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      • KCI등재

        Bolting, an Important Process in Plant Development, Two Types in Plants

        Chen Chen,Wenjuan Huang,Kai Hou,Wei Wu 한국식물학회 2019 Journal of Plant Biology Vol.62 No.3

        Bolting refers to the rapid lengthening of the plant stem, and is due to the coordinated effects of developmental and environmental factors. The shoot apical meristem differentiates into the inflorescence meristem and eventually the floral meristem, which then develops into various floral organs during the bolting period. The timing of bolting is critical for plant propagation and reproductive success because it influences seed production, species survival, and crop yield. Therefore, analyses of the causes of bolting and how it occurs may enable researchers to regulate bolting. In this review, two different bolting phenotypes are described, namely inflorescence axis elongation and stem internode elongations. Various factors, such as light, temperature, and endogenous hormones, are integrated to mediate bolting. Moreover, the mechanism underlying bolting, including signal cascades and epigenetic inheritance, are discussed, and appropriate future research directions are proposed.

      • KCI등재

        IL-33/ST2 axis mediates hyperplasia of intrarenal urothelium in obstructive renal injury

        Wei-Yu Chen,Jenq-Lin Yan,Yi-Hsiu Wu,Lung-Chih Li,Ru-Fang Li,Ya-Ting Chang,Lo-Hsin Dai,Wan-Chen Wang,Ya-Jen Chang 생화학분자생물학회 2018 Experimental and molecular medicine Vol.50 No.-

        The monolayered intrarenal urothelium covers the renal papilla and ureteropelvic junction (UPJ). In response to increased renal pressure during obstruction or ischemic injuries, intrarenal urothelial cells begin to proliferate and form a multilayered urothelium. Little is known regarding the mechanism and pathophysiological role of urothelium hyperplasia during renal obstruction. In this study, we investigated the expression of interleukin (IL)-33, an IL-1 family cytokine, in kidneys with unilateral ureteral obstruction (UUO)-induced obstructive injury. IL-33 levels in hydronephrotic urine and serum were upregulated 2 days after UUO. The number of ST2-expressing immune cells was increased in the UUO kidney. We found that IL-33 was upregulated in vimentin-positive cells in the cortical and medullar layers and the UPJ stroma. Moreover, IL-33 expression was predominantly induced in multilayered keratin 5- positive urothelial cells in the UPJ. IL-33 was not detected in terminally differentiated superficial umbrella cells expressing uroplakin 3a. In vivo, we confirmed that deficiency of IL33 or its receptor ST2 attenuated UUO-induced hyperplasia of the UPJ urothelium. Deficiency of IL33 attenuated the expression of UUO-induced type 2 inflammatory cytokines and upregulated uroplakins and urothelial differentiation signaling in UPJ tissues. Our results collectively suggest that the IL-33/ST2 axis mediates the activation of innate immune responses and contributes to urothelial hyperplasia by regulating urothelial differentiation in obstructive kidney injury.

      • UHRF2 mRNA Expression is Low in Malignant Glioma but Silencing Inhibits the Growth of U251 Glioma Cells in vitro

        Wu, Ting-Feng,Zhang, Wei,Su, Zuo-Peng,Chen, San-Song,Chen, Gui-Lin,Wei, Yong-Xin,Sun, Ting,Xie, Xue-Shun,Li, Bin,Zhou, You-Xin,Du, Zi-Wei Asian Pacific Journal of Cancer Prevention 2012 Asian Pacific journal of cancer prevention Vol.13 No.10

        UHRF2 is a member of the ubiquitin plant homeo domain RING finger family, which has been proven to be frequently up-regulated in colorectal cancer cells and play a role as an oncogene in breast cancer cells. However, the role of UHRF2 in glioma cells remains unclear. In this study, we performed real-time quantitative PCR on 32 pathologically confirmed glioma samples (grade I, 4 cases; grade II, 11 cases; grade III, 10 cases; and grade IV, 7 cases; according to the 2007 WHO classification system) and four glioma cell lines (A172, U251, U373, and U87). The expression of UHRF2 mRNA was significantly lower in the grade III and grade IV groups compared with the noncancerous brain tissue group, whereas its expression was high in A172, U251, and U373 glioma cell lines. An in vitro assay was performed to investigate the functions of UHRF2. Using a lentivirus-based RNA interference (RNAi) approach, we down-regulated UHRF2 expression in the U251 glioma cell line. This down-regulation led to the inhibition of cell proliferation, an increase in cell apoptosis, and a change of cell cycle distribution, in which S stage cells decreased and G2/M stage cells increased. Our results suggest that UHRF2 may be closely related to tumorigenesis and the development of gliomas.

