• 제목/요약/키워드: mRNP

검색결과 39건 처리시간 0.027초

IGF결합 단백질-4(IGFBP-4)와 이질 핵 리보핵산단백질 L (hnRNP L)의 상호결합의 식별 (Identification of the Interaction between Insulin-like Growth Factor Binding Protein-4 (IGFBP-4) and Heterogeneous Nuclear Ribonucleoprotein L (hnRNP L))

  • 최미영
    • 생명과학회지
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    • 제23권11호
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    • pp.1311-1316
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    • 2013
  • hnRNP L은 pre-mRNA에 결합하는 단백질들 중에서 핵심이 되는 단백질이다. hnRNP L은 양이 아주 많은 핵 단백질로서 핵과 세포질을 왕복하는 특성을 지니고 있다. 이 단백질은 염색질 변형(chromatin modification), pre-mRNA 스플라이싱, 인트론이 없는 유전자들에서 유래한 mRNA들의 세포질로의 반출(export), IRES-매개성 번역, mRNA의 안정성 조절, 정자형성과정 등, 세포 내의 여러 가지 과정에 관여하고 있는 것으로 알려져 있다. 이 논문에서는 hnRNP L과 결합하는 세포 내 단백질을 찾아내기 위하여 사람의 간세포 cDNA library를 사용하여 이스트 two-hybrid 탐색 실험을 수행하였다. 그 결과 사람의 간세포에서 IGFBP-4가 hnRNP L과 상호결합하는 새로운 파트너라는 것을 발견하였다. 본 연구를 통하여 hnRNP L이 이스트 two-hybrid 시스템에서 IGFBP-4와 특이적으로 상호 결합한다는 것을 처음으로 발견하였다. 본 연구에서는 또한 이스트 two-hybrid 시스템에서 hnRNP L이 IGFBP-4와 상호결합한다는 점을 in vitro pull-down 실험을 통하여 재확인하였다.

Effect of Modulation of hnRNP L Levels on the Decay of bcl-2 mRNA in MCF-7 Cells

  • Lim, Mi-Hyun;Lee, Dong-Hyoung;Jung, Seung-Eun;Youn, Dong-Ye;Park, Chan-Sun;Lee, Jeong-Hwa
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권1호
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    • pp.15-20
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    • 2010
  • It has been shown that CA repeats in the 3'-untranslated region (UTR) of bcl-2 mRNA contribute the constitutive decay of bcl-2 mRNA and that hnRNP L (heterogenous nuclear ribonucleoprotein L) interacts with CA repeats in the 3'-UTR of bcl-2 mRNA, both in vitro and in vivo. The aim of this study was to determine whether the alteration of hnRNP L affects the stability of bcl-2 mRNA in vivo. Human breast carcinoma MCF-7 cells were transfected with hnRNP L-specific shRNA or hnRNP L-expressing vector to decrease or increase hnRNP L levels, respectively, followed by an actinomycin D chase. An RT-PCR analysis showed that the rate of degradation of endogenous bcl-2 mRNA was not affected by the decrease or increase in the hnRNP L levels. Furthermore, during apoptosis or autophagy, in which bcl-2 expression has been reported to decrease, no difference in the degradation of bcl-2 mRNA was observed between control and hnRNP L-knock down MCF-7 Cells. On the other hand, the levels of AUF-1 and nucleolin, transacting factors for ARE in the 3'UTR of bcl-2 mRNA, were not significantly affected by the decrease in hnRNP L, suggesting that a disturbance in the quantitative balance between these transacting factors is not likely to interfere with the effect of hnRNP L. Collectively, the findings indicate that the decay of bcl-2 mRNA does not appear to be directly controlled by hnRNP L in vivo.

인간 hnRNP A1 단백질에 포함된 RGG 상자의 기능 분석 (Analysis of the Role of RGG box of human hnRNP A1 protein)

