|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Overexpression of PGA37/MYB118 and MYB115 promotes vegetative-to-embryonic transition in Arabidopsis显示文摘从 non-germline 房间的体的胚胎的形成对更高的植物唯一并且能被操作在许多种类。以前的研究表明包括 WUSCHEL (WUS )/PLANT 生长 ACTIVATOR6 (PGA6 ) ,几 Arabidopsis 基因的 overexpression 纵容繁荣,叶状的 COTYLEDON1 (LEC1 ) ,和 LEC2,能引起 vegetative-to-embryonic 转变或体的胚胎的形成。这里,我们报导那在 Arabidopsis PGA37 基因的一个 gain-of-function 变化,编码 MYB118 抄写因素,导致的 vegetative-to-embryonic 转变,从根将生物的活组织移植于培养基中培养的体的胚胎的形成,和提高的 LEC1 表示水平。两倍变异的分析证明 WUS 没被 PGA37/MYB118 为体的胚胎的正式就职要求。另外, MYB115 的 overexpression, PGA37/MYB118 的一个相当或相同的事物,引起了象 pga37 一样显型。两倍异种没显示出的 myb118 myb115 明显的发展畸形。一起,这些结果建议 PGA37/MYB118 和 MYB115 支持 vegetative-to-embryonic 转变,通过 WUS 的一个发信号的小径独立人士。 | Xingchun wang Qi-Wen Niu Chong Teng Chao Li Jinye Mu Nam-Hai Chua Jianru Zuo | 2009 | Cell Research2009,19,2: | 30 |
| 2 | Identification of a denitrifying bacterium and verification of its anaerobic ammonium oxidation ability显示文摘A strain D3 of denitrifying bacterium was isolated from an anammox reactor,and identi-fied as Pseudomonas mendocina based on the morphological and physiological assay,Vitek test,Biolog test,(G+C) mol% content,and 16S rDNA phylogenetic analysis.As a typical denitrifying bac-terium,strain D3 achieved the maximal nitrate reduction rate of 26.2 mg/(L·d) at the nitrate concen-tration of 88.5 mg N/L.The optimal pH and growth temperature were 7.84 and 34.9℃,respectively.Strain D3 was able to oxidize ammonia under anaerobic condition.The maximum nitrate and ammo-nium utilization rates were 6.37 mg/(L·d) and 3.34 mg/(L·d) ,respectively,and the consumption ratio of ammonia to nitrate was 1:1.91.Electron microscopic observation revealed peculiar cell inclusions in strain D3.Because of its relation to anammox activity,strain D3 was presumed to be anammoxosome.The present investigation proved that denitrifying bacteria have the anammox ability,and the results have engorged the range of anammox populations. | HU Baolan ZHENG Ping LI Jinye XU Xiangyang JIN Rencun | 2006 | Science China(Life Sciences)2006,49,5: | 13 |
| 3 | A combination of Chinese herbs, Astragalus membranaceus var. mongholicus and Angelica sinensis , improved renal microvascular insufficiency in 5/6 nephrectomized rats显示文摘 | Jinye Song Liqiang Meng Shen Li Lei Qu Xiaomei Li | 2009 | Vascular Pharmacology2009,,5: | 1 |
| 4 | Decellularized Disc Hydrogels for hBMSCs tissue-specific differentiation and tissue regeneration显示文摘Tissue specificity,a key factor in the decellularized tissue matrix(DTM),has shown bioactive functionalities in tuning cell fate-e.g.,the differentiation of mesenchymal stem cells.Notably,cell fate is also determined by the living microenvironment,including material composition and spatial characteristics.Herein,two neighboring tissues within intervertebral discs,the nucleus pulposus(NP)and annulus fibrosus(AF),were carefully processed into DTM hydrogels(abbreviated DNP-G and DAF-G,respectively)to determine the tissue-specific effects on stem cell fate,such as specific components and different culturing methods,as well as in vivo regeneration.Distinct differences in their protein compositions were identified by proteomic analysis.Interestingly,the fate of human bone marrow mesenchymal stem cells(hBMSCs)also responds to both culturing methods and composition.Generally,hBMSCs cultured with DNP-G(3D)differentiated into NP-like cells,while hBMSCs cultured with DAF-G(2D)underwent AF-like differentiation,indicating a close correlation with the native microenvironments of NP and AF cells,respectively.Furthermore,we found that the integrin-mediated RhoA/LATS/YAP1 signaling pathway was activated in DAF-G(2D)-induced AF-specific differentiation.Additionally,the activation of YAP1 determined the tendency of NP-or AF-specific differentiation and played opposite regulatory effects.Finally,DNP-G and DAF-G specifically promoted tissue