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1BLT1 in dendritic cells promotes Th1/Th17 differentiation and its deficiency ameliorates TNBS-induced colitis显示文摘Leukotriene B4(LTB4)synthesis is enhanced in the colonic mucosa in patients with inflammatory bowel disease(IBD).BLT1,a highaffinity receptor for LTB4,exhibits no effect on the progression of dextran sodium sulfate(DSS)-induced colitis,which mostly relies on innate immunity.Here,we reported that BLT1 regulates trinitrobenzene sulfonic acid(TNBS)-induced colitis,which reflects CD4+T-cell-dependent adaptive immune mechanisms of IBD.We found that BLT1 signaling enhanced the progression of colitis through controlling the production of proinflammatory cytokines by dendritic cells(DCs)and modulating the differentiation of Th1 and Th17.BLT1−/−mice displayed an alleviated severity of TNBS-induced colitis with reduced body weight loss and infiltrating cells in the lamina propria.BLT1 deficiency in DCs led to reduced production of proinflammatory cytokines,including IL-6,TNF-α,and IL-12,and these results were further confirmed via treatment with a BLT1 antagonist.The impaired cytokine production by BLT1−/−DCs subsequently led to reduced Th1 and Th17 differentiation both in vitro and in vivo.We further performed a conditional DC reconstitution experiment to assess whether BLT1 in DCs plays a major role in regulating the pathogenesis of TNBS-induced colitis,and the results indicate that BLT1 deficiency in DCs also significantly reduces disease severity.The mechanistic study demonstrated that BLT1-regulated proinflammatory cytokine production through the Gαiβγsubunit-phospholipase Cβ(PLCβ)-PKC pathway.Notably,we found that treatment with the BLT1 antagonist also reduced the production of proinflammatory cytokines by human peripheral blood DCs.Our findings reveal the critical role of BLT1 in regulating adaptive immunity and TNBS-induced colitis,which further supports BLT1 as a potential drug target for adaptive immunity-mediated IBD.Jinfeng Zhou Weiming Lai Wanjie Yang Juping Pan Hu Shen Yingying Cai Cuixia Yang Ningjia Ma Yue Zhang Ru Zhang Xin Xie Zhongjun Dong Yuan Gao Changsheng Du 2018Cellular & Molecular Immunology2018,15,12:9
2Abnormal expression of bHLH3 disrupts a flavonoid homeostasis network,causing differences in pigment composition among mulberry fruits显示文摘Mulberry fruits with high concentrations of anthocyanins are favored by consumers because of their good taste,bright color,and high nutritional value.However,neither the regulatory mechanism controlling flavonoid biosynthesis in mulberry nor the molecular basis of different mulberry fruit colors is fully understood.Here,we report that a flavonoid homeostasis network comprising activation and feedback regulation mechanisms determines mulberry fruit color.In vitro and in vivo assays showed that MYBA-bHLH3-TTG1 regulates the biosynthesis of anthocyanins,while TT2L1 and TT2L2 work with bHLH3 or GL3 and form a MYB-bHLH-WD40(MBW)complex with TTG1 to regulate proanthocyanidin(PA)synthesis.Functional and expression analyses showed that bHLH3 is a key regulator of the regulatory network controlling mulberry fruit coloration and that MYB4 is activated by MBW complexes and participates in negative feedback control of the regulatory network to balance the accumulation of anthocyanins and proanthocyanidins.Our research demonstrates that the interaction between bHLH3 and MYB4 in the homeostasis regulatory network ensures that the fruits accumulate desirable flavonoids and that this network is stable in pigmentrich mulberry fruits.However,the abnormal expression of bHLH3 disrupts the balance of the network and redirects flavonoid metabolic flux in pale-colored fruits,resulting in differences in the levels and proportions of anthocyanins,flavones,and flavonols among differently colored mulberry fruits(red,yellow,and white).The results of our study reveal the molecular basis of the diversity of mulberry fruit colors.Han Li Zhen Yang Qiwei Zeng Shibo Wang Yiwei Luo Yan Huang Youchao Xin Ningjia He 2020Horticulture Research2020,7,1:8
3Genome-wide identification and expression analyses of cytochrome P450 genes in mulberry(Morus notabilis)显示文摘Cytochrome P450 S play critical roles in the biosynthesis of physiologically important compounds in plants.These compounds often act as defense toxins to prevent herbivory.In the present study,a total of 174 P450 genes of mulberry(Morus notabilis C.K.Schn) were identified based on bioinformatics analyses.These mulberry P450 genes were divided into nine clans and 47 families and were found to be expressed in a tissue-preferential manner.These genes were compared to the P450 genes in Arabidopsis thaliana.Families CYP80,CYP92,CYP728,CYP733,CYP736,and CYP749 were found to exist in mulberry,and they may play important roles in the biosynthesis of mulberry secondary metabolites.Analyses of the functional and metabolic pathways of these genes indicated that mulberry P450 genes may participate in the metabolism of lipids,other secondary metabolites,xenobiotics,amino acids,cofactors,vitamins,terpenoids,and poiyketides.These results provide a foundation for understanding of the structures and biological functions of mulberry P450 genes.Bi Ma Yiwei Luo Ling Jia Xiwu Qi Qiwei Zeng Zhonghuai Xiang Ningjia He 2014Journal of Integrative Plant Biology2014,56,9:5
