• 제목/요약/키워드: Stress granules(SG)

검색결과 6건 처리시간 0.03초

Identification of Neuregulin-2 as a novel stress granule component

  • Kim, Jin Ah;Jayabalan, Aravinth Kumar;Kothandan, Vinoth Kumar;Mariappan, Ramesh;Kee, Younghoon;Ohn, Takbum
    • BMB Reports
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    • 제49권8호
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    • pp.449-454
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    • 2016
  • Stress Granules (SGs) are microscopically visible, phase dense aggregates of translationally stalled messenger ribonucleoprotein (mRNP) complexes formed in response to distinct stress conditions. It is generally considered that SG formation is induced to protect cells from conditions of stress. The precise constituents of SGs and the mechanism through which SGs are dynamically regulated in response to stress are not completely understood. Hence, it is important to identify proteins which regulate SG assembly and disassembly. In the present study, we report Neuregulin-2 (NRG2) as a novel component of SGs; furthermore, depletion of NRG2 potently inhibits SG formation. We also demonstrate that NRG2 specifically localizes to SGs under various stress conditions. Knockdown of NRG2 has no effect on stress-induced polysome disassembly, suggesting that the component does not influence early step of SG formation. It was also observed that reduced expression of NRG2 led to marginal increase in cell survival under arsenite-induced stress.

Stress Granules Inhibit Coxsackievirus B3-Mediated Cell Death via Reduction of Mitochondrial Reactive Oxygen Species and Viral Extracellular Release

  • Ji-Ye Park;Ok Sarah Shin
    • Journal of Microbiology and Biotechnology
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    • 제33권5호
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    • pp.582-590
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    • 2023
  • Stress granules (SGs) are cytoplasmic aggregates of RNA-protein complexes that form in response to various cellular stresses and are known to restrict viral access to host translational machinery. However, the underlying molecular mechanisms of SGs during viral infections require further exploration. In this study, we evaluated the effect of SG formation on cellular responses to coxsackievirus B3 (CVB3) infection. Sodium arsenite (AS)-mediated SG formation suppressed cell death induced by tumor necrosis factor-alpha (TNF-a)/cycloheximide (CHX) treatment in HeLa cells, during which G3BP1, an essential SG component, contributed to the modulation of apoptosis pathways. SG formation in response to AS treatment blocked CVB3-mediated cell death, possibly via the reduction of mitochondrial reactive oxygen species. Furthermore, we examined whether AS treatment would affect small extracellular vesicle (sEV) formation and secretion during CVB3 infection and modulate human monocytic cell (THP-1) response. CVB3-enriched sEVs isolated from HeLa cells were able to infect and replicate THP-1 cells without causing cytotoxicity. Interestingly, sEVs from AS-treated HeLa cells inhibited CVB3 replication in THP-1 cells. These findings suggest that SG formation during CVB3 infection modulates cellular response by inhibiting the release of CVB3-enriched sEVs.

PB-Overexpression of OsZn15, a CCCH-tandem zinc finger protein, increases drought tolerance in rice

  • Seong, So Yoon;Jung, Harin;Choi, Yang Do;Kim, Ju-Kon
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.115-115
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    • 2017
  • Zinc finger proteins constitute a large family which has been studied to have various functions in different organisms. Tandem CCCH zinc finger proteins (TZFs), members of the zinc finger protein family, are known to participate as post-transcriptional regulators of gene expression in eukaryotes. Here, we showed that the OsZn15, a gene for tandem CCCH zinc finger protein, is induced by abiotic stress and its overexpression in transgenic rice plants (PGD1:OsZn15) gains higher drought tolerance. Gene expression analysis of promoter:GFP plants revealed that OsZn15 is specifically expressed in anther and embryo, but not in vegetative organs. In-field evaluation, grain yield was higher in the PGD1:OsZn15 than nontransgenic plants under drought conditions. Interestingly, OsZn15 is shown to not only localize at nucleus but also co-localize with both processing bodies (PB) and stress granules (SG), two messenger ribo-nucleoprotein complexes which are known to activate by forming cytoplasmic foci under stress conditions. In sum, these results suggest that OsZn15 increases drought stress tolerance of rice probably by participating in RNA turnover in PB and SG.

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Mammalian RNA Granules

  • Jayabalan, Aravinth Kumar;Ohn, Takbum
    • 대한의생명과학회지
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    • 제20권1호
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    • pp.1-7
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    • 2014
  • RNA granules such as Stress Granules (SG) and P-Bodies (PB) are aggregates of translationally stalled messenger ribonucleoprotein (mRNP) complexes induced by a wide range of stresses. Over the past decade, extensive studies described key components of RNA granules, their molecular interactions and signaling pathways require for their assembly and disassembly. However, researches defining their exact roles under stress conditions have not been performed so far, although several studies suggested their roles in neurodegenerative diseases recently. In this review, we provide an introduction about their basic properties, key components, and the dynamic nature for their assembly.

