• 제목/요약/키워드: ribosome-inactivating protein

검색결과 16건 처리시간 0.032초

Purification and Characterization of an Antiviral Ribosome-inactivating Protein from Chenopodium album L.

  • Cho, Kang-Jin;Lee, Si-Myung;Kim, Yeong-Tae;Hwang, Young-Soo
    • Journal of Applied Biological Chemistry
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    • 제43권3호
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    • pp.125-130
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    • 2000
  • An antiviral protein (CAP30) with ribosome-inactivating activity was purified from the leaves of Chenopodium album L. through ammonium sulfate precipitation and column chromatography using S-Sepharose, Blue-Sepharose, FPLC Suprose12 HR, and FPLC Mono-S. The molecular wight of CAP30 was estimated to be 30kD. CAP30 was thermostable, maintaing its activity even after incubation at $70^{\circ}C$ for 30 min, and was stable in the pH range of 6 to 9. In a cell-free in vitro translation system using rabbit reticulocyte lysate, protein synthesis was inhibited by the addition of CAP30 with an $IC_{50}$ of 2.26pM. The comparison of N-terminal amino acid sequences of this protein with known ribosome-inactivating proteins (RIPs) revealed that it had some sequence homology with PAP-S and PAP-R from pokeweed (Phytolacca americana)and dodecandrin from P. dodecandra, but had no sequence homology with RIPs from other plants belonging to different orders. The mosaic symptoms on tobacco leaves caused by cucumber mosaic virus infection was completely inhibited by 100 ng/ml of the pure CAP30 protein.

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Barley ribosome-inactivating protein의 결정화 및 X-선 실험

  • 서세원
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1993년도 제2회 신약개발 연구발표회 초록집
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    • pp.136-136
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    • 1993
  • immunotoxin으로 쓰일 수 있는 리보솜 불활성화 단백질 (RIP, ribosome-inactivating protein)을 보리 씨앗에서 분리하였다 이 단백질은 분자량이 약 30,000 kDa 정도되고, pl가 9.0 보다 높다. 이러한 성질을 이용하여 Na-phosphate 완충용액으로 추출하고, 황산암모늄 60-80% 포화로 분획화하였다. 다음 CM-cellulose를 이용한 이온 교환 크로마토그래피, Sephacryl S-200 HR 컬럼을 이용한 gel filtration을 하여 순수히 분리하였고, 이를 전기영동하여 확인하였다.

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호박$(Cucurbita\;moschata\;D_{UCHESNE})$잎에서 리보즘불활성화 단백질의 분리 및 특성 (Purification and Properties of Ribosome-inactivating Proteins from the Leaves of $Cucurbita\;moschata\;D_{UCHESNE}$)

  • 이시명;김영태;황영수;조강진
    • Applied Biological Chemistry
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    • 제40권5호
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    • pp.375-379
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    • 1997
  • 리보즘불활성화 단백질(Ribosome-inactivating protein, RIP)을 생성하는 식물을 탐색하여 그중 호박$(Cucurbita\;moschata\;D_{UCHESNE})$ 잎에서 ammonium sulfate 침전, DE 52-Cellulose, S-Sepharose, FPLC Superose 12 HR, FPLC Mono-S column chromatography에 의하여 ribosome-Inactivating 활성이 있는 단백질(PR 1, PRIP 2)을 분리하였다. 정제된 단백질의 분자량은 SDS-PAGE에서 약 31,000과 30,500인 염기성 단백질로서, 특히 PRIP 1은 열에도 안정하여 $50^{\circ}C$에서 30분간 처리한 경우에도 활성이 유지되었다. 이 단백질들의 ribosome-inactivating 활성을 in vitro translation system에서 측정한 결과 50% 활성저해농도 $(IC_{50})$는 PRIP 1은 0.82nM, PRIP 2은 0.79 nM이었다. PRIP 1과 PRIP 2의 N-말단부분의 아미노산 서열을 분석하여, 이미 밝혀진 리보즘불활성화 단백질들과 아미노산서열의 유사성을 분석해 본 결과, PRIP 1은 Luffa cylindrica에서 분리된 Luffin B 및 Trichosanthes kirilowii Maximowicz에서 분리된 Trichokirin과, PRE 2은 Momordia charantia에서 분리된 Momordin II 및 MAP 30과 유사성이 매우 높았다.

