, but this association has not been examined in cashmere goat cells. To investigate the interaction between Rheb and FKBP38, we overexpressed goat Rheb and FKBP38 in goat fetal fibroblasts, extracted whole proteins, and performed coimmunoprecipitation to detect them by western blot. We found Rheb binds directly to FKBP38. Then, we constructed bait vectors (pGBKT7-Rheb/FKBP38) and prey vectors (pGADT7-Rheb/FKBP38), and examined their interaction by yeast two-hybrid assay. Their direct interaction was observed, regardless of which plasmid served as the prey or bait vector. These results indicate that the 2 proteins interact directly in vivo. Novel evidence is presented on the mTOR signal pathway in Cashmere goat cells.

인삼의 polyacetylene 계 성분이 Ras 단백질 변형 효소의 활성에 미치는 영향과 인삼의 석유에텔 추출물이 세포주기에 미치는 영향 (Effects of Polyacetylenes in Ginseng on Activity of Enzymes Related to Post-translational Modification of Ras Protein and Effects of Petroleum Ether Extract of Ginseng on Progression of Cell Cycle)

  • 김동청;이지영;인만진;채희정;황윤경;황우익
    • Journal of Ginseng Research
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    • 제25권4호
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    • pp.156-161
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    • 2001
  • 인삼의 항암효과의 분자적 기전을 규명하기 위하여 인삼의 성분 중 강력한 항암효과를 가지는 것으로 보고된 polyacetylene 계 성분이 Ras 단백질의 post-translational modification에 관여하는 효소인 farnesyl protein trasnferase(FPTase)와 carboxyl methyl transferase(CMTase)의 활성에 미치는 영향을 확인하였고, 인삼의 지용성 성분(PEE)이 세포주기에 미치는 영향을 확인하였다. 소의 뇌로부터 FPTase와 CMTase를 부분정제하여 인삼의 polyacetylene계 성분이 두 효소의 활성에 미치는 영향을 확인한 결과, FPTase는 10mM panaxynol과 10mM panaxydol에 의해서 효소활성이 각각 16.2%와 21.3% 저해받았고, CMTase 효소활성은 polyacetylene계 성분인 panaxynol과 pnanxydol에 의해서 활성을 저해받지 않는 것으로 나타났다. 인체 결장 암세포인 HT-29와 인체 간암세포인 HepG2의 배양액에 인삼의 PEE 성분의 첨가배양시 세포크기가 상당히 위축되며 사멸되었음을 볼 수 있었고, 세포주기 분석 결과 인삼의 PEE 성분의 첨가배양시 G1 단계 세포가 증가하고, S단계세포가 감소하여 세포주기의 진행이 G1-S 단계에서 현저히 억제됨을 나타내었다. 이상의 결과로 보아 인삼의 지용성 성분에 의한 항암효과는 Ras의 post-translational modification 에 관여하는 효소의 활성저해에 기인하기보다는 세포주기의 진행 과정에서 세포주기 조절인자들의 발현변화 및 세포주기의 진행에 관여하는 단백질의 활성억제와 관련이 있을 것으로 사료된다.

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