4Identification and characterization of genes involved in the jasmonate biosynthetic and signaling pathways in mulberry(Morus notabilis)显示文摘Jasmonate(JA) is an important phytohormone regulating growth, development, and environmental response in plants, particularly defense response against herbivorous insects. Recently, completion of the draft genome of the mulberry(Morus notabilis) in conjunction with genome sequencing of silkworm(Bombyx mori) provides an opportunity to study this unique plant‐herbivore interaction. Here, we identified genes involved in JA biosynthetic and signaling pathways in the genome of mulberry for the first time, with the majority of samples showing a tissue‐biased expression pattern. The analysis of the representative genes 12‐oxophytodienoic acid reductase(OPRs) and jasmonate ZIM‐domain(JAZs) was performed and the results indicated that the mulberry genome contains a relatively small number of JA biosynthetic and signaling pathway genes. A gene encoding animportant repressor, MnNINJA, was identified as an alternative splicing variant lacking an ethylene‐responsive element binding factor‐associated amphiphilic repression motif. Having this fundamental information will facilitate future functional study of JA‐related genes pertaining to mulberry‐silkworm interactions.Qing Wang Bi Ma Xiwu Qi Qing Guo Xuwei Wang Qiwei Zeng Ningjia He 2014Journal of Integrative Plant Biology2014,56,7:3
5Sorafenib sensitizes hepatocellular carcinoma cell to cisplatin via suppression of Wnt/β-catenin signaling显示文摘Yongpeng Wei Ningjia Shen Zhouchong Wang Guangshun Yang Bin Yi Ning Yang Yinghe Qiu Junhua Lu 2013Molecular and Cellular Biochemistry . 2013 (1-2)2013,,1:1
6Sequence structure and expression pattern of a novel anionic defensin-like gene from silkworm (Bombyx mori)显示文摘Hongxiu Wen Xiqian Lan Tingcai Cheng Ningjia He Kunihiro Shiomi Zenta Kajiura Zeyang Zhou Qingyou Xia Zhonghuai Xiang Masao Nakagaki 2009Molecular Biology Reports2009,,4:1
7A rapidly magnetically assembled stem cell microtissue with“hamburger”architecture and enhanced vascularization capacity显示文摘With the development of magnetic manipulation technology based on magnetic nanoparticles(MNPs),scaffold-free microtissues can be constructed utilizing the magnetic attraction of MNP-labeled cells.The rapid in vitro construction and in vivo vascularization of microtissues with complex hierarchical architectures are of great importance to the viability and function of stem cell microtissues.Endothelial cells are indispensable for the formation of blood vessels and can be used in the prevascularization of engineered tissue constructs.Herein,safe and rapid magnetic labeling of cells was achieved by incubation with MNPs for 1 h,and ultrathick scaffold-free microtissues with different sophisticated architectures were rapidly assembled,layer by layer,in 5 min intervals.The in vivo transplantation results showed that in a stem cell microtissue with trisection architecture,the two separated human umbilical vein endothelial cell(HUVEC)layers would spontaneously extend to the stem cell layers and connect with each other to form a spatial network of functional blood vessels,which anastomosed with the host vasculature.The“hamburger”architecture of stem cell microtissues with separated HUVEC layers could promote vascularization and stem cell survival.This study will contribute to the construction and application of structural and functional tissues or organs in the future.Yuezhi Lu Chun-Hua Yu Guangzheng Yang Ningjia Sun Fei Jiang Mingliang Zhou Xiaolin Wu Jiaxin Luo Cui Huang Wenjie Zhang Xinquan Jiang 2021Bioactive Materials2021,6,11:1
