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      • KCI등재

        Loss of AtCRK1 Gene Function in Arabidopsis thaliana Decreases Tolerance to Salt

        Xiao-Chuan Tao,Ying-Tang Lu 한국식물학회 2013 Journal of Plant Biology Vol.56 No.5

        Calcium serves as an important second messengerin many adaptational and developmental processes of plants. The CDPK-related kinases (CRKs) are a type of serinethreoninekinases belonging to the CDPK-SnRK superfamily. In this study, a T-DNA insertion mutant of AtCRK1 (crk1-1)was employed to explore the possible function of AtCRK1 insalt tolerance. Our results indicated that crk1-1 transformantshad a decreased tolerance to salt stress during seed germinationcompared with both wild-type plants and the complementedtransgenic lines, in which the full-length genomic AtCRK1clone with a 2.3 kb promoter was inserted into crk1-1 todrive CRK1 expression under the control of the CRK1promoter. Furthermore, a higher malondialdehyde (MDA)level and lower free proline content were measured in crk1-1 plants. The qRT-PCR analyses revealed that the transcriptionof several stress-related genes was decreased in crk1-1plants. These results indicate that AtCRK1 is involved in thetolerance to salt stress by changing both MDA and prolinelevels in Arabidopsis, and may act as a positive regulator inthe induction of stress-response gene transcription.

      • Targeting SHCBP1 Inhibits Cell Proliferation in Human Hepatocellular Carcinoma Cells

        Tao, Han-Chuan,Wang, Hai-Xiao,Dai, Min,Gu, Cheng-Yu,Wang, Qun,Han, Ze-Guang,Cai, Bing Asian Pacific Journal of Cancer Prevention 2013 Asian Pacific journal of cancer prevention Vol.14 No.10

        Src homology 2 domain containing (SHC) is a proto-oncogene which mediates cell proliferation and carcinogenesis in human carcinomas. Here, the SHC SH2-domain binding protein 1 (SHCBP1) was first established to be up-regulated in human hepatocellular carcinoma (HCC) tissues by array-base comparative genome hybridization (aCGH). Meanwhile, we examine and verify it by quantitative real-time PCR and western blot. Our current data show that SHCBP1 was up-regulated in HCC tissues. Overexpression of SHCBP1 could significantly promote HCC cell proliferation, survival and colony formation in HCC cell lines. Furthermore, knockdown of SHCBP1 induced cell cycle delay and suppressed cell proliferation. Furthermore, SHCBP1 could regulate the expression of activate extracellular signal-regulated kinase 1/2 (ERK1/2) and cyclin D1. Together, our findings indicate that SHCBP1 may contribute to human hepatocellular carcinoma by promoting cell proliferation and may serve as a molecular target of cancer therapy.

      • Inhibitory Effects of Syk Transfection on Lung Cancer Cell Invasion

        Peng, Chuan-Liang,Zhang, Ying,Sun, Qi-Feng,Zhao, Yun-Peng,Hao, Ying-Tao,Zhao, Xiao-Gang,Cong, Bo Asian Pacific Journal of Cancer Prevention 2013 Asian Pacific journal of cancer prevention Vol.14 No.5

        Objective: Spleen tyrosine kinase (Syk) is closely related to tumor invasion and metastasis, and has been shown to have potential inhibitory effects in tumors. In this study, we constructed a eukaryotic expression vector for Syk and analyzed its effects on invasive ability of the A549 non-small cell lung cancer cell line in vitro. Methods: A fragment of Syk was obtained by RT-PCR from human lung cancer cells and cloned into the expression vector pLNCXSyk. After restriction endonuclease digestion, PCR and DNA sequencing confirmation, the recombinant Syk expression plasmid was transfected into A549 human lung cancer cells using lipofectamine protocols. After selection, the cells stably expressed Syk. Detection of Syk expression of the cells by RT-PCR, and invasive ability were examined. Results: The eukaryotic expression plamid pLNCXSyk was constructed and expressed stably in the A549 human lung cancer cells. The RT-PCR results showed that Syk mRNA expression was upregulated significantly (P<0.05). Lower invasion through a basal membrane were apparent after transfection (P<0.05). Conclusions: A eukaryotic expression plasmid to cause Syk expression in lung cancer cells can obviously inhibit their invasive ability in vitro.

      • KCI등재

        Identification of six heat shock protein 70 genes in Lasioderma serricorne (Coleoptera: Anobiidae) and their responses to temperature stress

        Li Mao-Ye,Huang Yan,Lei Xiao,Xu Chuan-Tao,Li Bin,Chen De-Xin,Liu Su 한국응용곤충학회 2021 Journal of Asia-Pacific Entomology Vol.24 No.3

        Heat shock proteins (HSPs) play essential roles in stress tolerance in insects, such as the cigarette beetle, Lasioderma serricorne, which is an important pest of stored products. However, the function of HSPs in envi ronmental stress response in L. serricorne is poorly understood. In this study, six cDNAs encoding putative HSP70s were identified in L. serricorne (LsHSP70-1 to LsHSP70-6). The LsHSP70 proteins identified have signature motifs of insect HSP70s and exhibit high amino-acid identity with their respective orthologs from other insect species. Phylogenetic analysis showed that these LsHSP70s fall into three major clans: HSP70 in the cytosol (four genes), endoplasmic reticulum (one gene), and mitochondria (one gene). LsHSP70 genes are differentially expressed in different developmental stages. LsHSP70-4 and LsHSP70-5 are mainly expressed at the larval stage, while LsHSP70-3 shows the highest level at the pupal stage. The other genes are ubiquitously expressed. Furthermore, the expression levels of LsHSP70-1 and LsHSP70-4 are significantly upregulated upon exposure to temperatures of both 0 and 15 ◦ C, while LsHSP70-3 is inducible at 15 ◦ C and LsHSP70-6 at 0 ◦ C. In addition, treatment at 0 ◦ C causes significant downregulation of LsHSP70-2 and LsHSP70-3. Exposure to a temperature of 30 ◦ C upregulates LsHSP70-1 expression, while 35 and 40 ◦ C treatments result in significantly enhanced transcription of all the LsHSP70 genes. To the best of the authors’ knowledge, this is the first report on the sequence characteristics, phylogenetic relationships, and expression profiles of HSP70 genes in L. serricorne. The cold- and heat-inducible regulation of LsHSP70s suggests that these genes are related to tolerance of abnormal temperatures.

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