regeneration in NP degeneration and AF defect rat models,respectively.In conclusion,DNP-G and DAF-G can specifically determine the fate of stem cells through the integrin-mediated RhoA/LATS/YAP1 signaling pathway,and this tissue specificity is both compositional and spatial,supporting the utilization of tissue-specific DTM in advanced treatments of intervertebral disc degeneration. | Yizhong Peng Xiangcheng Qing Hui Lin Donghua Huang Jinye Li Shuo Tian Sheng Liu Xiao Lv Kaige Ma Rui Li Zilong Rao Ying Bai Songfeng Chen Ming Lei Daping Quan Zengwu Shao | 2021 | Bioactive Materials2021,6,10: | 1 |
| 5 | Endogenous repair theory enriches construction strategies for orthopaedic biomaterials:a narrative review显示文摘The development of tissue engineering has led to new strategies for mitigating clinical problems;however,the design of the tissue engineering materials remains a challenge.The limited sources and inadequate function,potential risk of microbial or pathogen contamination,and high cost of cell expansion impair the efficacy and limit the application of exogenous cells in tissue engineering.However,endogenous cells in native tissues have been reported to be capable of spontaneous repair of the damaged tissue.These cells exhibit remarkable plasticity,and thus can differentiate or be reprogrammed to alter their phenotype and function after stimulation.After a comprehensive review,we found that the plasticity of these cells plays a major role in establishing the cell source in the mechanism involved in tissue regeneration.Tissue engineering materials that focus on assisting and promoting the natural self-repair function of endogenous cells may break through the limitations of exogenous seed cells and further expand the applications of tissue engineering materials in tissue repair.This review discusses the effects of endogenous cells,especially stem cells,on injured tissue repairing,and highlights the potential utilisation of endogenous repair in orthopaedic biomaterial constructions for bone,cartilage,and intervertebral disc regeneration. | Yizhong Peng Jinye Li Hui Lin Shuo Tian Sheng Liu Feifei Pu Lei Zhao Kaige Ma Xiangcheng Qing Zengwu Shao | 2021 | Biomaterials Translational2021,2,4: | 1 |
| 6 | Enhanced Seed Oil Production in Canola by Conditional Expression of Brassica napus LEAFY COTYLEDON1 and LEC1-LIKE in Developing Seeds1[W][OA]显示文摘 | Tan Helin Yang Xiaohui Zhang Fengxia Zheng Xiu Qu Cunmin Mu Jinye Fu Fuyou Li Jiana Guan Rongzhan Zhang Hongsheng Wang Guodong Zuo Jianru | 2011 | EN2011,,3: | 1 |
| 7 | Monolithic polyimine vitrimer/graphene aerogel composites显示文摘Graphene-polymer composites have attracted great attention as sensing materials due to their tailorable electrical conductivity, physicochemical properties, and sensitivity to geometric and functional changes.Herein, we report the first example of cylindrical monolithic polyimine vitrimer/graphene composites with excellent mechanical, compressive, rehealable and recyclable, and piezoresistive properties via simple infiltration of polymer monomers into the pores of graphene aerogel followed by thermal curing. The composites exhibit excellent durable compressibility(negligible reduction in the compression properties even after 3000 consecutive compression cycles), rapid recovery to the original size upon stress released,high compressive strength(up to 1.2 MPa), and high conductivity(up to 79 S/m). Excellent piezoresistive properties were observed, displaying consistent and reliable change of the electrical resistance with the compression ratio. Furthermore, rehealing with ~100% recovery of the compressive strength and electric conductivity was achieved under mild rehealing conditions, which is highly desired but has rarely been reported for electronic materials. The facile strategy for fabrication of rehealable monolithic polymer/GAs can open new possibilities for the sustainable development of composites with high electrical conductivity for various applications such as sensing, health monitoring, and movement detection. | Jinye Zhang Shichang Luo Yunlong Ma Ruiyang Li Yinghua Jin Li Qiu Wei Zhang | 2023 | Chinese Chemical Letters2023,34,2: | 0 |
