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2006年07月25日

【期刊论文】Reactive oxygen species involved in trichosanthin-induced apoptosis of human choriocarcinoma cells

安成才, Chun-yang ZHANG*, Yi-xuan GONG†, Hui MA*, Cheng-cai AN† and Die-yan CHEN*

Biochem. J. (2001) 355, 653-661 (Printed in Great Britain),-0001,():

-1年11月30日

摘要

The type-I ribosome-inactivating protein trichosanthin (TCS) has a broad spectrum of biological and pharmacological activities, including abortifacient, anti-tumour and anti-HIV activities. We have found for the first time that TCS stimulated the production of reactive oxygen species (ROS) in JAR cells (a human choriocarcinoma cell line) in a time- and concentrationdependent manner by using the fluorescent probe 2',7'-dichlorofluorescein diacetate with confocal laser scanning microscopy. ESR spectral studies and the inhibition of ROS formation by the superoxide radical anion (O2 −d) scavenger superoxide dismutase, the H3O2 scavenger catalase and the hydroxyl radical (OHd) scavenger mannitol suggested the involvement of O2−d, H2O2 and OHd. TCS-induced ROS formation was shown to be dependent on the presence of both extracellular and intracellular Ca2+; moreover, ROS production paralleled the intracellular Ca2+ elevation induced by TCS, suggesting that ROS production might be a consequence of Ca2+ signalling. TCS-induced activation of caspase-3 was initiated within 2 h; however, TCS-induced production of ROS was initiated within 5min, suggesting that the production of ROS preceded the activation of caspase-3. Simultaneous observation of the nuclear morphological changes via two-photon laser scanning microscopy and ROS production via confocal laser scanning microscopy revealed that ROS is involved in the apoptosis of JAR cells. The involvement of ROS was also confirmed by the inhibition of TCS-induced cell death by the antioxidant Trolox and the ROS scavengers catalase and mannitol. Diethylenetriaminepenta-acetic acid, an inhibitor of metal-facilitated OHd formation, markedly inhibited TCS-induced cell death, suggesting that TCS induced OHd formation via the Fenton reaction. The finding that ROS is involved in the TCS-induced apoptosis of JAR cells might provide new insight into the antitumour and anti-HIV mechanism of TCS.

calcium,, caspase-3,, hydrogen peroxide,, hydroxyl radical,, superoxide radical anion.,

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2006年07月25日

【期刊论文】ENHANCED GREEN FLUORESCENCE PROTEIN TRACKS TRICHOSANTHIN IN HUMAN CHORIOCARCINOMA CELLS AS A FEASIBLE AND STABLE REPORTER

安成才, Ye Wang, Shuang-Li Mi, Mei-Yan Lou, Yin Gao, Zhang-Liang Chen and Cheng-Cai An

[Frontiers in Bioscience 10, 2279-2284, September 1, 2005],-0001,():

-1年11月30日

摘要

Trichosanthin (TCS) is a ribosome-inactivating protein (RIP) which can inhibit the growth of human choriocarcinoma (JAR) cells. There are no clear mechanisms to discover the interaction pathway and cytotoxicity of TCS in JAR cells. In this paper, we showed the distribution and transport of ndogenously expressed TCS in JAR cells. Enhanced Green Fluorescence Protein (EGFP), fused with TCS, was applied as a reporter to track the behavior of TCS in JAR cells. Firstly, we investigated the expression stability of EGFP and physiological effects on JAR cells. A stable cell line expressing EGFP was created, which could reproduce and express EGFP even if transplanted into nude mice. Based on the proved stability and feasibility of EGFP in cultured cells and in vivo, the fusion gene of EGFP and TCS was constructed and transfected into JAR cells by liposome. The fluorescence microscopy showed that TCS-EGFP fusion gene was expressed in JAR cells in 24 to 48 hours and the fluorescence spread in cytoplasm mainly and in nucleus partially, which could trace the distribution and transport of TCS-EGFP in JAR cells. Most of fluorescent cells died after 48 hours for the cytotoxicity of expressed TCS-EGFP. These results first reported a stable expression and tracing method by EGFP in JAR cells, and provided theoretical basis to apply TCS in cancer therapy.

trichosanthin,, choriocarcinoma cells,, EGFP,, liposome-induced transfection

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2006年07月25日

【期刊论文】Trichomislin, a novel ribosome-inactivating protein, induces apoptosis that involves mitochondria and caspase-3

安成才, Shuang-Li Mi, Cheng-Cai An*, Ye Wang, Ji-Yuan Chen, Nan-Ying Che, Yin Gao, Zhang-Liang Chen

Archives of Biochemistry and Biophysics 434(2005)258-265,-0001,():

-1年11月30日

摘要

Trichomislin, a novel ribosome-inactivating protein, was cloned from the genome of Trichosanthes kirilowii Maxim. The gene was recombined to prokaryotic expression vector and the protein was puriWed by cation-exchange chromatography. The secondary structure of trichomislin was measured by circular-dichroism analysis and the ratios of α-helices and β-sheets were calculated. Trichomislin could inhibit the synthesis of protein in rabbit reticulocyte lysate systems and its reaction me hanism was to inactivate ribosome as an rRNA N-glycosidase. Antitumor analyses indicated trichomislin induced the apoptosis and inhibited the growth of choriocarcinoma cells. Further investigation showed that trichomislin could bind to and enter choriocarcinoma cells, and then increase the caspase-3 activity in a time-dependent manner. At the same time, the concentration of cytochrome c in cytosol increased while that in mitochondria decreased. These results suggested that trichomislin induced apoptosis by releasing cytochrome c from mitochondria which then triggered the caspase family member activation.

Ribosome-inactivating protein, Choriocarcinoma, Apoptosis, Mitochondria, Caspase

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2006年07月25日

【期刊论文】Detection of the putative cis-region involved in the induction by a Pyricularia oryzae elicitor of the promoter of a gene encoding phenylalanine ammonia-lyase in rice

安成才, L. Wang, C. An, W. Qian, T. Liu, J. Li, Z. Chen

Plant Cell Rep (2004) 22: 513-518,-0001,():

-1年11月30日

摘要

A rice PAL (phenylalanine ammonia-lyase) gene sequence (rPAL-P5), which is highly similar to and likely the same as a previously described rice ZB8PAL gene, including the 50-upstream and exon I coding regions of PAL, was isolated using PCR amplification. The expression of several PALs, including rPAL-P5, was strongly induced following inoculation with Pyricularia oryzae or treatment with a P. oryzae elicitor. To identify the promoter region induced by the P. oryzae elicitor, we constructed and subsequently transformed rPAL-P5 promoter deletion series into rice calli using particle bombardment. Results from both elicitor-inducible reporter gene and gel mobility shift assays demonstrated that the sequence -349 to -256 of the rPAL-P5 promoter includes a cis-element involved in the induction of P. oryzae.

Phenylalanine ammonia-lyase, cis-Element, Elicitor, Rice calli, Promoter

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  • 安成才 邀请

    北京大学,北京

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