      • KCI등재

        Effect of Lactobacillus rhamnosus hsryfm 1301 on the Gut Microbiota and Lipid Metabolism in Rats Fed a High-Fat Diet

        ( Da Wei Chen ),( Zhen Quan Yang ),( Xia Chen ),( Yu Jun Huang ),( Bo Xing Yin ),( Fei Xiang Guo ),( Hai Qing Zhao ),( Jia Di Huang ),( Yun Wu ),( Rui Xia Gu ) 한국미생물 · 생명공학회 2015 Journal of microbiology and biotechnology Vol.25 No.5

        Accumulating evidence indicates that lactic acid bacteria could improve host physiology and lipid metabolism. To investigate the effect of the gut microbiota on host lipid metabolism, a hyperlipidemic rat model was established by feeding rats a high-fat diet for 28 days, and the gut microbiota of the rats was analyzed using real-time PCR before and after administration of Lactobacillus rhamnosus hsryfm 1301 and its fermented milk for 28 days. The findings showed that the Lactobacillus spp., Bifidobacterium spp., Bacteroides spp., and Enterococcus spp. content in the hyperlipidemic rats gut was increased significantly (p < 0.05), while the Clostridium leptum and Enterobacter spp. content was decreased significantly after intervening with L. rhamnosus hrsyfm 1301 and its fermented milk for 28 days (p < 0.05). Furthermore, the lipid levels of the serum and the liver were decreased significantly (p < 0.05) and the fecal water content was increased significantly (p < 0.05) in the hyperlipidemic rats after the intervention, and hepatocyte fatty degeneration of liver tissues was also prevented. A positive correlation was observed between the Clostridium leptum content and the level of serum cholesterol, triglycerides, low-density lipoprotein, and high-density lipoprotein, and a negative correlation was observed between the Enterobacter spp. content and the Lactobacillus spp. and Bifidobacterium spp. content in the hyperlipidemic rats gut. These results suggest that the gut microbiota and lipid metabolism of hyperlipidemic rats could be improved by supplementation with L. rhamnosus hsryfm 1301 and its fermented milk.

      • KCI등재

        Analysis the role of arabidopsis CKRC6/ASA1 in auxin and cytokinin biosynthesis

        Dong-Wei Di,Lei Wu,Pan Luo,Li Zhang,Tian-Zi Zhang,Xue Sun,Shao-Dong Wei,Chen-Wei An,Guang-Qin Guo 한국식물학회 2016 Journal of Plant Biology Vol.59 No.2

        The crosstalk between auxin and cytokinin (CK) is important for plant growth and development, although the underlying molecular mechanisms remain unclear. Here, we describe the isolation and characterization of a mutant of Arabidopsis Cytokinin-induced Root Curling 6 (CKRC6), an allele of ANTHRANILATE SYNTHASE ALPHA SUBUNIT 1 (ASA1) that encodes the á-subunit of AS in tryptophan (Trp) biosynthesis. The ckrc6 mutant exhibits root gravitropic defects and insensitivity to both CK and the ethylene precursor 1-aminocyclopropane-1-carboxylicacid (ACC) in primary root growth. These defects can be rescued by exogenous indole-3-acetic acid (IAA) or tryptophan (Trp) supplementation. Furthermore, our results suggest that the ckrc6 mutant has decreased IAA content, differential expression patterns of auxin biosynthesis genes and CK biosynthesis isopentenyl transferase (IPT) genes in comparison to wild type. Collectively, our study shows that auxin controls CK biosynthesis based on that CK sensitivity is altered in most auxin-resistant mutants and that CKs promote auxin biosynthesis but inhibit auxin transport and response. Our results also suggest that CKRC6/ASA1 may be located at an intersection of auxin, CK and ethylene metabolism and/or signaling.