  • 최미영
    • 한국산학기술학회논문지
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    • 제18권12호
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    • pp.575-580
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    • 2017
  • 본 연구는 hnRNP A1 단백질에 포함되어 있는 RGG 상자가 이 단백질의 세포내 위치에 미치는 영향 및 이 단백질의 안정화에 미치는 영향을 분석하는 것을 목적으로 하며 2014년 10월부터 약 3년 동안 수행되었다. 이를 위해 먼저, RGG상자 내의 6개의 아르기닌을 라이신으로 돌연변이를 만든 다음 pcDNA1-HA-hnRNP A1(6R/K)를 재조합하였다. 다음, 이 플라스미드 DNA를 HeLa 세포에 형질주입하여 HA-hnRNP A1(6R/K) 단백질의 세포내 위치에 미치는 영향을 면역형광현미경법으로 분석하였다. 그 결과 hnRNP A1(6R/K) 단백질은 (wt 단백질처럼 핵에 위치하지 못하고) 핵과 세포질 모두에 퍼져 있는 것을 확인하였다. hnRNP A1(6R/K)의 안정성을 조사하기 위해서는 pcDNA1-HA-hnRNP A1(6R/K)를 HeLa 세포에 형질 주입시킨 다음 발현된 단백질을 웨스턴 블랏 실험으로 분석하였는데, 그 결과 HA-hnRNP A1(6R/K)는 (잘려서) 크기가 작아진 것을 확인할 수 있었다. 이 결과들로부터 HA-hnRNP A1(6R/K)가 핵과 세포질 모두에 퍼져 있는 것은 6R/K 돌연변이가 hnRNP A1의 핵 위치 능력에 영향을 미쳤기 때문이 아니라 6R/K 돌연변이가 일어난 부위 또는 그 부근이 절단되어 hnRNP A1의 핵 위치 신호(nuclear localization singal)인 M9 도메인이 들어있는 C-말단 부위를 잃었기 때문이라는 점을 확인 할 수 있었다. 본 연구의 결과들은 hnRNP A1에 있는 RGG 상자의 아르기닌이 hnRNP A1의 안정성에 중요한 역할을 한다는 것을 제시한다. 세균에서 발현시켜서 정제된 hnRNP A1(6R/K)의 RNA-결합 능력에 대한 영향 분석은 추후 과제로 남겨둔다.

Effects of Overexpression of C5 Protein on rnpB Gene Expression in Escherichia coli

  • Kim, Yool;Lee, Young-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제30권4호
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    • pp.791-793
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    • 2009
  • Escherichia coli RNase P is composed of a large RNA subunit (M1 RNA) and a small protein subunit (C5 protein). Since both subunits are assembled in a 1:1 ratio, expression of M1 RNA and C5 protein should be coordinately regulated for RNase P to be efficiently synthesized in the cell. However, it is not known yet how the coordination occurs. In this study, we investigated how overexpression of C5 protein affects expression of the rnpB gene encoding M1 RNA, using a lysogenic strain, which carries an rnpB-lacZ transcription fusion. Primer extension analysis of rnpB-lacZ fusion transcripts showed that the overexpression of C5 protein increased the amount of the fusion transcripts, suggesting that rnpB expression increases with the increase of intracellular level of C5 protein.

Human Ribosomal Protein L18a Interacts with hnRNP E1

  • Han, Sun-Young;Choi, Mie-Young
    • Animal cells and systems
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    • 제12권3호
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    • pp.143-148
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    • 2008
  • Heterogeneous nuclear ribonucleoprotein E1(hnRNP E1) is one of the primary pre-mRNA binding proteins in human cells. It consists of 356 amino acid residues and harbors three hnRNP K homology(KH) domains that mediate RNA-binding. The hnRNP E1 protein was shown to play important roles in mRNA stabilization and translational control. In order to enhance our understanding of the cellular functions of hnRNP E1, we searched for interacting proteins through a yeast two-hybrid screening while using HeLa cDNA library as target. One of the cDNA clones was found to be human ribosomal protein L18a cDNA(GenBank accession number BC071920). We demonstrated in this study that human ribosomal protein L18a, a constituent of ribosomal protein large subunit, interacts specifically with hnRNP E1 in the yeast two-hybrid system. Such an interaction was observed for the first time in this study, and was also verified by biochemical assay.

Expression of a Small Protein Encoded by the 3' Flanking Sequence of the Escherichia coli rnpB Gene

  • Kim, Yool;Han, Kook;Lee, Jung-Min;Kim, Kwang-Sun;Lee, Young-Hoon
    • Bulletin of the Korean Chemical Society
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    • 제28권6호
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    • pp.1010-1014
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    • 2007
  • M1 RNA is the catalytic component of RNase P, a tRNA-processing enzyme in Escherichia coli. M1 RNA is produced in the cell by transcription of the rnpB gene and subsequent processing at the 3' end. The 3' flanking region of rnpB contains repeated sets of overlapping sequences coding for small proteins. The issue of whether these proteins are expressed remains to be established. In this study, we showed the expression of a small protein encoded by the first repeat within the 3' flanking region of rnpB. Interestingly, protein expression was increased at lower temperatures. The termination efficiency of rnpB terminators was decreased at lower temperatures, suggesting that antitermination is responsible for enhanced protein expression. Moreover, the purified small protein contained M1 RNA, implying a role as a specific RNA-binding protein.

