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1.
东方田鼠对血吸虫具有天然抗性。为筛选和分析东方田鼠抗血吸虫抗性相关基因, 以日本血吸虫童虫可溶性裂解物为探针, 筛选东方田鼠肝脏噬菌体展示cDNA文库。经三轮筛选, 特异性噬菌体得到有效富集(375倍)。随机挑取92个克隆进行序列测定, 获得了19条有效EST序列。其中13个条EST序列与已知基因或表达序列标签同源, 6个EST序列与已知基因或表达序列标签均无同源性, 为新的表达序列标签。将19个EST序列的阳性噬菌体克隆和血吸虫童虫共培养, 其中4号(GenBank Accession No.: EW968294)、13号(GenBank Accession No.: EW968303)、14号(GenBank Accession No.: EW968304)、15号(GenBank Accession No.: EW968305)、18号(GenBank Accession No.: EW968308)克隆均诱导了显著的杀虫效果。综合生物信息学分析结果及体外杀伤试验结果, 编码CASP8和FADD类似性细胞程序性死亡调节蛋白、a-2-HS-糖蛋白、M4蛋白、具有R3H结构域的一种mRNA结合蛋白以及三种未知蛋白的编码基因(14、15、18号克隆)可能是东方田鼠抗血吸虫病抗性相关基因。为进一步研究东方田鼠抗血吸虫机理奠定了基础。  相似文献   

2.
东方田鼠对血吸虫具有天然抗性。为筛选和分析东方田鼠抗血吸虫抗性相关基因, 以日本血吸虫童虫可溶性裂解物为探针, 筛选东方田鼠肝脏噬菌体展示cDNA文库。经三轮筛选, 特异性噬菌体得到有效富集(375倍)。随机挑取92个克隆进行序列测定, 获得了19条有效EST序列。其中13个条EST序列与已知基因或表达序列标签同源, 6个EST序列与已知基因或表达序列标签均无同源性, 为新的表达序列标签。将19个EST序列的阳性噬菌体克隆和血吸虫童虫共培养, 其中4号(GenBank Accession No.: EW968294)、13号(GenBank Accession No.: EW968303)、14号(GenBank Accession No.: EW968304)、15号(GenBank Accession No.: EW968305)、18号(GenBank Accession No.: EW968308)克隆均诱导了显著的杀虫效果。综合生物信息学分析结果及体外杀伤试验结果, 编码CASP8和FADD类似性细胞程序性死亡调节蛋白、a-2-HS-糖蛋白、M4蛋白、具有R3H结构域的一种mRNA结合蛋白以及三种未知蛋白的编码基因(14、15、18号克隆)可能是东方田鼠抗血吸虫病抗性相关基因。为进一步研究东方田鼠抗血吸虫机理奠定了基础。  相似文献   

3.
利用表达克隆法,从东方田鼠骨髓细胞中克隆出抗日本血吸虫抗性相关基因.首先提取高质量的mRNA,逆转录成cDNA,将cDNA与哺乳动物细胞瞬时表达载体pcDNA1.1/Amp连接,建立表达cDNA文库;将cDNA文库分成A—H8个基因池,转染HEK293细胞,48h后收集培养上清,获得条件培养基.将条件培养基与日本血吸虫童虫一起培养,观察杀虫效应,取对童虫抑制作用最强的基因池E再分成8个亚基因池E1-8,分别转染HEK293细胞,并将条件培养基与血吸虫童虫一起培养,获得具有明显抑制血吸虫童虫活性的亚基因池E77,按上述方法反复进行筛选,直到获得有抑制作用的单个克隆,该技术的建立为克隆东方田鼠抗日本血吸虫抗性相关基因以及研究其作用机制奠定基础.  相似文献   

