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排序方式: 共有643条查询结果,搜索用时 15 毫秒
1.
Cloning and expression of a cDNA encoding mouse indoleamine 2,3-dioxygenase   总被引:4,自引:0,他引:4  
A Habara-Ohkubo  O Takikawa  R Yoshida 《Gene》1991,105(2):221-227
The depletion of an essential amino acid (aa), tryptophan, caused by interferon-gamma (IFN-gamma)-mediated induction of indoleamine 2,3-dioxygenase (IDO) in mouse allografted tumor cells, has been suggested as a reason for the allograft rejection. To elucidate the mechanism of this IDO induction, attempts were made to isolate cDNA clones encoding mouse IDO. In seven of 25 mouse cell lines, IDO was induced by IFN-gamma, and the highest IDO induction was observed in the case of rectal cancer (CMT-93) cells, which were further stimulated two- to threefold by the simultaneous addition of dibutyryl cyclic AMP (Bt2cAMP). A cDNA library was prepared from poly(A)+ RNA isolated from CMT-93 cells treated with IFN-gamma/Bt2cAMP. The cDNA clones were isolated using the cDNA encoding human IDO as a probe. The mouse IDO cDNA encodes a 407-aa protein with an Mr of 45,639. The deduced aa sequence agreed with partial aa sequences derived from endopeptidase digestion of purified mouse IDO and revealed 61% homology with that of human IDO. Transient expression of the mouse IDO cDNA in COS-7 cells yielded a high level of IDO activity in the cells. Northern hybridization analysis of RNA in CMT-93 cells indicated that IFN-gamma induced the IDO mRNA, and that the level of RNA was increased by simultaneous addition of Bt2cAMP, while Bt2cAMP itself had no effect on mRNA induction.  相似文献   
2.
The bile acid binding properties of the newly identified bile acid binder (Mr = 36,000) (FEBS Lett. 1984. 177: 31-35) and the major cationic glutathione (GSH) S-transferase (Mr = 50,000) in human liver cytosol were compared. Binding affinities were measured by the competitive displacement by bile acids of 1-anilino-8-naphthalene sulfonate (ANS) bound to the proteins and, in some cases, by direct methods of flow dialysis and equilibrium dialysis. The binding affinities for various bile acids by the human bile acid binder were 2-5 orders of magnitude greater than those by human cationic GSH S-transferase. This suggests an important physiologic role for the former protein in intracellular transfer of bile acids in human liver.  相似文献   
3.
The presence of indolylamine 2,3-dioxygenase was examined in human subjects by determining its activity with L-tryptophan as substrate. Enzyme activity was detected in various tissues, and was relatively high in the lung, small intestine and placenta. Human indolylamine 2,3-dioxygenase, partially purified from the placenta, had an Mr of about 40 000 by gel filtration and exhibited a single pI of 6.9. The human enzyme required a reducing system, ascorbic acid and Methylene Blue, for maximal activity and was able to oxidize D-tryptophan, 5-hydroxy-L-tryptophan as well as L-tryptophan, but kinetic studies indicated that the best substrate of the enzyme was L-tryptophan.  相似文献   
4.
The depletion of an essential amino acid, tryptophan, caused by induction of indoleamine 2,3-dioxygenase (IDO), has been shown to be a mechanism involving self-defense against inhaled microorganisms and tumor growth. We recently reported that the IDO is dramatically (approximately 50-fold) induced in allografted tumor (3-methylcholanthrene-induced ascites type tumor cells) cells undergoing rejection, and that the enzyme is induced by factor(s) released through the interaction of allografted tumor cells with infiltrating leukocytes. The culture supernatant of infiltrating leukocytes, which were harvested on day 7 after tumor transplantation, induced the highest IDO activity in the tumor cells. The inducer activity was completely neutralized by the addition of antibody to IFN-gamma but not by antibody to IFN-alpha/beta. Approximately 6 U/ml of IFN-gamma was detected by an ELISA assay in the 12-h culture supernatant with 2 x 10(6) leukocytes/ml, and rIFN-gamma at 6 U/ml induced IDO in 3-methylcholanthrene-induced ascites type tumor cells to the same extent as IFN-gamma in the culture supernatant. Moreover, i.p. administration of antibody to IFN-gamma almost completely inhibited the induction of IDO in the allografted tumor cells. These observations indicate that the factor responsible for IDO induction in the allografted tumor cells is IFN-gamma.  相似文献   
5.
