• 제목/요약/키워드: E3 SUMO ligase

검색결과 8건 처리시간 0.018초

벼의 small ubiquitin-like modifier E3 ligase, OsSIZ1 돌연변이체의 특성 분석 (Characterization of small ubiquitin-like modifier E3 ligase, OsSIZ1, mutant in rice)

  • 박형철;구성철;김훈;최원균;윤대진
    • Journal of Plant Biotechnology
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    • 제39권4호
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    • pp.235-241
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    • 2012
  • 식물체에서 sumoylation 기작은 성장 및 발달에 중요한 기능을 수행할 것이다. 특히, SUMO E3 ligase는 SUMO 단백질을 목적 단백질로 전달해주는 마지막 단계의 sumoylation 기작 구성요소이며, 다양한 신호전달에 특이성을 나타내는 것으로 보고되고 있다. 본 연구에서는 벼에서 SUMO E3 ligase, SIZ1 유전자에 T-DNA가 삽입된 Ossiz1-2 돌연변이 식물체를 분석하였다. 그리고, OsSIZ1 단백질이 OsSUMO1 단백질과 상호작용함으로써 OsSIZ1이 SUMO E3 ligase의 기능을 수행할 것으로 예측하였다. Ossiz1-2 돌연변이 식물체는 형태학적으로 발달과 성장의 다양한 부분에서 미성숙상태로 유지됨이 보였다. 특히, 야생형인 동진벼와 비교하여 초장의 성장 및 등숙율에서 상당히 낮은 정도를 보여 주었다. 이와 같이, 벼에서 SUMO E3 ligase로써 OsSIZ1 단백질의 생리학적인 기능은 성장과 발달 그리고, 수확량에 관여하는 단백질을 sumoylation 시키는 기작에서 역할을 수행할 것으로 사려된다.

Arabidopsis SIZ1 positively regulates alternative respiratory bypass pathways

  • Park, Bong-Soo;Kim, Sung-Il;Song, Jong-Tae;Seo, Hak-Soo
    • BMB Reports
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    • 제45권6호
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    • pp.342-347
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    • 2012
  • Plant mitochondria possess alternative respiratory pathways mediated by the type II NAD(P)H dehydrogenases and alternative oxidases. Here, E3 SUMO ligase was shown to regulate alternative respiratory pathways and to participate in the maintenance of carbon and nitrogen balance in Arabidopsis. The transcript abundance of the type II NAD(P)H dehydrogenases NDA2 and NDB2 and alternative oxidases AOX1a and AOX1d genes was low in siz1-2 mutants compared to that in wild-type. The addition of nitrate or ammonium resulted in a decrease or an increase in the expression of the same gene families, respectively, in both wild-type and siz1-2 mutants. The amount of free sugar (glucose, fructose and sucrose) was lower in siz1-2 mutants than that in wild-type. These results indicate that low nitrate reductase activity due to the AtSIZ1 mutation is correlated with an overall decrease in alternative respiration and with a low carbohydrate content to maintain the carbon to nitrogen ratio in siz1-2 mutants.

SUMO Proteins are not Involved in TGF-${\beta}1$-induced, Smad3/4-mediated Germline ${\alpha}$ Transcription, but PIASy Suppresses it in CH12F3-2A B Cells

  • Lee, Sang-Hoon;Kim, Pyeung-Hyeun;Oh, Sang-Muk;Park, Jung-Hwan;Yoo, Yung-Choon;Lee, Junglim;Park, Seok-Rae
    • IMMUNE NETWORK
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    • 제14권6호
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    • pp.321-327
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    • 2014
  • TGF-${\beta}$ induces IgA class switching by B cells. We previously reported that Smad3 and Smad4, pivotal TGF-${\beta}$ signal-transducing transcription factors, mediate germline (GL) ${\alpha}$ transcription induced by TGF-${\beta}1$, resulting in IgA switching by mouse B cells. Post-translational sumoylation of Smad3 and Smad4 regulates TGF-${\beta}$-induced transcriptional activation in certain cell types. In the present study, we investigated the effect of sumoylation on TGF-${\beta}1$-induced, Smad3/4-mediated $GL{\alpha}$ transcription and IgA switching by mouse B cell line, CH12F3-2A. Overexpression of small ubiquitin-like modifier (SUMO)-1, SUMO-2 or SUMO-3 did not affect TGF-${\beta}1$-induced, Smad3/4-mediated $GL{\alpha}$ promoter activity, expression of endogenous $GL{\alpha}$ transcripts, surface IgA expression, and IgA production. Next, we tested the effect of the E3 ligase PIASy on TGF-${\beta}1$-induced, Smad3/4-mediated $GL{\alpha}$ promoter activity. We found that PIASy overexpression suppresses the $GL{\alpha}$ promoter activity in cooperation with histone deacetylase 1. Taken together, these results suggest that SUMO itself does not affect regulation of $GL{\alpha}$ transcription and IgA switching induced by TGF-${\beta}1$/Smad3/4, while PIASy acts as a repressor.