4.
本研究克隆和表达了日本血吸虫Cyclophilin B(Sj CyPB)编码基因的cDNA,分析其在日本血吸虫不同发育阶段虫体的表达情况,评估该重组抗原在小鼠体内诱导的抗血吸虫免疫保护效果。本研究以日本血吸虫童虫cDNA为模板,RT-PCR扩增其基因全长cDNA,提交序列到NCBI,登录号为GQ403665。荧光实时定量PCR分析该基因在日本血吸虫不同发育阶段虫体的表达情况,构建重组表达质粒,表达纯化重组蛋白。利用Western blotting检测重组蛋白的抗原性。以重组抗原免疫小鼠,评估其对小鼠诱导的免疫保护效果。结果表明,RT-PCR获得了Sj CyPB编码基因的全长cDNA,其开放阅读框为672bp。经分析确定其为CyPs家族中的CyPB基因,命名为Sj CyPB。荧光实时定量PCR分析表明,该基因在18d童虫期表达量最高,32d次之。构建了重组表达质粒pGEX-6P-1-SjCyPB,并在大肠杆菌中成功表达,表达产物分子量为49.5kDa。Western blotting试验显示该重组蛋白具有良好的抗原性,在小鼠免疫试验中,与空白对照组比较,免疫组小鼠获得31.5%的减虫率和41.01%的肝脏减卵率。本研究获得了日本血吸虫童虫期高表达的Sj CyPB基因的全长cDNA,成功构建了Sj CyPB原核重组表达质粒,并在大肠杆菌中成功表达,证实该重组抗原在小鼠体内诱导产生了部分免疫保护效果。  相似文献   

5.
目的研究东方田鼠感染日本血吸虫后肝、肺组织病理改变及相关基因表达差异,为进一步研究东方田鼠抗血吸虫机制提供依据。方法东方田鼠感染日本血吸虫尾蚴(2000条/只),取对照组东方田鼠和感染血吸虫后第6、10、15、20、30天肺、肝组织样品,HE染色后进行病理观察,并提取肺和肝总RNA,对Lyz、RT1-Db1、Cd74、C1qa、Thra、Igf1基因进行实时荧光定量PCR检测,比较其在肝脏和肺脏的动态表达水平。结果东方田鼠感染血吸虫后6~10d,肺部有大量出血点,肝细胞空泡变性,肝窦高度扩张,肺和肝组织内血管周围及管腔均有大量嗜酸性粒细胞及少量中性粒细胞、巨噬细胞等炎性细胞浸润,至第20天逐渐恢复。从感染后第6天开始,Lyz、RT1-Db1、Cd74基因在肺和肝内表达均明显上调,在第20天后逐渐恢复,C1qa基因在肺内表达上调,Thra基因在肺内表达下调,Igf1基因肝内表达下调。结论在东方田鼠抗血吸虫感染的过程中,嗜酸性粒细胞发挥了非常重要的作用,相关基因在东方田鼠抗血吸虫感染的过程中可能发挥一定的作用。  相似文献   

6.
目的建立东方田鼠胚胎成纤维永生化细胞系,为全面研究东方田鼠抗日本血吸虫机制以及开展不同动物成纤维细胞间比较研究奠定基础和提供细胞实验材料。方法运用脂质体介导的基因转染法将pSV3neo质粒导入第3代东方田鼠胚胎成纤维细胞,经G418筛选抗性克隆并扩大培养,建立永生化细胞系;用PCR检测细胞株中SV40T基因的整合,RT-PCR鉴定SV40T基因在转染细胞中的表达;绘制东方田鼠胚胎成纤维永生化细胞生长曲线。结果阳性细胞克隆已扩大培养并稳定传代50代,经鉴定SV40T抗原已整合到东方田鼠胚胎成纤维细胞中且稳定表达。结论成功建立东方田鼠胚胎成纤维永生化细胞系。  相似文献   

7.
目的比较实验室条件下饲养的东方田鼠和野外捕捉东方田鼠肝脏的基因表达差异,寻找可能参与肝脏病变的关键基因。方法以实验室条件饲养的东方田鼠和野外捕捉东方田鼠为研究对象,分别抽提RNA,逆转录成cDNA,体外转录为cRNA并进行片段化;利用表达谱芯片分别进行杂交,扫描后筛选差异基因,并应用real-time PCR方法对部分基因的表达水平进行进一步测定,验证芯片数据的结果。结果实验室饲养东方田鼠肝组织与野外捕捉东方田鼠相比,共有99个基因和41个EST差异表达。其中参与机体代谢的基因占主导,约占35.4%;其次为参与信号通路的基因,约占24.2%;参与细胞周期和免疫的基因分别占6.1%和3.0%。结论利用基因表达谱芯片初步筛选了可能参与东方田鼠脂肪肝形成过程的基因,发现机体代谢通路的基因占主导,肝脏中细胞色素家族基因表达差异明显。  相似文献   

