• 제목/요약/키워드: Mitochondrial fusion

검색결과 47건 처리시간 0.021초

신문혈 자침이 어린 백서 해마의 단백질 발현에 미치는 영향 (Proteomic Changes by Acupuncture Stimulation at HT7 in the Hippocampus of Rat Pups)

  • 배창환;김동수;김승태
    • Korean Journal of Acupuncture
    • /
    • 제29권2호
    • /
    • pp.260-270
    • /
    • 2012
  • Objectives : Hippocampus, a region of temporal lobe, plays an important role in the pathogenic mechanisms of brain diseases such as Alzheimer's disease, depression and temporal lobe epilepsy. This research is designed to investigate hippocampal changes after acupuncture stimulation at Shinmun(HT7) using 2-dimensional gel electrophoresis(2-DE). Methods : On postnatal-day 15, rat pups were randomly devided into Normal(NOR) or HT7 group. All of Pups kept with their mothers for 7 days, but pups in HT7 group received acupuncture stimulation at HT7 daily. On postnatal-day 21, hippocampus of each rat pup was dissceted 30 minutes after last acupuncture stimulation and the protein expressions were investigated using 2-DE. Results : After acupuncture stimulation at HT7, expression of 20 proteins were significantly increased. Succinate semialdehyde dehydrogenase, glyceraldehyde-3-phosphate dehydrogenase-like, transketolase, aconitate hydratase and phosphoglucomutase-1 were related to glucose methabolism. Eukaryotic initiation factor(eIF) 4A-II, eIF 4A-III, mitochondrial Tu translation elongation factor and chain A of crystal structure of the 70-Kda heat shock cognate protein involve in the protein synthesis in ribosome. Tubulin ${\beta}$-4 chain, tubulin T ${\beta}$-15 and tubulin ${\alpha}$-1B chain comprise cytoskeleton. Glutathione S-transferase(GST) ${\omega}$-1, GST P and GST Yb-3 can reduce oxidative stress. ${\beta}$-soluble N-ethylmaleimide-sensitive fusion protein attachment protein is required for vesicular transport between the endoplasmic reticulum and the Golgi apparatus, glycerol-3-phosphate dehydrogenase plays a major role in lipid biosynthesis, creatine kinase U-type catalyses the conversion of creatine and consumes adenosine triphosphate to create phosphocreatine and adenosine diphosphate. Platelet-activating factor acetylhydrolase IB subunit alpha and voltage depedent anion-selective channel protein 2 were also increased. Conclusions : The results suggest that acupuncture stimulation at HT7 may enhance glucose and lipid metabolism, protein synthesis, cytoskeletal substance and anti-oxidative stress in hippocampus.

Mitofusin-2 Promotes the Epithelial-Mesenchymal Transition-Induced Cervical Cancer Progression

  • Sung Yong Ahn;Jiwon Song;Yu Cheon Kim;Myoung Hee Kim;Young-Min Hyun
    • IMMUNE NETWORK
    • /
    • 제21권4호
    • /
    • pp.30.1-30.12
    • /
    • 2021
  • High expression of mitofusin-2 (MFN2), a mitochondrial fusion protein, has been frequently associated with poor prognosis of patients with cervical cancer. Here, we aimed to identify the function of MFN2 in cervical cancer to understand its influence on disease prognosis. To this end, from cervical adenocarcinoma, we performed an MTT assay and quantitative RT-PCR (qRT-PCR) analysis to assess the effects of MFN2 on the proliferation and of HeLa cells. Then, colony-formation ability and tumorigenesis were evaluated using a tumor xenograft mouse model. The migration ability related to MFN2 was also measured using a wound healing assay. Consequently, epithelial-mesenchymal transition (EMT) of MFN2-knockdowned HeLa cells originating from adenocarcinoma. markers related to MFN2 were assessed by qRT-PCR. Clinical data were analyzed using cBioPortal and The Cancer Genome Atlas. We found that MFN2 knockdown reduced the proliferation, colony formation ability, migration, and in vivo tumorigenesis of HeLa cells. Primarily, migration of MFN2-knockdowned HeLa cells decreased through the suppression of EMT. Thus, we concluded that MFN2 facilitates cancer progression and in vivo tumorigenesis in HeLa cells. These findings suggest that MFN2 could be a novel target to regulate the EMT program and tumorigenic potential in HeLa cells and might serve as a therapeutic target for cervical cancer. Taken together, this study is expected to contribute to the treatment of patients with cervical cancer.