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Molecular Characterization of the Recombinant A-chain of a Type II Ribosome-Inactivating Protein (RIP) from Viscum album coloratum and Structural Basis on its Ribosome-Inactivating Activity and the Sugar-binding Properties of the B-chain

  • Ye, Wenhui;Nanga, Ravi Prakash Reddy;Kang, Cong Bao;Song, Joo-Hye;Song, Seong-Kyu;Yoon, Ho-Sup
    • BMB Reports
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    • 제39권5호
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    • pp.560-570
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    • 2006
  • Mistletoe (Viscum album) lectins, which are classified as a type II ribosome-inactivating protein (RIP) due to their unique biological function and the potential medical and therapeutic application in cancer cells, receive a rising attention. The heterodimeric glycoproteins contain the A-chain with catalytic activity and the B-chain with sugar binding properties. In recent years, studies involving the lectins from the white berry European mistletoe (Viscum album) and the yellow berry Korean mistletoe (Viscum album coloratum) have been described. However, the detailed mechanism in exerting unique cytotoxic effect on cancer cells still remains unclear. Here, we aim to understand and define the molecular basis and biological effects of the type II RIPs, through the studies of the recombinant Korean mistletoe lectin. To this end, we expressed, purified the recombinant Korean mistletoe lectin (rKML), and investigated its molecular characteristics in vitro, its cytotoxicity and ability to induce apoptotic cell death in cancer cells. To gain structural basis for its catalytic activity and sugar binding properties, we performed homology modeling studies based on the high degree of sequence identity and conserved secondary structure prediction between Korean and European, Himalayan mistletoe lectins, and Ricin.

Antiviral Activity of a Type 1 Ribosome-inactivating Protein from Chenopodium album L.

  • Lee, Si-Myung;Cho, Kang-Jin;Kim, Yeong-Tae;Park, Hee-young;Kim, Su-il;Hwang, Young-Soo;Kim, Donghern
    • Journal of Applied Biological Chemistry
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    • 제42권4호
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    • pp.161-165
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    • 1999
  • The antiviral activity of CAP30 from Chenopodium album, a type1 ribosome-inactivating protein (RIP), was examined against 5 different plant viral pathogens, and its activity against Tobacco mosaic virus was compared to those of well known antiviral proteins such as Pokeweed Antiviral protein from leaves and seeds. When the inoculating concentration of Tobacco mosaic virus was varied from 0.4 to $400{\mu}g/ml$, it was observed that CAP30 at the concentration of $1{\mu}g/ml$ suppressed the viral infection of C. amaranthicolor and C. quinoa almost completely up to $40{\mu}g/ml$ Tobacco mosaic virus. Results from the assays for the inhibitions of in vitro translation of rabbit reticulocyte lysate and the suppression of Tobacco mosaic virus infection ($10{\mu}g/ml$) to C. quinoa indicated that CAP30 is a strong inhibitor of protein synthesis and virus infection. The infection of several viruses other than Tobacco mosaic virus to host plants were also inhibited by $5{\mu}g/ml$ CAP30, suggesting that a gene encoding CAP30 can be used to develop transgenic virus-resistant plants.