Differential Display Analysis of 2,3,7,8-Tetrachlorodibenzo-p-dioxin Identified Induction of Ras-related Nuclear Protein Binding Protein2 (RanBP2) Gene

  • Kim, Dong-Hak;Lim, Young-Ran;Park, Hyoung-Goo;Kim, Beom-Joon;Chun, Young-Jin
    • Toxicological Research
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    • 제25권1호
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    • pp.35-40
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    • 2009
  • TCDD (2,3,7,8-tetrachlorodibenzo-p-dioxin) and related halogenated aromatic hydrocarbons elicit a diverse spectrum of biochemical and toxic responses in laboratory animals and mammalian cells in culture. Toxicity and carcinogenicity of TCDD is well established but the molecular mechanism is still poorly understood. Here, we found the noble responsive genes to TCDD using the differential display analysis. Treatment of HepG2 cells with TCDD showed a significantly different mRNA expression pattern from the untreated cells in differential display analysis. The differentially displayed bands were isolated and used as probes in dot blot and Northern blot analyses. Of thirty-five isolated differentially displayed bands, only two bands were confirmed as positive in dot blot and Northern blot analyses. The nucleotides sequences of these clones were analyzed and the search of Genebank database revealed that one clone is highly homologous with RanBP2 (Ras-related nuclear protein binding protein2; 92%) and the other is an unknown gene. RanBP2 is a nucleoporin with SUMO E3 ligase activity that functions in both nucleocytoplasmic transport and mitosis and its role as a novel tumor suppressor has been recently proposed. Thus, these results may suggest the clue elucidating the toxic mechanism of TCDD through RanBP2.

리포트 시스템을 이용한 살리실산 생합성 유전자 SID2의 발현 해석 (Characterization of SID2 that is required for the production of salicylic acid by using β-GLUCURONIDASE and LUCIFERASE reporter system in Arabidoposis)

  • 홍미주;정미선;이지영;김훈;정재철;신명철;자알알리;박보경;최원균;윤대진
    • Journal of Plant Biotechnology
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    • 제35권3호
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    • pp.169-176
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    • 2008
  • SA는 천연 페놀 화합물로써 식물체가 생성하는 호르몬 중의 하나이다. SA는 특히 병저항성, 생물학적, 비생물학적 스트레스로 인해 합성이 촉진되며 식물 방어 기작을 일으킨다고 알려져 있다. 식물의 방어 기작은 바로 식물에서 얻어지는 생산량에 영향을 미치기 때문에 SA에 대한 연구가 많이 되어져 왔다. 하지만 SA를 이해하기에는 아직까지 많은 연구가 필요 되어 지고 있다. 따라서 본 연구는 애기장대에서 SA 생합성하는데 중요한 효소인 SID2가 병저항성이 강한 siz1-2 돌연변이체와 야생형에서 어떠한 조절의 차이를 보이는 지를 SID2 promoter에 의해서 조절되는 GUS와 LUC를 가진 각각의 형질전환 식물체를 통하여 관찰하였다. GUS의 발현을 GUS histochemical assay, GUS enzyme assay 그리고 LUC의 발현을 CCD 카메라를 이용한 이미지 촬영과 Luciferase enzyme assay 수행한 결과, siz1-2를 사용한 형질전환 식물체에서 야생형에 비해 발현이 높게 일어났다. 이것을 바탕으로 SA에 반응하는 유전자들의 발현이 siz1-2 돌연변이체에서는 높은 이유가 SID2의 발현이 높게 조절 받기 때문이라는 것을 SID2 promoter:GUS::LUC/siz1-2 형질전환 식물체를 통해 알 수 있었다.