수염녹두말속(Chlamydomonas) 단세포 녹조의 유성생식 (Sexual Reproduction in Unicellular Green Alga Chlamydomonas)

  • 이규배
    • 생명과학회지
    • /
    • 제27권1호
    • /
    • pp.100-121
    • /
    • 2017
  • 이 논문은 다세포 녹색식물의 조상으로 생각되는 단세포인 수염녹두말속(Chlamydomonas) 녹조의 복잡한 유성생식 과정을 종합적으로 이해하기 위해서 기술되었다. 모델생물로 알려진 클래미도모나스 레인하르티(Chlamydomonas reinhardtii)의 유성생식 생활사는 배우자발생, 배우자 활성화, 세포융합, 접합자 성숙, 감수분열과 발아 등의 다섯 시기로 구별된다. 배우자발생은 서식지에서 질소가 결핍되어 시작된다. 그 결과, 교배형 유전자자리($MT^+$ 또는 $MT^-$)에 의해 조절된 두 가지 교배형($mt^+$$mt^-$)의 배우자들이 발생된다. 유성생식을 위한 두 번째 자극원인 청색광이 교배능력을 갖고 있지 않는 예비배우자 세포에 조사되면 교배능력을 가진 배우자로 분화된다. 배우자발생의 초기에, 두 배우자 세포들은 응집소(agglutin) 분자들을 합성한다. 즉, $mt^+$ 응집소 및 $mt^-$ 응집소는 상염색체에 있는 성응집(SAG1) 및 성접착(SAD1) 유전자들이 발현되어 각각 합성된다. 응집소들에 의해서 두 배우자 세포들의 편모가 접착되면 cAMP가 신호전달 경로를 작동시켜서 편모의 끝 부부을 활성화시킨다. cAMP의 신호에 반응하여 두 배우자들의 세포벽이 벗겨지고 2개의 편모 사이에서 각각의 교배구조(mating structure)가 발달한다. 교배구조의 원형질막에는 $mt^+$$mt^-$ 배우자-특이 융합 단백질인 Fus1 및 Hap2/Gcs1이 있다. 이 단백질들의 상호작용으로 두 교배구조가 접촉되면, 두 배우자 사이에 세포질이 연결되어 수정세관(fertilization tubule)이 발달한다. $mt^+$$mt^-$ 배우자들의 핵과 엽록체가 융합되면 2배체의 접합자가 형성된다. 그 후 배우자들의 특성은 사라지며 융합단백질들(Fus1 및 Hap2)이 분해되고 접합자-특이(zygote-specific) 유전자들이 활성화 된다. 접합자는 24시간에 걸쳐 두꺼운 세포벽을 가진 접합포자(zygospore)로 발달한다. 어린 접합자에서 교배 후 60분 이내에 $mt^-$ 엽록체 DNA와 $mt^+$ 미토콘드리아 DNA가 선택적으로 제거된다. 따라서 이 두 소기관들은 각각 $mt^-$ 미토콘드리아 DNA와 $mt^+$ 엽록체 DNA만 남아서 단친유전(uniparental inheritance)이 이루어진다. 적당한 조건이 되면 접합포자가 감수분열과 발아 과정을 거쳐 반수체 영양세포가 방출되어 새로운 세대가 다시 시작된다.

과량의 방사선 국소조사가 흰쥐 소뇌 Purkinje세포의 미세구조에 미치는 영향 (Ultrastructural Study on the Cerebellar Purkinje Cell of the Head-Irradiated Rat)