8.
钙结合蛋白是日本血吸虫生长发育不可缺少的蛋白,具有非常广泛而重要的功能.在课题组日本血吸虫体被表膜蛋白研究基础上,利用PCR技术克隆了中国大陆株日本血吸虫66 kDa钙结合蛋白(SjIrV1)编码基因的cDNA序列,BLAST分析与菲律宾株日本血吸虫SjIrV1 cDNA编码序列一致,荧光定量PCR分析表明该基因在童虫和成虫期不同发育阶段均有表达,其中在35d和42d成虫中表达量较高,在42d雌虫中该基因表达水平远高于42d雄虫.构建重组表达质粒pET28a(+)-SjIrV1,在大肠杆菌中成功诱导表达,重组蛋白主要以可溶性形式存在,通过高效液相色谱法(RP-HPLC)以及串联质谱法(MS/MS)鉴定所获蛋白为目的蛋白SjIrV1.蛋白质印迹(Western blotting)分析结果显示重组蛋白能被感染日本血吸虫鼠血清和免疫鼠血清所识别,SjIrV1蛋白在虫体各发育阶段中均表达.免疫荧光染色实验观察表明SjIrV1主要分布在日本血吸虫成虫的表膜.应用重组蛋白免疫BALB/c小鼠后,免疫鼠血清中检测到较高水平的特异性IgG、IgG1和IgG2a抗体.结果表明SjIrV1可能在日本血吸虫的生长发育过程中起着重要作用.  相似文献   

9.
研究了所克隆的日本血吸虫两个基因的性别间的表达差异性。分别将所克隆到的编码日本血吸虫抱雌沟蛋白的cDNA(SjGCP1)和肌动蛋白的cDNA(SjAct)制成DNA探针,利用Southern blotting,Northern blotting和斑点印迹法对其相应基因性别间的表达差异性进行了研究。结果显示,日本血吸虫抱雌沟蛋白的基因在雄虫中转录而雌虫中不转录,血吸虫肌动蛋白基因在雄虫中转录量高于雌虫,表现出转录量的差异。证明这两个基因转录具有性别间的表达差异性。  相似文献   

10.
东方田鼠特异DNA片段的克隆及核苷酸序列分析   总被引:12,自引:1,他引:11  
目的获得东方田鼠的特异DNA序列.方法Aβ基因使用PCR,基因克隆,斑点杂交,DNA序列分析,生物信息学技术.结果根据小鼠MHCⅡ外显子2及其两侧序列,合成引物并扩增东方田鼠基因组DNA,将PCR产物回收、测序后,分别设计内引物扩增东方田鼠基因组DNA,其中一对引物可得到特异性扩增带,将得到的DNA片段插入PGEM-Teasy载体,进行序列分析.用这对引物扩增人、昆明小鼠、BALB/c小鼠及C57BL/6J小鼠基因组DNA,均无扩增产物.以东方田鼠特异性扩增产物为探针进行斑点杂交,除东方田鼠基因组DNA外,其他几种动物基因组DNA均为阴性结果.进一步对该DNA片段进行了BLAST同源性搜索和外显子预测,在Genbank中没有发现高度同源序列,并且找到一个可能的外显子,该外显子由69个氨基酸组成.结论获得的DNA片段为东方田鼠的特异片段,这将为从分子水平深入研究东方田鼠的遗传背景、生物进化规律以及东方田鼠抗日本血吸虫的机理奠定基础.  相似文献   

11.
The goal of this article was to establish reference ranges of the concentration of trace elements in human serum and to compare these results with those reported by other authors. We describe the sample preparation and measurement conditions that allow the rapid, precise, and accurate determination of Al, As, B, Be, Cd, Co, Cu, Fe, Li, Mn, Mo, Ni, Rb, Se, Sr, and Zn in human serum samples (n=110) by inductively coupled plasma-mass spectrometry (ICP-MS). Accuracy and precision were determined by analyzing three reconstituted reference serum samples by comparison with other methods and by the standard addition procedure. The advantages of the ICP-MS method include short time of analysis of the elements mentioned, low detection limit, high precision, and high accuracy. Disadventages include a high risk of contamination due to the presence of some of the elements of interest in the environment, the relatively delicate sample handling, and the high cost of the equipment.  相似文献   

12.
Summary Concentration of N, P, K, Ca, Mg and S in summer groundnut crop was higher than in kharif while Zn, Fe, Mn and Cu contents were higher in summer crop. Kernel's N, P and Zn; Leaflet's Ca and Mn; Stem's K and Fe; Root's S and Cu and Petiole's Mg contents were highest. Shell's N, P, K, Mg, S, Zn and Cu; Kernel's Ca, Fe and Mn contents were the least. N, P, K, S, Zn and Cu concentrations decreased linearly as the crop grew. Ca, Mg, Fe and Mn concentrations did not display any distinct pattern. Ca concentration was positively correlated with pod yield in both the seasons.  相似文献   

