• 제목/요약/키워드: Targeting protein

검색결과 470건 처리시간 0.03초

Folate Receptor-Specific Positron Emission Tomography Imaging with Folic Acid-Conjugated Tissue Inhibitor of Metalloproteinase-2

  • Kim, Sung-Min;Choi, Naeun;Hwang, Seungkyun;Yim, Min Su;Lee, Jung-Sik;Lee, Sang-Mok;Cho, Gyunggoo;Ryu, Eun Kyoung
    • Bulletin of the Korean Chemical Society
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    • 제34권11호
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    • pp.3243-3248
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    • 2013
  • The tissue inhibitor of metalloproteinase-2 (TIMP-2) inhibits matrix metalloproteinases activity and modulates cellular proliferation and apoptosis. The human serum albumin-TIMP-2 with folic acid conjugate (termed HT2-folate) was synthesized to promote uptake through folate receptors (FRs), and a corresponding radio-labeled compound was prepared for tumor diagnosis by positron emission tomography (PET). $^{68}Ga$-NOTA-HT2-folate was synthesized from $^{68}Ga$ and the NOTA chelator with HT2-folate. The fusion protein was identified using MALDI-TOF mass spectrometry. The radioligand was prepared with a high radiochemical yield. Cell-surface association of $^{68}Ga$-NOTA-HT2-folate significantly increased over time in FR-positive tumor cells. In animal PET and biodistribution studies, tumor uptake was very high as early as 1 h after radioligand injection. Folate conjugation enhanced the selective receptor-targeting efficacy of HT2 in FRexpressing tumors, and its radioligand will be useful as an in vitro tool and for in vivo tumor diagnosis by PET imaging.

Functions of TET Proteins in Hematopoietic Transformation

  • Han, Jae-A;An, Jungeun;Ko, Myunggon
    • Molecules and Cells
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    • 제38권11호
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    • pp.925-935
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    • 2015
  • DNA methylation is a well-characterized epigenetic modification that plays central roles in mammalian development, genomic imprinting, X-chromosome inactivation and silencing of retrotransposon elements. Aberrant DNA methylation pattern is a characteristic feature of cancers and associated with abnormal expression of oncogenes, tumor suppressor genes or repair genes. Ten-eleven-translocation (TET) proteins are recently characterized dioxygenases that catalyze progressive oxidation of 5-methylcytosine to produce 5-hydroxymethylcytosine and further oxidized derivatives. These oxidized methylcytosines not only potentiate DNA demethylation but also behave as independent epigenetic modifications per se. The expression or activity of TET proteins and DNA hydroxymethylation are highly dysregulated in a wide range of cancers including hematologic and non-hematologic malignancies, and accumulating evidence points TET proteins as a novel tumor suppressor in cancers. Here we review DNA demethylation-dependent and -independent functions of TET proteins. We also describe diverse TET loss-of-function mutations that are recurrently found in myeloid and lymphoid malignancies and their potential roles in hematopoietic transformation. We discuss consequences of the deficiency of individual Tet genes and potential compensation between different Tet members in mice. Possible mechanisms underlying facilitated oncogenic transformation of TET-deficient hematopoietic cells are also described. Lastly, we address non-mutational mechanisms that lead to suppression or inactivation of TET proteins in cancers. Strategies to restore normal 5mC oxidation status in cancers by targeting TET proteins may provide new avenues to expedite the development of promising anti-cancer agents.

Bacillus lentimorbus WJ5의 분비 전용 Srb Homologue 발현과 항진균 활성 (Expression of Secretion-dedicated Srb Homologue and Antifungal Activity of Bacillus lentimorbus WJ5)