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Induction of apoptosis by protein fraction isolated from the leaves of Mirabilis jalapa L on HeLa and Raji cell-line

  • Ikawati, Zullies;Sudjadi, Sudjadi;Elly, Widyaningsih;Puspitasari, Dyah;Sismindari, Sismindari
    • Advances in Traditional Medicine
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    • 제3권3호
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    • pp.151-156
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    • 2003
  • The leaves of Mirabilis jalapa L contains protein fraction presumed ribosome-inactivating protein (RIP). RIP is a group of protein that has RNA N-glycosidase activity that is capable to inhibit protein synthesis. Protein fraction of the plant was shown to be cytotoxic on HeLa cell-line, however, the mechanism by which the protein kill the cells is not identified yet, whether trough apoptosis, necrosis, or other mechanism. This research aim to study the mechanism of cell death caused by the protein fraction isolated from the leaves of this plant on HeLa and Raji cell-line, as representative of different kind of cancer cells. Results showed that protein fraction isolated from the leaves of Mirabilis jalapa L was more cytotoxic to HeLa cell-line (LC50: 0.65 mg/ml) than to Raji cell-line (1.815 mg/ml) on 48 hours incubation time. Moreover, it was demonstrated that the death of HeLa cells caused by the protein fraction was due to induction of apoptosis, while on Raji cell-line was due to non-apoptosis way, presumably via necrosis.

Formulation and Cytotoxicity of Ribosome-Inactivating Protein Mirabilis Jalapa L. Nanoparticles Using Alginate-Low Viscosity Chitosan Conjugated with Anti-Epcam Antibodies in the T47D Breast Cancer Cell Line

  • Wicaksono, Psycha Anindya;Sismindari, Sismindari;Martien, Ronny;Ismail, Hilda
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권4호
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    • pp.2277-2284
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    • 2016
  • Ribosome-inactivating protein (RIP) from Mirabilis jalapa L. leaves has cytotoxic effects on breast cancer cell lines but is less toxic towards normal cells. However, it can easily be degraded after administration so it needs to be formulated into nanoparticles to increase its resistance to enzymatic degradation. The objectives of this study were to develop a protein extract of M. jalapa L. leaves (RIP-MJ) incorporated into nanoparticles conjugated with Anti-EpCAM antibodies, and to determine its cytotoxicity and selectivity in the T47D breast cancer cell line. RIP-MJ was extracted from red-flowered M. jalapa L. leaves. Nanoparticles were formulated based on polyelectrolyte complexation using low viscosity chitosan and alginate, then chemically conjugated with anti-EpCAM antibody using EDAC based on carbodiimide reaction. RIP-MJ nanoparticles were characterised for the particle size, polydispersity index, zeta potential, particle morphology, and entrapment efficiency. The cytotoxicity of RIP-MJ nanoparticles against T47D and Vero cells was then determined with MTT assay. The optimal formula of RIP-MJ nanoparticles was obtained at the concentration of RIP-MJ, low viscosity chitosan and alginate respectively 0.05%, 1%, and 0.4% (m/v). RIP-MJ nanoparticles are hexagonal with high entrapment efficiency of 98.6%, average size of 130.7 nm, polydispersity index of 0.380 and zeta potential +26.33 mV. The $IC_{50}$ values of both anti-EpCAM-conjugated and non-conjugated RIP-MJ nanoparticles for T47D cells (13.3 and $14.9{\mu}g/mL$) were lower than for Vero cells (27.8 and $33.6{\mu}g/mL$). The $IC_{50}$ values of conjugated and non-conjugated RIP-MJ for both cells were much lower than $IC_{50}$ values of non-formulated RIP-MJ (>$500{\mu}g/mL$).

Identification and Characterization of an Antifungal Protein, AfAFPR9, Produced by Marine-Derived Aspergillus fumigatus R9