13.
A new polynitro cage compound 2, 4, 6, 8, 10, 12, 13, 14, 15-nonanitro-2, 4, 6, 8, 10, 12, 13, 14, 15-nonaazaheptcyclo [5.5.1.1(3,11).1(5,9)] pentadecane (NNNAHP) was designed in the present work. Its molecular structure was optimized at the B3LYP/6-31 G(d,p) level of density functional theory (DFT) and crystal structure was predicted using the Compass and Dreiding force fields and refined by DFT GGA-RPBE method. The obtained crystal structure of NNNAHP belongs to the P-1 space group and the lattice parameters are a = 9.99 ?, b = 10.78 ?, c = 9.99 ?, α = 90.01°, β = 120.01°, γ = 90.00°, and Z = 2, respectively. Based on the optimized crystal structure, the band gap, density of state, thermodynamic properties, infrared spectrum, strain energy, detonation characteristics, and thermal stability were predicted. Calculation results show that NNNAHP has detonation properties close to those of CL-20 and is a high energy density compound with moderate stability.  相似文献   

14.
This report attempts to formulate reference ranges of elemental concentrations for 15 trace elements in selected human tissues and body fluids. A set of samples consisting of whole blood, blood serum, urine, milk, liver, and hair were chosen and considered for 15 elements of biological significance: As, Cd, Co, Cr, Cu, F, Fe, I, Hg, Mn, Mo, Ni, Pb, Se, and Zn. The results represent wholly or partially data received from 40 countries of the global regions of Africa, Asia, Europe, North, South, and Central America, Australia, and New Zealand. This survey, even if qualitative, has been useful in demonstrating certain trends of trace-element scenarios around the world. It is of course recognized that both diet and environment exert a strong influence on the distribution pattern of several elements, such as As, Cd, Mn, Pb, Se, and Zn. A limited comparison of the available information on soil status of different countries reflected some interesting associations for elements, such as Mn and Zn. Importantly, this study revealed that only a few countries were in a position to identify a reasonable amount of data on samples requested for this project. Regretably, for a number of countries, any dependable data for even such essential elements as Cu, Fe, and Zn were not available. In view of the nutritional importance of many elements, the time is ripe for concerted efforts by intergovernmental agencies to initiate investigations or commission task forces/projects to generate reliable reference data for selected global regions, which sadly lack data of any kind at present.  相似文献   

15.
16.
The variation with age of the 18 trace element mass fractions and some histological characteristics of intact prostate glands of 50 subjects aged 0–30 years was investigated by instrumental neutron activation analysis, inductively coupled plasma atomic emission spectrometry, and a quantitative morphometric analysis. Mean values ± standard error of the mean (M ± SΕΜ) for the mass fractions (in milligrams per kilogram wet tissue) of these trace elements in pre-puberty were: Al 28.5 ± 9.0, B 0.40 ± 0.11, Ba 1.48 ± 0.44, Br 10.5 ± 1.5, Ca 241 ± 30, Cl 3,203 ± 278, Cu 3.51 ± 0.89, Fe 33.7 ± 4.1, K 2,364 ± 145, Li 0.020 ± 0.004, Mg 153 ± 23, Mn 0.46 ± 0.06, Na 2,286 ± 130, P 1,391 ± 100, S 1,698 ± 132, Si 62 ± 11, Sr 0.38 ± 0.08, and Zn 27.6 ± 2.3. During puberty and postpuberty, when there is a significant increase in circulating androgens, the mean values were: Al 7.2 ± 1.4, B 0.21 ± 0.05, Ba 0.25 ± 0.06, Br 5.8 ± 1.0, Ca 433 ± 81, Cl 2,314 ± 201, Cu 1.77 ± 0.13, Fe 20.9 ± 1.6, K 2,585 ± 118, Li 0.0088 ± 0.0014, Mg 232 ± 27, Mn 0.34 ± 0.04, Na 1,875 ± 107, P 1,403 ± 98, S 1,673 ± 73, Si 22.2 ± 3.1, Sr 0.22 ± 0.03, and Zn 93.3 ± 8.9. Mean values (M ± SΕΜ) of percent volumes (%) of the stroma, epithelium and lumen in the prostate before puberty were 73.4 ± 2.6, 20.4 ± 1.7, and 4.45 ± 0.94, respectively, versus 46.5 ± 2.5, 38.5 ± 1.9, and 14.9 ± 1.2 during puberty and postpuberty. This work’s results confirm that the Zn mass fraction in prostate tissue is an androgen-dependent parameter. For the first time it has been demonstrated that the glandular lumen is a main pool of Ca, Mg, and Zn accumulation and that the stroma is a main pool of Al, B, Ba, Br, Cl, Cu, Fe, Mn, Na, and Si accumulation in the normal human prostate, for the age range 0–30 years. It was concluded that the Ca, Mg, and Zn binds tightly within the prostatic fluid, because the volume of glandular lumen reflects the volume of prostatic fluid.  相似文献   