| 8 | Breeding of T.aestivum-Ag.intermedium translocation lines with T.timopheevii cytoplasm and characterization by GISH显示文摘A male-sterile T. aestivum-Ag. intermedium partial amphiploid with cytoplasm of T. timopheevii as a female parent was crossed to common wheat. The hybrid was backcrossed to the male parent several times continually and self-crossed at last. Two stable lines with common wheat phenotype, H96269-2 and H96278, have been obtained. The chromosome numbers of the two lines are all 2n = 42 in somatic cells. By inoculation test, the two lines show a high level of resistance to yellow rust. Through genomic in situ hybridization (GISH) with Ag. intermedium total genomic DNA as a probe, it is demonstrated that the two stable lines are all small segmental translocation lines, and the translocated chromosome segments from Ag. intermedium are located on the short arm terminals of wheat chromosomes. Genetics analysis suggests that the yellow rust resistance gene(s) are probably located on the translocated chromosome segments of Ag. intermedium. | MU Jinye LI Jilin WANG Xianping JING Jiankang ZHANG Xiangqi | 2000 | Chinese Science Bulletin2000,45,15: | 0 |
| 9 | Low glucose metabolite 3-phosphoglycerate switches PHGDH from serine synthesis to p53 activation to control cell fate显示文摘Glycolytic intermediary metabolites such as fructose-1,6-bisphosphate can serve as signals,controlling metabolic states beyond energy metabolism.However,whether glycolytic metabolites also play a role in controlling cell fate remains unexplored.Here,we find that low levels of glycolytic metabolite 3-phosphoglycerate(3-PGA)can switch phosphoglycerate dehydrogenase(PHGDH)from cataplerosis serine synthesis to pro-apoptotic activation of p53.PHGDH is a p53-binding protein,and when unoccupied by 3-PGA interacts with the scaffold protein AXIN in complex with the kinase HIPK2,both of which are also p53-binding proteins.This leads to the formation of a multivalent p53-binding complex that allows HIPK2 to specifically phosphorylate p53-Ser46 and thereby promote apoptosis.Furthermore,we show that PHGDH mutants(R135W and V261M)that are constitutively bound to 3-PGA abolish p53 activation even under low glucose conditions,while the mutants(T57A and T78A)unable to bind 3-PGA cause constitutive p53 activation and apoptosis in hepatocellular carcinoma(HCC)cells,even in the presence of high glucose.In vivo,PHGDH-T57A induces apoptosis and inhibits the growth of diethylnitrosamine-induced mouse HCC,whereas PHGDH-R135W prevents apoptosis and promotes HCC growth,and knockout of Trp53 abolishes these effects above.Importantly,caloric restriction that lowers whole-body glucose levels can impede HCC growth dependent on PHGDH.Together,these results unveil a mechanism by which glucose availability autonomously controls p53 activity,providing a new paradigm of cell fate control by metabolic substrate availability. | Yu-Qing Wu Chen-Song Zhang Jinye Xiong Dong-Qi Cai Chen-Zhe Wang Yu Wang Yan-Hui Liu Yu Wang Yiming Li Jian Wu Jianfeng Wu Bin Lan Xuefeng Wang Siwei Chen Xianglei Cao Xiaoyan Wei Hui-Hui Hu Huiling Guo Yaxin Yu Abdul Ghafoor Changchuan Xie Yaying Wu Zheni Xu Cixiong Zhang Mingxia Zhu Xi Huang Xiufeng Sun Shu-Yong Lin Hai-Long Piao Jianyin Zhou Sheng-Cai Lin | 2023 | Cell Research2023,33,11: | 0 |