  • 안의태;윤규태;양남길;고정식;박경호;김진국
    • Applied Microscopy
    • /
    • 제24권2호
    • /
    • pp.48-62
    • /
    • 1994
  • The acute irradiation effect on rat Purkinje cell was carried out. Anesthetized rats, weighing 200-250g each, were exposed their heads to the linear accelerator (ML-4MV) with the doses of 3,000 rads or 6,000 rads respectively. Irradiated rats were sacrificed by perfusion fixation under anesthesia, six hours, two days and six days following the irradiations. Rats were perfused with the fixative of 1% glutaraldehyde-1% paraformaldehyde solution (pH 7.4). Small pieces of cerebellar cortices were taken out. Tissue blocks were washed out, and were refixed in the 2% osmium tetroxide solution. After dehydration, tissues were embedded in the araldite mixture. Ultrathin sections stained with uranyl acetate-lead citrate solution, were examined with an electron microscope. The results observed were as follow; 1. Many dark Purkinje cells exhibited most severe cellular alterations on 6 hours. But after the 2 or 6 days, the cells exhibited only some alterations of cytoplasmic organelles. 2. Many granular and agranular endoplasmic reticula exhibited the fusion of cisterns. These reticular alterations were most severe on 6 hours following irradiation. But the alterations were hardly found on 6 days. 3. In the Golgi region, alterations including the adhesion of lamelliform cisterns, enlarged saccules, and increased number of vesicles, etc, were seen on 6 hours. But the Golgi complexes were almost recovered on 6 days. 4. Lysosomes were abundant on 6 hours or 2 days, but some residual bodies were found on 6 days. 5. Mitochondrial changes were also most severe at on hours, and they were recovered thereafter. From the results, it was concluded that the cerebellar Purkinje cells reacted to the high doses of irradiation by hyperactive protein synthesis, autolytic activities and energy metabolism. The reaction was most active in the early stage. It implies that motor-control function of Purkinje cells are severely disturbed in the early stage of irradiation.

  • PDF

대장균에서의 human SOD1과 mutant SOD1 (G93A) 단백질의 발현과 HtrA2의 기질 여부 확인에 관한 연구 (Expression of Human SOD1 and Mutant SOD1 (G93A) in E. coli and Identification of SOD1 as a Substrate of HtrA2 Serine Protease)

  • 김구영;김상수;박효진;임향숙
    • 생명과학회지
    • /
    • 제16권5호
    • /
    • pp.716-722
    • /
    • 2006
  • Superoxide dismutase (SOD) is physiologically important in regulating cellular homeostasis and apoptotic cell death, and its mutations are the cause of familial amyotrophic lateral sclerosis (FALS). Mitochondrial serine protease HtrA2 has a pro-apoptotic function and has known to be associated with neurodegenerative disorders. To investigate the relationship between genes associated with apoptotic cell death, such as HtrA2 and SOD1, we utilized the pGEX expression system to develop a simple and rapid method for purifying wild-type and ALS-associated mutant SOD1 proteins in a suitable form for biochemical studies. We purified SOD1 and SOD1 (G93A) proteins to approximately 90% purity with relatively high yields (3 mg per liter of culture). Consistent with the result in mammalian cells, SOD1 (G93A) was more insoluble than wild-type SOD1 in E. coli, indicating that research on the aggregate formation of SOD1 may be possible using this pGEX expression system in E. coli. We investigated the HtrA2 serine protease activity on SOD1 to assess the relationship between two proteins. Not only wild-type SOD1 but also ALS-associated mutant SOD1 (G93A) were cleaved by HtrA2, resulting in the production of the 19 kDa and 21 kDa fragments that were specific for anti-SOD1 antibody. Using protein gel electrophoresis and immunoblot assay, we compared the relative molecular masses of thrombin-cleaved GST-SOD1 and HtrA2-cleaved SOD1 fragments and can predict that the HtrA2-cleavage sites within SOD1 are the peptide bonds between leucine 9-lysine 10 (L9-K10) and glutamine 23-lysine 24 (Q23-K24). Our study indicates that SOD1 is one of the substrate for HtrA2, suggesting that both HtrA2 and SOD1 may be important for modulating the HtrA2-SOD1-mediated apopotic cell death that is associated with the pathogenesis of neurodegenerative disorder.

20(S)-ginsenoside Rh2 induces caspase-dependent promyelocytic leukemia-retinoic acid receptor A degradation in NB4 cells via Akt/Bax/caspase9 and TNF-α/caspase8 signaling cascades