  • Rao, Qi;Guo, Wenbin;Chen, Xinhua
    • Journal of Microbiology and Biotechnology
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    • 제25권5호
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    • pp.620-628
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    • 2015
  • A fungal strain, R9, was isolated from the South Atlantic sediment sample and identified as Aspergillus fumigatus. An antifungal protein, AfAFPR9, was purified from the culture supernatant of Aspergillus fumigatus R9. AfAFPR9 was identified to be restrictocin, which is a member of the ribosome-inactivating proteins (RIPs), by MALDI-TOF-TOF-MS. AfAFPR9 displayed antifungal activity against plant pathogenic Fusarium oxysporum, Alternaria longipes, Colletotrichum gloeosporioides, Paecilomyces variotii, and Trichoderma viride at minimum inhibitory concentrations of 0.6, 0.6, 1.2, 1.2, and 2.4 μg/disc, respectively. Moreover, AfAFPR9 exhibited a certain extent of thermostability, and metal ion and denaturant tolerance. The iodoacetamide assay showed that the disulfide bridge in AfAFPR9 was indispensable for its antifungal action. The cDNA encoding for AfAFPR9 was cloned from A. fumigatus R9 by RT-PCR and heterologously expressed in E. coli. The recombinant AfAFPR9 protein exhibited obvious antifungal activity against C. gloeosporioides, T. viride, and A. longipes. These results reveal the antifungal properties of a RIP member (AfAFPR9) from marine-derived Aspergillus fumigatus and indicated its potential application in controlling plant pathogenic fungi.

참비름 (Amaranthus mangostanus)에서 항바이러스성 단백질 (AAP29)의 분리 및 특성 (Purification and Characterization of Antiviral Protein (AAP29) from the Leaves of Amaranthus mangostanus)

  • 이승인;김영태;황영수;조강진
    • Applied Biological Chemistry
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    • 제38권6호
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    • pp.528-533
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    • 1995
  • 참비름 (Amaranthus mangostanus) 잎에서 단백질을 추출하여 S-Sepharose, Sephacryl S-200 HR, CM-Sepharose, Blue sepharose column chromatography에 의하여 단백질 합성 저해능이 있는 항바이러스성 단백질 (Amarnanthus antiviral protein, AAP29)을 분리하였다. 정제된 단백질의 분자량은 SDS-PAGE에서 약 29,200이었으며, 등전점은 9.0$50^{\circ}C$에서 20분간 처리한 경우에도 활성의 변화는 없었으며, 이 단백질의 단백질합성 저해능 활성을 in vitro translation system에서 측정한 결과 50% 저해농도 ($IC_{50}$)는 0.18 nM이었다. 담배잎 표면에 AAP29와 cucumber mosaic virus (CMV)를 함께 접종하여 항바이러스 활성을 생물검정한 결과 AAP29는 virus 감염를 현저히 저하시켰다. AAP29의 N-말단 아미노산 서열은 ADLTFTVTKDGTSQSYXTLXNXWRXW이었으며 기존에 알려진 다른 RIP과의 동질성은 없었다.

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Host Cellular Response during Enterohaemorrhagic Escherichia coli Shiga Toxin Exposure

  • Kyung-Soo, Lee;Seo Young, Park;Moo-Seung, Lee
    • 한국미생물·생명공학회지
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    • 제50권4호
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    • pp.441-456
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    • 2022
  • Shiga toxins (Stxs) are major virulence factors from the enterohemorrhagic Escherichia coli (EHEC), a subset of Stx-producing Escherichia coli. Stxs are multi-functional, ribosome-inactivating proteins that underpin the development of hemolytic uremic syndrome (HUS) and central nervous system (CNS) damage. Currently, therapeutic options for the treatment of diseases caused by Stxs are limited and unsatisfactory. Furthermore, the pathophysiological mechanisms underpinning toxin-induced inflammation remain unclear. Numerous works have demonstrated that the various host ribotoxic stress-induced targets including p38 mitogen-activated protein kinase, its downstream substrate Mitogen-activated protein kinase-activated protein kinase 2, and apoptotic signaling via ER-stress sensors are activated in many different susceptible cell types following the regular retrograde transportation of the Stxs, eventually leading to disturbing intercellular communication. Therapeutic options targeting host cellular pathways induced by Stxs may represent a promising strategy for intervention in Stx-mediated acute renal dysfunction, retinal damage, and CNS damage. This review aims at fostering an in-depth understanding of EHEC Stxs-mediated pathogenesis through the toxin-host interactions.