17.
The unitary conductances and permeability sequences of the rat connexin40 (rCx40) gap junction channels to seven monovalent cations and anions were studied in rCx40-transfected neuroblastoma 2A (N2A) cell pairs using the dual whole cell recording technique. Chloride salt cation substitutions (115 mM principal salt) resulted in the following junctional maximal single channel current-voltage relationship slope conductances (γj in pS): CsCl (153), RbCl (148), KCl (142), NaCl (115), LiCl (86), TMACl (71), TEACl (63). Reversible block of the rCx40 channel was observed with TBA. Potassium anion salt γj are: Kglutamate (160), Kacetate (160), Kaspartate (158), KNO3 (157), KF (148), KCl (142), and KBr (132). Ion selectivity was verified by measuring reversal potentials for current in rCx40 gap junction channels with asymmetric salt solutions in the two electrodes and using the Goldman-Hodgkin-Katz equation to calculate relative permeabilities. The permeabilities relative to Li+ are: Cs+ (1.38), Rb+ (1.32), K+ (1.31), Na+ (1.16), TMA+ (0.53), TEA+ (0.45), TBA+ (0.03), Cl (0.19), glutamate (0.04), and NO3− (0.14), assuming that the monovalent anions permeate the channel by forming ion pairs with permeant monovalent cations within the pore thereby causing proportionate decreases in the channel conductance. This hypothesis can account for why the predicted increasing conductances with increasing ion mobilities in an essentially aqueous channel were not observed for anions in the rCx40 channel. The rCx40 effective channel radius is estimated to be 6.6 Å from a theoretical fit of the relationship of relative permeability and cation radius.  相似文献   

18.
The effect of age and gender on major, minor, and trace element contents in the intact rib bone of 80 relatively healthy 15–55-year-old women and men was investigated. Contents or upper limit of contents of 16 chemical elements in the rib bone were determined by inductively coupled plasma atomic emission spectrometry (ICP-AES). Mean values (M?±?SΕΜ) for the mass fraction of Ba, Ca, Cu, Fe, K, Li, Mg, Na, P, S, Sr, and Zn (milligram per kilogram of dry bone) were as follows: 2.54?±?0.16, 171,400?±?4,050, 1.35?±?0.22, 140?±?11, 1,874?±?71, 0.049?±?0.011, 2,139?±?38, 5,378?±?88, 75,140?±?1,660, 1,881?±?51, 291?±?20, and 92.8?±?1.5, respectively. The upper limits of contents of Al, B, Mn, and V were <7.20, <0.65, <0.36, and <0.03, respectively. Statistically significant tendency for the Ca, Mg, and P content to decrease with age was found in the human rib bone, regardless of gender. The mass fraction of Fe in the male rib bone increases with age. It was shown that higher Ca, Mg, Na, P, and Sr mass fractions as well as lower Fe content were typical of female ribs as compared to those in male ribs.  相似文献   

19.
Nine blood group systems of goats were identified using 12 caprine reagents produced by absorption of alloimmune antisera. The caprine C blood group system, possibly homologous to the ovine C blood group system, was characterized by two reagents and shown to be controlled by three alleles,C 12,C 25, andC . A more complex blood group system of goats, designated G, was identified using three reagents and shown to be controlled by six codominant alleles (G 10.19.20,G 10.19,G 10.20,G 10,G 19,G 20) and a recessive allele (G ). A further seven one-factor two-allelic systems were identified by seven reagents. The nine genetic systems provided exclusion probabilities of 0.479, 0.492, 0.548, and 0.572 in Australian Angora, Dairy, Cashmere, and Texan Angora goat breeds, respectively. This work was supported by a grant from the Australian Stud Book, Alison Road, Randwick, New South Wales 2031, Australia.  相似文献   

20.
《Ibis》1894,36(3):447-460
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