Acetylcholine, the first identified neurotransmitter, plays crucial roles in various brain functions. One well-known case is its involvement as an activating neurotransmitter in the regulation of locomotion. However, its inhibitory regulatory role, particularly in locomotion, remains poorly understood. In a study conducted by Polat et al., the authors investigated the inhibitory role of acetylcholine in locomotion in C. elegans. In this organism, the acetylcholine-gated chloride channel receptor consists of four subunits. The authors thoroughly examined the loss-of-function of each subunit in movement regulation. Interestingly, the mutant worms were still capable of performing various movements such as forward, backward crawling, and turning, suggesting that the overall movement was not significantly affected. However, quantitative behavior analysis revealed subtle yet significant differences in the timing and postures of the movement in these mutants. Furthermore, the authors employed optogenetics to stimulate a specific neuron involved in backward crawling and demonstrated that the loss-of-function of the receptors in individual neurons affects the transitioning between locomotion modes. This work provides evidence for the inhibitory regulatory role of acetylcholine in locomotion. The loss-of-function of acetylcholine-gated chloride channel receptors likely disrupts the balance of neuronal and circuit physiology, thereby affecting the regulation of locomotion. Moreover, this study highlights the powerful role of quantitative behavior analysis in discovering and understanding more sophisticated functions of neural circuits.  相似文献   
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啄木鸟科物种作为初级洞巢者与蛀干害虫控制者,对森林高度依赖,是森林生态系统重要的伞护种和环境指示物种。自20世纪以来,由于全球范围的栖息地丧失和片段化,啄木鸟科物种的森林生境急剧萎缩,威胁着该类群物种的生存和繁衍。为探究啄木鸟科动物濒危情况和研究现状,本研究利用世界自然保护联盟濒危物种红色名录(IUCN Red List)和国际鸟盟(BirdLife International)在线数据库,检索并整理出1988年到2023年以下内容:(1)全球啄木鸟的物种数、濒危等级及其变化情况;(2)各大洲的啄木鸟物种数及其受威胁物种的比例;(3)啄木鸟的主要威胁因素;(4)通过Google学术搜索等方式检索并统计啄木鸟相关文章的研究内容。结果显示:(1)目前现存254种啄木鸟,33年间全球受威胁啄木鸟由7种增加至18种,受威胁物种数占当年已命名啄木鸟物种数的比例由3.4%上升至7.0%。(2)亚洲、南美洲和北美洲各分布了83种、93种和56种啄木鸟,受威胁物种占比分别为12.0%、6.4%、5.3%。非洲和欧洲分别分布了36种和11种啄木鸟,当前没有受威胁物种。(3)农业和生物资源利用以及放牧是啄木鸟的主要威胁因素。(4)共检索到研究啄木鸟的有关文章1 024篇,研究覆盖了140种啄木鸟,其中,文章数最多的物种是红顶啄木鸟(Leuconotopicus borealis)(162篇)。研究主要集中在巢相关特征(129篇)、生境选择特征(122篇)、取食行为(112篇)、繁殖行为(99篇)和种群状况(66篇)等基础生态学内容。这些研究为啄木鸟生物学、生态学积累了一定的基础,但物种覆盖程度还远远不够。在生物多样性急剧丧失的大背景下,亟需开展更为广泛和深入的研究。本研究对全球啄木鸟的濒危格局与研究现状进行了全面的分析,以期为后续啄木鸟的研究与保护工作提供参考。  相似文献   
8.
为建立龙珠果(Passiflora foetida)的快繁再生体系,以实生苗茎段为外植体,研究了植物生长调节剂对丛生芽诱导、壮苗生根的影响,同时对组培苗的耐盐性进行研究.结果表明,MS+6-BA 0.5 mg/L+NAA 0.05 mg/L培养基有利于诱导丛生芽并促进芽的生长;MS+6-BA 3.0 mg/L+NAA ...  相似文献   
9.
为了解益智(Alpinia oxyphylla)多糖生物合成途径关键酶功能,对其茎、叶、果实中的多糖含量及其单糖组成进行了研究,并采用Real-Time qPCR分析了益智多糖生物合成关键酶基因的表达模式。结果表明,益智多糖含量依次为果实 > 叶 > 茎,主要由葡萄糖、木糖、甘露糖、半乳糖和阿拉伯糖组成;利用益智转录组数据共获得47 690条unigenes,其中31 892条在NR、Swiss-Prot、KEGG、COG、KOG、GO和Pfam数据库获得注释,其中208个unigenes参与益智多糖的生物合成,涉及15个酶。表达分析表明,所筛选的18个基因在茎、叶、果实中均有表达,14个基因在果实中的表达量最高,以糖基转移酶基因和UDP-葡萄糖焦磷酸化酶基因的表达量最高,且其表达模式与不同组织中葡萄糖含量的变化一致。  相似文献   
10.
民勤绿洲生态需水与生态恢复对策   总被引:15,自引:1,他引:15  
生态需水是当前水问题的一个研究热点,对于生态环境急剧恶化的内陆干旱区,这一研究尤为紧迫。以民勤绿洲作为研究区,采用阿维里扬诺夫估算方法,对其生态需水量进行了计算。结果表明,民勤绿洲现有植被最低生态需水量为1.4927×108m3,而目前的生态用水量只有0.3525×108m3,远没有达到维持极限抗性面积下的生态需水量。民勤绿洲生态用水的严重不足,主要是受到农田灌溉用水的严重挤占,从而加快了生态环境的日益恶化。通过分析,提出了生态恢复的对策与建议。  相似文献   
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