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In-depth structural characterization of lipids is an essential component of lipidomics. There has been a rapid expansion of mass spectrometry methods that are capable of resolving lipid isomers at various structural levels over the past decade. These developments finally make deep-lipidotyping possible, which provides new means to study lipid metabolism and discover new lipid biomarkers. In this review, we discuss recent advancements in tandem mass spectrometry (MS/MS) methods for identification of complex lipids beyond the species (known headgroup information) and molecular species (known chain composition) levels. These include identification at the levels of carbon-carbon double bond (C=C) location and sn-position, as well as characterization of acyl chain modifications. We also discuss the integration of isomer-resolving MS/MS methods with different lipid analysis workflows and their applications in lipidomics. The results showcase the distinct capabilities of deep-lipidotyping in untangling the metabolism of individual isomers and sensitive phenotyping by using relative fractional quantitation of the isomers. 相似文献
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Legall H Stiel H Beck M Leupold D Gruszecki WI Lokstein H 《Journal of biochemical and biophysical methods》2007,70(3):369-376
Peridinin-chlorophyll a protein (PCP) is a unique water soluble antenna complex that employs the carotenoid peridinin as the main light-harvesting pigment. In the present study the near edge X-ray absorption fine structure (NEXAFS) spectrum of PCP was recorded at the carbon K-edge. Additionally, the NEXAFS spectra of the constituent pigments, chlorophyll a and peridinin, were measured. The energies of the lowest unoccupied molecular levels of these pigments appearing in the carbon NEXAFS spectrum were resolved. Individual contributions of the pigments and the protein to the measured NEXAFS spectrum of PCP were determined using a “building block” approach combining NEXAFS spectra of the pigments and the amino acids constituting the PCP apoprotein. The results suggest that absorption changes of the pigments in the carbon near K-edge region can be resolved following excitation using a suitable visible pump laser pulse. Consequently, it may be possible to study excitation energy transfer processes involving “optically dark” states of carotenoids in pigment-protein complexes by soft X-ray probe optical pump double resonance spectroscopy (XODR). 相似文献
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MRN复合物包括MRE11、NBS1、RAD50,此复合物中的MRE11或NBS1缺失或突变会导致人的共济失调一毛细血管扩张样疾病、Nijmegen断裂综合征。MRN复合物在DNA双链损伤修复、同源重组、非同源重组、端粒长度维持、细胞检验点激活、保证DNA复制的顺利进行,以及维持基因组的稳定性等方面都起到了重要的作用。从以上几个方面简要综述MRN复合物的研究进展。 相似文献
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Natural killer (NK) cells are important effectors in resistance to viral infections. The role of NK cells in the acute response to human immunodeficiency virus 1 (HIV-1) infected cells was investigated in a mouse model based on a HIV-1/murine leukemia virus (MuLV) pseudovirus. Splenocytes infected with HIV-1/MuLV were injected intraperitoneally and local immunologic responses and persistence of infected cells were investigated. In vivo depletion with an anti-NK1.1 antibody showed that NK cells are important in resistance to virus infected cells. Moreover, NK cell frequency in the peritoneal cavity increased in response to infected cells and these NK cells had a more mature phenotype, as determined by CD27 and Mac-1 expression. Interestingly, after injection of HIV-1/MuLV infected cells, but not MuLV infected cells, peritoneal NK cells had an increased cytotoxic activity. In conclusion, NK cells play a role in the early control of HIV-1/MuLV infected cells in vivo. 相似文献
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MicroPET观察姜黄素对APPswe/PS1dE9双转基因小鼠脑葡萄糖代谢的影响 总被引:1,自引:0,他引:1
目的利用18氟-脱氧葡萄糖microPET(18F-FDG microPET)影像学技术观察正常对照组小鼠,模型组和姜黄素治疗组APPswe/PS1dE9双转基因小鼠的脑葡萄糖代谢情况。方法随机挑选6月龄正常对照组C57BL/6J小鼠3只,模型组和姜黄素治疗组APPswe/PS1dE9双转基因小鼠各3只,通过2%异氟烷吸入麻醉后,从尾静脉弹丸式注射放射性示踪剂18F-FDG每例约14.8~16.5 MBq,摄取45 min后进行10 min microPET图像采集。计算并比较各组小鼠每克脑组织(除小脑)18F-FDG的摄取率。结果姜黄素治疗组小鼠每克脑组织18F-FDG的摄取率高于正常对照组和模型组。结论姜黄素能明显提高APPswe/PS1dE9双转基因小鼠脑18 F-FDG的摄取及每克脑组织的摄取率,并可能通过影响脑葡萄糖代谢而发挥神经保护作用。 相似文献
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Enrichment of a common wheat genetic map and QTL mapping for fatty acid content in grain 总被引:2,自引:0,他引:2
Ying-ying Wang Xian-yin Sun Yan Zhao Fan-mei Kong Ying Guo Gui-zhi Zhang Yan-yan Pu Ke WuSi-shen Li 《Plant science》2011,181(1):65-75
DArT and SSR markers were used to saturate and improve a previous genetic map of RILs derived from the cross Chuan35050 × Shannong483. The new map comprised 719 loci, 561 of which were located on specific chromosomes, giving a total map length of 4008.4 cM; the rest 158 loci were mapped to the most likely intervals. The average chromosome length was 190.9 cM and the marker density was 7.15 cM per marker interval. Among the 719 loci, the majority of marker loci were DArTs (361); the rest included 170 SSRs, 100 EST-SSRs, and 88 other molecular and biochemical loci. QTL mapping for fatty acid content in wheat grain was conducted in this study. Forty QTLs were detected in different environments, with single QTL explaining 3.6-58.1% of the phenotypic variations. These QTLs were distributed on 16 chromosomes. Twenty-two QTLs showed positive additive effects, with Chuan35050 increasing the QTL effects, whereas 18 QTLs were negative with increasing effects from Shannong483. Six sets of co-located QTLs for different traits occurred on chromosomes 1B, 1D, 2D, 5D, and 6B. 相似文献
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Met-Lys-双C肽人胰岛素原基因的构建表达及分离纯化 总被引:2,自引:0,他引:2
应用 P C R 定点突变方法构建编码 M et Lys 双 C 肽人胰岛素原基因,并在大肠杆菌中以包含体方式获得表达 表达产物经还原、重组、 Sephadex G 75 分离纯化,获得 M et Lys 双 C 肽人胰岛素原,经胰蛋白酶与羧肽酶 B的酶解, Resource T M Q 阴离子交换柱层析分离制备得人胰岛素,其放免活性、受体结合活性均与猪胰岛素相同 相似文献
30.
Yan Liu Zhiqiang Yan Ni Chen Xiaotang Di Junjun Huang Guangqin Guo 《Genesis (New York, N.Y. : 2000)》2010,48(8):466-478
The central cell characterizes the angiosperm female gametophyte (embryo sac or megagametophyte) in that it directly participates in “double fertilization” to initiate endosperm development, a feature distinguishing angiosperm from all other plant taxa. Polygonum‐type central cell is a binucleate cell that, upon fertilization with one of the two sperm cells, forms triploid endosperm to nourish embryo development. Although the formation and the structure of central cell have well been elucidated, the molecular mechanisms for its specification and development remain largely unknown. The central cell plays a critical role in pollen tube guidance during pollination and in endosperm initiation after fertilization. Recently, a group of mutants affecting specific steps of central cell development and function have been identified, providing some clues in understanding these questions. This review summarizes our current knowledge about central cell development and function, and presents overview about hypotheses for its evolution. genesis 48:466–478, 2010. © 2010 Wiley‐Liss, Inc. 相似文献