      • HCV, Acute, LT : A Disparate Subset of Double Negative T cells Contributes to the Outcome of Murine Fulminant Viral Hepatitis via Effector Molecule Fibrinogen-like Protein 2

        ( Di Wu ),( Hong Wu Wang ),( Tao Chen ),( Yong Zou ),( Wei Ming Yan ),( Mei Fang Han ),( Ze Guang Wu ),( Xiao Jing Wang ) 대한간학회 2013 춘·추계 학술대회 (KASL) Vol.2013 No.1

        Aims: The underlying pathogenesis of fulminant viral hepatitis (FVH) has not been fully elucidated. As a subset of regulatory T cells, CD3+CD4-CD8- double negative (DN) T cells can suppress T cell responses. In this study, we present new insights into the immune mediated mechanisms involved in FVH caused by murine hepatitis virus strain 3 (MHV-3). Methods: The phenotype and cytokines of DN T cells were detected by flow cytometric analysis. The levels of mfgl2 were measured by real-time PCR and western-blot. The function of mfgl2 was measured by PCA. Results: After MHV-3 infection, the proportions of DN T cells increased significantly in BALB/cJ mice, and splenic DN T cells expressing high levels of CD69 were recruited by MHV-3 infected hepatocytes to the liver. Serum levels of alanine aminotransferase (ALT), aspartate aminotransferase (AST) and total bilirubin (TBil) increased, accompanied by massive hepatocyte necrosis. These DN T cells were predominantly consisted of a TCRαβ+ subset expressing high levels of CD44, and did not produce cytokine except IL-2. Adoptive transfer of this subset of DN T cells to the MHV-3 infected mice resulted in an increase of murine fibrinogen-like protein 2 (mfgl2) expression in association with massive fibrin deposition in the liver. Following MHV-3 infection, membrane mfgl2 expression and functional procoagulant activity (PCA) increased remarkably in the DN T cells. Introduction of a recombinant adenovirus which encoded a microRNA specifically targeting mfgl2 gene (Ad-mfgl2-miRNA) in vivo significantly inhibited the hepatic expression of mfgl2, increased mice survival. However, under this condition, adoptive transfer of the DN T cells accelerated the disease progression and reversed the benefit from mfgl2 gene silence, led to a 100% death. Conclutions: Our results demonstrated that DN T cell-derived mfgl2 may serve as an important effector molecule contributing to the pathogenesis of MHV-3-induced FVH.

      • KCI등재

        Analyses of the transcriptome of Bombyx mori cells infected with either BmNPV or AcMNPV

        Yu-Wei Chen,Carol-P Wu,Tsai-Chin Wu,Yueh-Lung Wu 한국응용곤충학회 2018 Journal of Asia-Pacific Entomology Vol.21 No.1

        Baculoviruses are insect-specific DNA viruses with a restricted host range. Two examples of such includeAutographa californica nucleopolyhedrovirus (AcMNPV) and Bombyx mori nucleopolyhedrovirus (BmNPV). AcMNPV is a commercially available and widely used baculovirus prototype which can infect 39 species in 13families. On the other hand, BmNPV is a major pathogen of silkworms which has developed high host specificityto Bombyx mori. Coincidentally, AcMNPV and BmNPV are highly homologous, but share no overlapping hostrange on a genomic level. In fact, these two similar viruses have extremely different infection outcomes inBombyx mori. We hypothesized that the determination of host specificity may depend on virus-host interactionsand several genes may be involved in determining host specificity. Therefore, we used next generation sequencing(NGS) to analyze transcriptome responses of hosts to these viruses. A transcriptome library was constructed,annotated, and grouped after sequence assembly. The comparison of gene expressions showed severalsignificant differences in the gene expression profiles of BmNPV and AcMNPV, especially in cases where genesinvolved with immune responses were verified by RNA interference. In addition, studies have shown that smallRNA plays a role in virus-host interaction, and further determines host specificity. Therefore, we screenedmicroRNA induced by AcMNPV infection, and then combined NGS data from cellular gens to predict possibleregulation networks. The manipulation of virus-host specificity can provide a breakthrough for the application ofbaculovirus in protein expression systems and the development of bio-control agents.

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