8The gap-free genome of mulberry elucidates the architecture and evolution of polycentric chromosomes显示文摘Mulberry is a fundamental component of the global sericulture industry,and its positive impact on our health and the environment cannot be overstated.However,the mulberry reference genomes reported previously remained unassembled or unplaced sequences.Here,we report the assembly and analysis of the telomere-to-telomere gap-free reference genome of the mulberry species,Morus notabilis,which has emerged as an important reference in mulberry gene function research and genetic improvement.The mulberry gap-free reference genome produced here provides an unprecedented opportunity for us to study the structure and function of centromeres.Our results revealed that all mulberry centromeric regions share conserved centromeric satellite repeats with different copies.Strikingly,we found that M.notabilis is a species with polycentric chromosomes and the only reported polycentric chromosome species up to now.We propose a compelling model that explains the formation mechanism of new centromeres and addresses the unsolved scientific question of the chromosome fusion-fission cycle in mulberry species.Our study sheds light on the functional genomics,chromosome evolution,and genetic improvement of mulberry species.Bi Ma Honghong Wang Jingchun Liu Lin Chen Xiaoyu Xia Wuqi Wei Zhen Yang Jianglian Yuan Yiwei Luo Ningjia He 2023Horticulture Research2023,10,7:1
9Sequence structure and expression pattern of a novel anionic defensin-like gene from silkworm (Bombyx mori)显示文摘Hongxiu Wen Xiqian Lan Tingcai Cheng Ningjia He Kunihiro Shiomi Zenta Kajiura Zeyang Zhou Qingyou Xia Zhonghuai Xiang Masao Nakagaki 2009Molecular Biology Reports2009,,4:1
10Genomic structure and expression analysis of the gene encoding a silkworm basic Kunitz-type chymotrypsin inhibitor显示文摘Ningjia He Masatoshi Yakiyama Hiroshi Fujii 2003Biochimica et Biophysica Acta2003,1628,:1
11Dynamic changes in transposable element and gene methylation in mulberry (Morus notabilis) in response to Botrytis cinerea显示文摘DNA methylation has been proposed to regulate plant stress resistance.However,the dynamic changes in DNA methylation in woody plants and their correlations with pathogenic responses are not fully understood.Here,we present single-base maps of the DNA methylomes of mulberry(Morus notabilis)leaves that were subjected to a mock treatment or inoculation with Botrytis cinerea.Compared with the former,the latter showed decreased mCG and mCHG levels and increased mCHH levels.DNA methylation inhibitors reduced resistance gene methylation levels and enhanced mulberry resistance,suggesting that the hypomethylation of resistance genes affects mulberry resistance to B.cinerea.Virus-induced gene silencing of MnMET1 enhanced the expression of mulberry-resistance genes,thereby increasing the plant’s resistance to B.cinerea.We also found that MITEs play a dominant role in controlling DNA methylation levels.MITEs appear to be the main sources of 24-nt siRNAs that regulate gene expression through the RNA-directed DNA methylation pathway.Youchao Xin Bi Ma Qiwei Zeng Wenmin He Meiling Qin Ningjia He 2021Horticulture Research2021,8,1:0
12Chinese Culture Products in International Culture Mobility显示文摘When mobility becomes the new normal for behavior and cognition, it's time to rethink international culture mobility and culture products. Singular thinking on mobility and culture products, staying at the level of economy and trade has affected our decision making with respect to culture product innovation and possible thinking on future value creation. Indian anthropologist Arjun Appadurai divides cross-border culture mobility into five global spaces and Stephen Greenblatt, literature historian with Harvard University, puts forward five dimensions of culture mobility that provide a direction for fully understanding international culture mobility. In the era of globalization, rethinking the concept of a nation's culture products means studies of generational possibilities and the vitality of the Chinese culture products from perspectives of immigration, technology, economy, culture and politics among the new context of international culture mobility.Zhu Ningjia 2017Contemporary Social Sciences2017,2,6:0
13Learning control of fermentation process with an improved DHP algorithm显示文摘Control of the fed-batch ethanol fermentation processes to produce maximum product ethanol is one of the key issues in the bioreactor system.However,ethanol fermentation processes exhibit complex behavior and nonlinear dynamics with respect to the cell mass,substrate,feed-rate,etc.An improved dual heuristic programming algorithm based on the least squares temporal difference with gradient correction(LSTDC) algorithm(LSTDC-DHP) is proposed to solve the learning control problem of a fed-batch ethanol fermentation process.As a new algorithm of adaptive critic designs,LSTDC-DHP is used to realize online learning control of chemical dynamical plants,where LSTDC is commonly employed to approximate the value functions.Application of the LSTDC-DHP algorithm to ethanol fermentation process can realize efficient online learning control in continuous spaces.Simulation results demonstrate the effectiveness of LSTDC-DHP,and show that LSTDC-DHP can obtain the near-optimal feed rate trajectory faster than other-based algorithms.Dazi Li Ningjia Meng Tianheng Song 2016Chinese Journal of Chemical Engineering2016,24,10:0
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