| 10 | Corrigendum to‘Decellularized disc hydrogels for hBMSC tissue-specific differentiation and tissue regeneration’[Bioactive Materials 6(2021)3541-3556]显示文摘The authors regret missing out the below change in the acknowledgment section of the article.The original sentence reads as'This work was supported by the Major Research Plan of National Natural Science Foundation of China[No.91649204],the National Key Research and Development Program of China[2016YFC1100100],…'and the same has been corrected to'This work was supported by the National Key Research and Development Program of China[2016YFC1100100],the Major Research Plan of National Natural Science Foundation of China[No.91649204],…'and the same has been corrected to'This work was supported by the National Key Research and Development Program of China[2016YFC1100100],the Major Research Plan of National Natural Science Foundation of China[No.91649204],…'. | Yizhong Peng Xiangcheng Qing Hui Lin Donghua Huang Jinye Li Shuo Tian Sheng Liu Xiao Lv Kaige Ma Rui Li Zilong Rao Ying Bai Songfeng Chen Ming Lei Daping Quan Zengwu Shao | 2022 | Bioactive Materials2022,7,2: | 0 |
| 11 | Peripheral actions and direct central-local communications of melanocortin 4 receptor signaling显示文摘Melanocortin 4 receptor(MC4R),the most important monogenetic cause of human metabolic disorders,has been of great interest to many researchers in the field of energy homeostasis and public health.Because MC4R is a vital pharmaceutical target for maintaining controllable appetite and body weight for professional athletes,previous studies have mainly focused on the central,rather than the peripheral,roles of MC4R.Thus,the local expression of MC4R and its behavioral regulation remain unclear.In an attempt to shed light on different directions for future studies of MC4R signaling,we review a series of recent and important studies exploring the peripheral functions of MC4R and the direct physiological interaction between peripheral organs and central MC4R neurons in this article. | Lei Li Jinye Liang Cong Zhang Tiemin Liu Chao Zhang | 2023 | Journal of Sport and Health Science2023,12,1: | 0 |
| 12 | Hierarchical inhibition of mTORC1 by glucose starvation-triggered AXIN lysosomal translocation and by AMPK显示文摘When glucose is replete,mammalian/mechanistic target of rapamycin complex 1(mTORC1)is active and anchored to the lysosomal surface via the two GTPases,Ras-related GTPase(RAG)and Ras homolog enriched in brain(Rheb),which are regulated by Ragulator and tuberous sclerosis complex 2(TSC2),respectively.When glucose is low,aldolase senses low fructose-1,6-bisphosphate level and promotes the translocation of AXIN−liver kinase B1(LKB1)to the lysosomal surface,which leads to the activation of AMP-activated protein kinase(AMPK)and the inhibition of RAGs,sundering mTORC1 from the lysosome and causing its inactivation.AMPK can also inactivate mTORC1 by phosphorylating Raptor and TSC2.However,the hierarchy of AXIN-and AMPK-mediated inhibition of mTORC1 remains poorly defined.Here,we show that AXIN translocation does not require AMPK expression or activity.In glucose starvation conditions,knockout of AXIN extended the half-life of mTORC1 inhibition from 15 to 60 min,whereas knockout of AMPK only extended it to 30 min.RAGBGTP(constitutively active RAGB)almost entirely blocked the lysosomal dissociation and inhibition of mTORC1 under glucose starvation,but it did not inhibit AMPK,indicating that under these conditions,it is AXIN lysosomal translocation that inhibits mTORC1,and it does so via inhibition of RAGs.5-aminoimidazole-4-carboxamide ribonucleoside(AICAR),a mimetic of AMP,which activates both cytosolic AMPK and lysosomal AMPK,fully inhibited mTORC1 even when it is stably anchored to the lysosome by RAGBGTP,whereas glucose starvation mildly inhibited such anchored mTORC1.Together,we demonstrate that the lysosomal translocation of AXIN plays a primary role in glucose starvation-triggered inhibition of mTORC1 by inhibiting RAGs,and that AMPK activity inhibits mTORC1 through phosphorylating Raptor and TSC2,especially under severe stress. | Mengqi Li Xiaoyan Wei Jinye Xiong Jin-Wei Feng Chen-Song Zhang Sheng-Cai Lin | 2023 | Life Metabolism2023,2,3: | 0 |