  • 장유신;이영근;김재성;조규성;장병일
    • 미생물학회지
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    • 제39권3호
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    • pp.135-140
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    • 2003
  • Bacillus sp.는 다량의 효소와 기능성 펩타이드들을 세포외로 분비하는 것으로 알려져 있다. Signal recognition particle (SRP)과 SRP receptor는 세포외 분비 단백질의 이동에 있어서 중심적 역할을 담당한다. B. lentimorbus WJ5의 DNA microarray 결과, 감마선 조사로 유도된 항진균 활성 결핍 돌연변이체인 WJ5m12에서 B. subtilis srb homologue (srbL)의 발현이 감소되는 것을 관찰할 수 있었다. SRP receptor와 항진균 활성 사이의 연관성을 고찰하기 위하여 B. lentimorbus WJ5의 srbL을 PCR로 증폭하여 pQE30 vector에 클로닝 하였으며, B. lentimorbus WJ5m12에 형질전환 시켰다. 형질전환된 B. lentimorbus WJ5m12::srbL은 항진균 활성이 복원되었다. 이차원 전기영동 결과, 수 종의 세포외 분비 단백질의 전구체들이 항진균 활성 결핍 돌연변이 균주에서 축적되었고 B.lentimorbus WJ5m12::srbL에서는 야생형 균주의 단백질 수준까지 감소되는 현상을 관찰할 수 있었다. 이는 B.lentimorbus WJ5의 항진균 활성 관련 물질의 이동에 있어서 srbL이 중요한 역할을 한다는 것을 암시한다.

Anaerobic Ammonium-Oxidizing Bacteria in Cow Manure Composting

  • Wang, Tingting;Cheng, Lijun;Zhang, Wenhao;Xu, Xiuhong;Meng, Qingxin;Sun, Xuewei;Liu, Huajing;Li, Hongtao;Sun, Yu
    • Journal of Microbiology and Biotechnology
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    • 제27권7호
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    • pp.1288-1299
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    • 2017
  • Composting is widely used to transform waste into valuable agricultural organic fertilizer. Anaerobic ammonium-oxidizing (anammox) bacteria play an important role in the global nitrogen cycle, but their role in composting remains poorly understood. In the present study, the community structure, diversity, and abundance of anammox bacteria were analyzed using cloning and sequencing methods by targeting the 16S rRNA gene and the hydrazine oxidase gene (hzo) in samples isolated from compost produced from cow manure and rice straw. A total of 25 operational taxonomic units were classified based on 16S rRNA gene clone libraries, and 14 operational taxonomic units were classified based on hzo gene clone libraries. The phylogenetic tree analysis of the 16S rRNA gene and deduced HZO protein sequences from the corresponding encoding genes indicated that the majority of the obtained clones were related to the known anammox bacteria Candidatus "Brocadia," Candidatus "Kuenenia," and Candidatus "Scalindua." The abundances of anammox bacteria were determined by quantitative PCR, and between $2.13{\times}10^5$ and $1.15{\times}10^6$ 16S rRNA gene copies per gram of compost were found. This study provides the first demonstration of the existence of anammox bacteria with limited diversity in cow manure composting.

Regulation of AKT Activity by Inhibition of the Pleckstrin Homology Domain-PtdIns(3,4,5)P3 Interaction Using Flavonoids

  • Kang, Yerin;Jang, Geupil;Ahn, Seunghyun;Lee, Youngshim;Shin, Soon Young;Yoon, Youngdae
    • Journal of Microbiology and Biotechnology
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    • 제28권8호
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    • pp.1401-1411
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    • 2018
  • The serine-threonine kinase AKT plays a pivotal role in tumor progression and is frequently overactivated in cancer cells; this protein is therefore a critical therapeutic target for cancer intervention. We aimed to identify small molecule inhibitors of the pleckstrin homology (PH) domain of AKT to disrupt binding of phosphatidylinositol-3,4,5-trisphosphate (PIP3), thereby downregulating AKT activity. Liposome pulldown assays coupled with fluorescence spectrometry were used to screen flavonoids for inhibition of the AKT PH-PIP3 interaction. Western blotting was used to determine the effects of the inhibitors on AKT activation in cancer cells, and in silico docking was used for structural analysis and optimization of inhibitor structure. Several flavonoids showing up to 50% inhibition of the AKT PH-PIP3 interaction decreased the level of AKT activation at the cellular level. In addition, the modified flavonoid showed increased inhibitory effects and the approach would be applied to develop anticancer drug candidates. In this study, we provide a rationale for targeting the lipid-binding domain of AKT, rather than the catalytic kinase domain, in anticancer drug development.