Depletion of PDCD4 Accelerates Stress Granule Assembly Through Sensitization of Stress Response Pathways

  • Kim, Jeeho;Chang, In Youb;Lee, Wooje;Ohn, Takbum
    • 통합자연과학논문집
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    • 제12권4호
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    • pp.127-132
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    • 2019
  • Programmed cell death 4 (PDCD4) is a novel tumor suppressor that function in the nucleus and the cytoplasm and appears to be involved in the regulation of transcription and translation. Stress granules (SGs) are cytoplasmic foci at which untranslated mRNAs accumulate when cells exposed to environmental stresses. Since PDCD4 has implicated in translation repression through direct interaction with eukaryotic translation initiation factor 4A (eIF4A), we here investigated if PDCD4 has a functional role in the process of SG assembly under oxidative stresses. Using immunofluorescence microscopy, we found that PDCD4 is localized to SGs under oxidative stresses. Next, we tested if knockdown of PDCD4 has an effect on the assembly of SG using PDCD4-specific siRNA. Interestingly, SG assembly was accelerated and this effect was caused by sensitization of phosphorylation of eIF2α and dephosphorylation of eIF4E binding protein (4E-BP). These results suggest that PDCD4 has an effect on SG dynamics and possibly involved in cap-dependent translation repression under stress conditions.

루게릭병 및 전측두엽성 치매 연관 단백질 Fused in Sarcoma (FUS)의 스트레스 응집체 형성에 관여하는 도메인 분석 (Analysis of domain required for aggregates formation of ALS (Amyotrophic lateral sclerosis)/FTD (Frontotemporal dementia)-linked FUS in mammalian cells)

  • 전미희;이진아
    • 분석과학
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    • 제28권5호
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    • pp.331-340
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    • 2015
  • DNA/RNA결합 단백질로 다양한 기능을 한다고 알려진Fused in Sarcoma (FUS)의 유전자 돌연변이가 루게릭병 및 전측두엽성 치매 환자에서 발견되었다. 정상적인 FUS는 핵에 위치하지만 병리상황에서 FUS는 세포질로 잘못 타기팅 되어 스트레스 응집체와 결합된 단백질 응집체를 형성하는 것으로 알려졌다. 그러나 이들에 의한 스트레스 응집체 형성 기전 및 응집체 형성에 관여하는 FUS의 도메인은 정확히 알려지지 않았다. 따라서, 본 연구에서는 루게릭병 연관 FUS 미스센스 돌연변이(P525L, R521C, R521H, R521G)의 세포내 위치 및 세포질 FUS의 응집체 형성에 관여하는 FUS내 도메인을 분석하고 동정하고자 하였다. 이를 위해 먼저, FUS 미스센스 돌연변이의 세포내 위치를 분석한 결과, P525L대부분은 세포질로 위치하여 스트레스 응집체를 형성하는 반면, R521C, R521H, R521G는 핵과 세포질에 위치하였다. 이를 통해 FUS의 핵으로의 이동에는 FUS의 마지막 2개의 아미노산이 매우 중요함을 확인할 수 있었다. 세포질로 빠져 나온 FUS의 응집체 형성에 관여하는 FUS도메인 분석을 위해서 핵 위치서열이 결손되어 대부분 세포질 응집체를 형성하는 FUS-∆17를 이용하여, 다양한 도메인 결손 돌연변이를 제작하고, 이들의 응집체 형성여부를 분석하였다. 그 결과, SYGQ-RGG1나 RGG2-ZnF-RGG3없는 세포질 FUS (FUS-∆SYGQ-RGG1-∆17, FUS-∆RGG2-ZnF-RGG3-∆17)는 스트레스 응집체를 형성하지 않은 반면, RRM이 없는 FUS-∆RRM-∆17은 FUS-∆17에 비해 많은 스트레스 응집체를 형성함을 알 수 있었다. 따라서, 도메인 분석결과 세포질의 FUS는 SYGQ-RGG1나 RGG2-ZnF-RGG3 도메인을 통해 FUS 스트레스 응집체 형성이 촉진되고, RRM도메인은 FUS 응집체 형성을 저해하고 있는 것으로 생각된다. 이러한 연구 결과는 FUS의 스트레스 응집체 형성과 연관된 다양한 퇴행성 뇌질환의 발병기전에 대한 이해뿐만이 아니라 이들 질환 치료를 위한 치료 후보 타겟 물질 발굴에 중요한 단서를 제공할 수 있을 것이다.