RRM but not the Asp/Glu domain of hnRNP C1/C2 is required for splicing regulation of Ron exon 11 pre-mRNA

  • Moon, Heegyum;Jang, Ha Na;Liu, Yongchao;Choi, Namjeong;Oh, Jagyeong;Ha, Jiyeon;Kim, Hyeon Ho;Zheng, Xuexiu;Shen, Haihong
    • BMB Reports
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    • 제52권11호
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    • pp.641-646
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    • 2019
  • The Ron proto-oncogene is a human receptor for macrophage-stimulating protein (MSP). The exclusion of exon 11 in alternative splicing generates ${\Delta}RON$ protein that is constitutively activated. Heterogenous ribonucleaoprotein (hnRNP) $C_1/C_2$ is one of the most abundant proteins in cells. In this manuscript, we showed that both hnRNP $C_1$ and $C_2$ promoted exon 11 inclusion of Ron pre-mRNA and that hnRNP $C_1$ and hnRNP $C_2$ functioned independently but not cooperatively. Moreover, hnRNP $C_1$ stimulated exon 11 splicing through intron 10 activation but not through intron 11 splicing. Furthermore, we showed that, whereas the RRM domain was required for hnRNP $C_1$ function, the Asp/Glu domain was not. In conclusion, hnRNP $C_1/C_2$ promoted exon 11 splicing independently by stimulating intron 10 splicing through RRM but not through the Asp/Glu domain.

Effects of FIS Protein on rnpB Transcription in Escherichia coli

  • Choi, Hyun-Sook;Kim, Kwang-sun;Park, Jeong Won;Jung, Young Hwan;Lee, Younghoon
    • Molecules and Cells
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    • 제19권2호
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    • pp.239-245
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    • 2005
  • Factor for inversion stimulation (FIS), the Escherichia coli protein, is a positive regulator of the transcription of genes that encode stable RNA species, such as rRNA and tRNA. Transcription of the rnpB gene encoding M1 RNA, the catalytic subunit of E. coli RNase P, rapidly declines under stringent conditions, as does that of other stable RNAs. There are multiple putative FIS binding sites upstream of the rnpB promoter. We tested whether FIS binds to these sites, and if so, how it affects rnpB transcription. In vitro binding assays revealed specific binding of FIS to multiple sites in the rnpB promoter region. Interestingly, FIS bound not only to the upstream region of the promoter, but also to the region from +4 to +18. FIS activated rnpB transcription in vitro, but the level of activation was much lower than that of the rrnB promoter for rRNA. We also examined the effects of FIS on rnpB transcription in vivo using isogenic $fis^+$ and $fis^-$ strains. rnpB transcription was higher in the $fis^-$ than the $fis^+$ cells during the transitions from lag to exponential phase, and from exponential to stationary phase.

The Dharma of Nonsense-Mediated mRNA Decay in Mammalian Cells

  • Popp, Maximilian Wei-Lin;Maquat, Lynne E.
    • Molecules and Cells
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    • 제37권1호
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    • pp.1-8
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    • 2014
  • Mammalian-cell messenger RNAs (mRNAs) are generated in the nucleus from precursor RNAs (pre-mRNAs, which often contain one or more introns) that are complexed with an array of incompletely inventoried proteins. During their biogenesis, pre-mRNAs and their derivative mRNAs are subject to extensive cis-modifications. These modifications promote the binding of distinct polypeptides that mediate a diverse array of functions needed for mRNA metabolism, including nuclear export, inspection by the nonsense-mediated mRNA decay (NMD) quality-control machinery, and synthesis of the encoded protein product. Ribonucleoprotein complex (RNP) remodeling through the loss and gain of protein constituents before and after pre-mRNA splicing, during mRNA export, and within the cytoplasm facilitates NMD, ensuring integrity of the transcriptome. Here we review the mRNP rearrangements that culminate in detection and elimination of faulty transcripts by mammalian-cell NMD.