Inhibition of p90RSK activation sensitizes triple-negative breast cancer cells to cisplatin by inhibiting proliferation, migration and EMT

  • Jin, Yujin;Huynh, Diem Thi Ngoc;Kang, Keon Wook;Myung, Chang-Seon;Heo, Kyung-Sun
    • BMB Reports
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    • 제52권12호
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    • pp.706-711
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    • 2019
  • Cisplatin (Cis-DDP) is one of the most widely used anti-cancer drugs. It is applicable to many types of cancer, including lung, bladder, and breast cancer. However, its use is now limited because of drug resistance. p90 ribosomal S6 kinase (p90RSK) is one of the downstream effectors in the extracellular signal-regulated protein kinases 1 and 2 (ERK1/2) pathway and high expression of p90RSK is observed in human breast cancer tissues. Therefore, we investigated the role of p90RSK in the Cis-DDP resistance-related signaling pathway and epithelial-mesenchymal transition (EMT) in breast cancer cells. First, we discovered that MDA-MB-231 cells exhibited more Cis-DDP resistance than other breast cancer cells, including MCF-7 and BT549 cells. Cis-DDP increased p90RSK activation, whereas the inactivation of p90RSK using a small interfering RNA (siRNA) or dominant-negative kinase mutant plasmid overexpression significantly reduced Cis-DDP-induced cell proliferation and migration via the inhibition of matrix metallopeptidase (MMP)2 and MMP9 in MDA-MB-231 cells. In addition, p90RSK activation was involved in EMT via the upregulation of mRNA expression, including that of Snail, Twist, ZEB1, N-cadherin, and vimentin. We also investigated NF-κB, the upstream regulator of EMT markers, and discovered that Cis-DDP treatment led to NF-κB translocation in the nucleus as well as its promoter activity. Our results suggest that targeting p90RSK would be a good strategy to increase Cis-DDP sensitivity in triple-negative breast cancers.

Overexpression of microRNA-612 Restrains the Growth, Invasion, and Tumorigenesis of Melanoma Cells by Targeting Espin

  • Zhu, Ying;Zhang, Hao-liang;Wang, Qi-ying;Chen, Min-jing;Liu, Lin-bo
    • Molecules and Cells
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    • 제41권2호
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    • pp.119-126
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    • 2018
  • microRNA (miR)-612 shows anticancer activity in several types of cancers, yet its function in melanoma is still unclear. This study was undertaken to investigate the expression of miR-612 and its biological relevance in melanoma cell growth, invasion, and tumorigenesis. The expression and prognostic significance of miR-612 in melanoma were examined. The effects of miR-612 overexpression on cell proliferation, colony formation, tumorigenesis, and invasion were determined. Rescue experiments were conducted to identify the functional target gene(s) of miR-612. miR-612 was significantly downregulated in melanoma tissues compared to adjacent normal tissues. Low miR-612 expression was significantly associated with melanoma thickness, lymph node metastasis, and shorter overall, and disease-free survival of patients. Overexpression of miR-612 significantly decreased cell proliferation, colony formation, and invasion of SK-MEL-28 and A375 melanoma cells. In vivo tumorigenic studies confirmed that miR-612 overexpression retarded the growth of A375 xenograft tumors, which was coupled with a decline in the percentage of Ki-67-positive proliferating cells. Mechanistically, miR-612 targeted Espin in melanoma cells. Overexpression of Espin counteracted the suppressive effects of miR-612 on melanoma cell proliferation, invasion, and tumorigenesis. A significant inverse correlation (r = -0.376, P = 0.018) was observed between miR-612 and Espin protein expression in melanoma tissues. In addition, overexpression of miR-612 and knockdown of Espin significantly increased the sensitivity of melanoma cells to doxorubicin. Collectively, miR-612 suppresses the aggressive phenotype of melanoma cells through downregulation of Espin. Delivery of miR-612 may represent a novel therapeutic strategy against melanoma.