  • Zhu, Sirui;Liu, Xiaoli;Xue, Mei;Li, Yu;Cai, Danhong;Wang, Shijun;Zhang, Liang
    • Journal of Ginseng Research
    • /
    • 제45권2호
    • /
    • pp.295-304
    • /
    • 2021
  • Background: Acute promyelocytic leukemia (APL) is a hematopoietic malignancy driven by promyelocytic leukemia-retinoic acid receptor A (PML-RARA) fusion gene. The therapeutic drugs currently used to treat APL have adverse effects. 20(S)-ginsenoside Rh2 (GRh2) is an anticancer medicine with high effectiveness and low toxicity. However, the underlying anticancer mechanisms of GRh2-induced PML-RARA degradation and apoptosis in human APL cell line (NB4 cells) remain unclear. Methods: Apoptosis-related indicators and PML-RARA expression were determined to investigate the effect of GRh2 on NB4 cells. Z-VAD-FMK, LY294002, and C 87, as inhibitors of caspase, and the phosphatidylinositol 3-kinase (PI3K) and tumor necrosis factor-α (TNF-α) pathways were used to clarify the relationship between GRh2-induced apoptosis and PML-RARA degradation. Results: GRh2 dose- and time-dependently decreased NB4 cell viability. GRh2-induced apoptosis, cell cycle arrest, and caspase3, caspase8, and caspase9 activation in NB4 cells after a 12-hour treatment. GRh2-induced apoptosis in NB4 cells was accompanied by massive production of reactive oxygen species, mitochondrial damage and upregulated Bax/Bcl-2 expression. GRh2 also induced PML/PML-RARA degradation, PML nuclear bodies formation, and activation of the downstream p53 pathway in NB4 cells. Z-VAD-FMK inhibited caspase activation and significantly reversed GRh2-induced apoptosis and PML-RARA degradation. GRh2 also upregulated TNF-α expression and inhibited Akt phosphorylation. LY294002, an inhibitor of the PI3K pathway, enhanced the antitumor effects of GRh2, and C 87, an inhibitor of the TNF-α pathway, reversed NB4 cell viability, and GRh2-mediated apoptosis in a caspase-8-dependent manner. Conclusion: GRh2 induced caspase-dependent PML-RARA degradation and apoptosis in NB4 cells via the Akt/Bax/caspase9 and TNF-α/caspase8 pathways.

새로운 유전자 재조합 방법을 이용한 대장균에서의 인간 tissue inhibitor of mtrix metalloproteinase-2 (TIMP-2) 유전자의 가용성 발현 (Enhancement of the solubility of human tissue inhibitor of matrix metallocroteinase-2 (TIMP-2) in E. coli using a modified in vitro mutagenesis)

  • 김종욱;최동순;주현;민철기
    • KSBB Journal
    • /
    • 제23권3호
    • /
    • pp.231-238
    • /
    • 2008
  • 암세포의 침윤은 숙주 조직의의 기저막과 세포외 기질을 침투함으로써 일어난다. 침윤과 전이과정에는 단백질가수분해 효소인 matrix metalloproteinases (MMPs)가 깊이 연관되어 있는 것으로 알려져 있으며, MMP의 가수분해 활성은 tissue inhibitors of metalloproteinases (TIMPs)라는 억제 단백질에 의해 억제된다. TIMP-2는 21kDa 크기의 포유류 단백질로 대장균에서 과발현 시 다른 많은 포유류 단백질과 마찬가지로 가용성이 낮은 봉입체 형태로 발현된다. TIMP-2 단백질의 접힘에 6개의 이황화결합이 필요하고, 이는 일반적으로 대장균 환경은 적합하지 않다. 본 연구에서는 대장균에서 불가용성으로 발현되는 TIMP-2 유전자를 유전자셔플링 기법의 한 가지인 StEP (staggered extension process)를 변형하고 동시에 $Mn^{2+}$ 농도 변화와 dGTP 불균형을 이용한 무작위 돌연변이 기법을 혼용하여 대장균에서 가용성 TMP-2 재조합 변이체를 생성하고자 하였다. 무작위로 재조합된 TIMP-2 유전자 중에서 가용성으로 발현되는 TIMP-2 유전자를 선별하기 위해서 chloramphenicol acetyltransferase (CAT)-융합 방법을 도입하였다. CAT 유전자가 가용성으로 발현되는 재조합 TIMP-2 유전자에 융합되면 이를 갖는 E. coli는 높은 chloramphenicol 환경에서 생존이 가능하게 된다. 이러한 in virro mutageuesis 기법과 CAT-융합 방법으로 대장균 가용성 TIMP-2 재조합 변이체를 14가지 얻을 수 있었다. 변이체 TIMP-2의 아미노산서열 분석과 구조 분석 결과 주로 소수성 아미노산이 친수성 아미노산으로 전환되었고, MMP와의 결합이 관여하지 않는 C-말단 부위에 돌연변이가 집중되어 있었다. 본 연구에서 개발된 간편하고 새로운 in vitro 재조합 방법과 CAT을 이용한 스크리닝 기법은 다른 많은 대장균 내 불가용성 단백질의 발현에도 사용될 수 있을 것으로 사료된다.