Oleanolic Acids Inhibit Vascular Endothelial Growth Factor Receptor 2 Signaling in Endothelial Cells: Implication for Anti-Angiogenic Therapy

  • Lee, Da-Hye;Lee, Jungsul;Jeon, Jongwook;Kim, Kyung-Jin;Yun, Jang-Hyuk;Jeong, Han-Seok;Lee, Eun Hui;Koh, Young Jun;Cho, Chung-Hyun
    • Molecules and Cells
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    • 제41권8호
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    • pp.771-780
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    • 2018
  • Angiogenesis must be precisely controlled because uncontrolled angiogenesis is involved in aggravation of disease symptoms. Vascular endothelial growth factor (VEGF)/VEGF receptor 2 (VEGFR-2) signaling is a key pathway leading to angiogenic responses in vascular endothelial cells (ECs). Therefore, targeting VEGF/VEGFR-2 signaling may be effective at modulating angiogenesis to alleviate various disease symptoms. Oleanolic acid was verified as a VEGFR-2 binding chemical from anticancer herbs with similar binding affinity as a reference drug in the Protein Data Bank (PDB) entry 3CJG of model A coordination. Oleanolic acid effectively inhibited VEGF-induced VEGFR-2 activation and angiogenesis in HUVECs without cytotoxicity. We also verified that oleanolic acid inhibits in vivo angiogenesis during the development and the course of the retinopathy of prematurity (ROP) model in the mouse retina. Taken together, our results suggest a potential therapeutic benefit of oleanolic acid for inhibiting angiogenesis in proangiogenic diseases, including retinopathy.

T24 방광암세포에서 Luteolin과 TRAIL의 복합 처리에 따른 Apoptosis 유도 (Induction of Apoptosis by Combination Treatment with Luteolin and TRAIL in T24 Human Bladder Cancer Cells)

  • 박현수;최영현
    • 한국식품영양과학회지
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    • 제42권9호
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    • pp.1363-1369
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    • 2013
  • 본 연구에서는 플라보노이드 계열 중의 하나인 luteolin을 이용하여 TRAIL에 저항성을 가지는 T24 방광암세포에서 TRAIL 저항성 극복 가능성을 조사하였다. 본 연구의 결과에 의하면 luteolin 및 TRAIL 각각 단독 처리 시 세포증식에 전혀 영향을 미치지 못한 농도의 복합 처리 시 세포증식억제 효과가 크게 증가하였음 알 수 있었다. 이러한 증식억제와 연관된 aspoptosis 유도는 caspase-8의 활성화에 의한 tBid의 발현 증가와 pro-apoptotic 인자인 Bax의 발현 증가로 인한 caspase-9 및 -3의 활성화로 이어지는 type II apoptosis에 의한 것이라 추측되며, 이러한 가정은 각각의 caspase 선택적 저해제를 이용하여 재확인 하였다. 본 연구결과는 TRAIL에 저항성을 보이는 암세포에 luteolin이 감수성을 높이는데 효과적일 수 있으며, 암세포에 대한 combination therapy를 위한 기초자료로 활용성이 높을 것으로 사료된다.

Protein Arginine Methyltransferase 1 Methylates Smurf2

  • Cha, Boksik;Park, Yaerin;Hwang, Byul Nim;Kim, So-young;Jho, Eek-hoon
    • Molecules and Cells
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    • 제38권8호
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    • pp.723-728
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    • 2015
  • Smurf2, a member of the HECT domain E3 ligase family, is well known for its role as a negative regulator of TGF-${\beta}$ signaling by targeting Smads and TGF-${\beta}$ receptor. However, the regulatory mechanism of Smurf2 has not been elucidated. Arginine methylation is a type of post-translational modification that produces monomethylated or dimethylated arginine residues. In this report, we demonstrated methylation of Smurf2 by PRMT1. In vitro methylation assay showed that Smurf2, not Smurf1, was methylated by PRMT1. Among the type I PRMT family, only PRMT1 showed activity for Smurf2. Transiently expressed Smurf2 was methylated by PRMT1, indicating Smurf2 is a novel substrate of PRMT1. Using deletion constructs, methylation sites were shown to be located within amino acid region 224-298 of Smurf2. In vitro methylation assay following point mutation of putative methylation sites confirmed the presence of Arg232, Arg234, Arg237, and Arg239. Knockdown of PRMT1 resulted in increased Smurf2 expression as well as inhibition of TGF-${\beta}$-mediated reporter activity. Although it is unclear whether or not increased Smurf2 expression can be directly attributed to lack of methylation of arginine residues, our results suggest that methylation by PRMT1 may regulate Smurf2 stability and control TGF-${\beta}$ signaling.