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植物细胞活性氧种类、代谢及其信号转导   总被引:6,自引:0,他引:6  
越来越明显的证据表明,植物体十分活跃的产生着活性氧并将之作为信号分子、进而控制着诸如细胞程序性死亡、非生物胁迫响应、病原体防御和系统信号等生命过程,而不仅是传统意义上的活性氧是有氧代谢的附产物。日益增多的证据显示,由脱落酸、水杨酸、茉莉酸与乙烯以及活性氧所调节的激素信号途径,在生物和非生物胁迫信号的“交谈”中起重要作用。活性氧最初被认为是动物吞噬细胞在宿主防御反应时所释放的附产物,现在的研究清楚的表明,活性氧在动物和植物细胞信号途径中均起作用。活性氧可以诱导细胞程序性死亡或坏死、可以诱导或抑制许多基因的表达,也可以激活上述级联信号。近来生物化学与遗传学研究证实过氧化氢是介导植物生物胁迫与非生物胁迫的信号分子,过氧化氢的合成与作用似乎与一氧化氮有关系。过氧化氢所调节的下游信号包括钙“动员”、蛋白磷酸化和基因表达等。  相似文献   

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Abstract 23 Strains of diazotrophic root-associated bacteria isolated from various parts of Finland were tested for nitrogenase activity during growth at various temperatures. Nitrogenase activity was optimal at 20–37°C in cultures of Klebsiella pneumoniae , and at 14–20°C in cultures of Klebsiella terrigena and Enterobacter agglomerans . Strains of K. terrigena and E. agglomerans showed no activity at 37°C, and K. pneumoniae only minimal or no activity at 14°C. Azospirillum lipoferum exhibited high nitrogenase activity at both 28–37°C, but less than 25% of optimal activity at 20°C and no activity at 14°C. Pseudomonas sp. expressed nitrogenase activity at 14–28°C. None of the strains manifested nitrogenase activity at 4 or 42°C. There were only small local variations within a species between strains isolated at different locations.  相似文献   

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将水培后盆栽的花生幼苗,置于培养箱42℃高温培养,定时测定幼苗叶光合速率、叶绿素含量和叶绿体Ca^2+-ATPase、Mg^2+-ATPase的相对活性,并观察幼叶细胞内Ca^2+分布的变化。试验结果表明:高温胁迫过程中,光合速率及叶绿素含量都随处理时间的延伸而下降,并呈显著正相关;叶绿体Ca^2+-ATPase和Mg^2+-ATPase高温胁迫过程中相对活性呈先升后降趋势,Ca^2+-ATPase热敏性高于Mg^2+-ATPase;高温胁迫过程中,Ca^2+具有从胞外转运到胞质内和叶绿体中的趋势,Ca^2+能够稳定高温胁迫下叶肉细胞膜和叶绿体的超微结构。  相似文献   

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《Molecular cell》2022,82(11):1992-2005.e9
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目的在非小细胞肺癌中检测乳腺癌易感基因(BRCA2)的表达和ER、PR及c-erbB-2蛋白表达特点,探讨BRCA2的表达与ER、PR及c-erbB-2之间的相关性。方法免疫组织化学SP法检测了42例手术切除的非小细胞肺癌中ER、PR、c-erbB-2和BRCA2蛋白表达,根据各种临床病理因素分组进行BRCA2表达阳性率统计学分析。结果BRCA2蛋白表达阳性15例(35.7%);BRCA2蛋白表达阳性率在大于或等于60岁与小于60岁两年龄组间、男女组间、鳞状细胞癌组与腺癌组间及其分化程度以及c-erbB-2表达阳性组与阴性组间比较有显著性差异(P〈0.01);而在有无淋巴结转移组间BRCA2蛋白表达阳性率比较无显著性差异(P〉0.05);ER、PR在所有非小细胞肺癌病例中均为阴性。结论非小细胞肺癌可见BRCA2和c-erbB-2的表达,其两者的表达具有相关性,可能存在协同作用。提示BRCA2和c-erbB-2可作为反映非小细胞肺癌恶性特征的一个检测指标。  相似文献   

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Mutations in leucine-rich repeat kinase-2 (LRRK2) are the most common genetic cause of Parkinson’s disease (PD). The most frequent kinase-enhancing mutation is the G2019S residing in the kinase activation domain. This opens up a promising therapeutic avenue for drug discovery targeting the kinase activity of LRRK2 in PD. Several LRRK2 inhibitors have been reported to date. Here, we report a selective, brain penetrant LRRK2 inhibitor and demonstrate by a competition pulldown assay in vivo target engagement in mice.  相似文献   

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目的:通过研究COX-2、PGE2、EP2受体及小胶质细胞在甲基苯丙胺中毒大鼠纹状体内的表达变化探讨甲基苯丙胺中毒大鼠纹状体中COX-2/PGE2系统与小胶质细胞活化之间的关系。方法:将40只健康成年雄性SD大鼠,随机分成对照组10只和实验组30只(实验组分成三个亚组,分为末次给药后1天组、2天组和3天组,n=10)。实验组给予10mg/kg的MA腹腔注射,对照组给予同样剂量的生理盐水,每天注射两次,注射时间为8:00、20:00,连续注射4天。分别于末次给药后的第1天、第2天、第3天处杀。用免疫组化技术对中毒大鼠纹状体(CPU)中COX-2、EP2受体及Iba1(钙离子接头蛋白,小胶质细胞内一种特异性标记物)的表达进行检测,并进行图像分析。另外,取大鼠的纹状体运用酶联免疫法检测PGE2的含量。结果:COX-2、PGE2、EP2受体及小胶质细胞在各组均有表达。与对照组相比,实验组中:COX-2、PGE2、EP2受体的1天组表达均不同程度下降;2天组中COX-2表达水平大幅度上升,PGE2、EP2受体表达仍低于正常水平;3天组COX-2表达水平继续升高,而PGE2、EP2受体表达趋于正常组水平。而小胶质细胞表达水平则是三个实验组均高于正常组,且3天组高于2天组,2天组高于1天组。对照组与实验组有显著性差异(P<0.05)。结论:COX-2/PGE2系统与甲基苯丙胺中毒大鼠纹状体内小胶质细胞活化无明显相关性;COX-2与甲基苯丙胺的神经毒性有关。  相似文献   

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SRC homology 2 (SH2)-containing inositol 5′-phosphatase protein (SHIP2) is a potential target for type 2 diabetes. Its ability to dephosphorylate the lipid messenger phosphatidylinositol 3,4,5-trisphosphate [PtdIns(3,4,5)P3], important for insulin signaling, makes it an important target against type 2 diabetes. The insulin-induced SHIP2 interaction with Shc is very important for the membrane localization and functioning of SHIP2. There is a bidentate relationship between the two proteins where two domains each from SHIP2 and Shc are involved in mutual binding. However in the present study, the SHIP2-SH2 domain binding with the phosphorylated tyrosine 317 on the collagen-homology (CH) domain of Shc, has been studied due to the indispensability of this interaction in SHIP2 localization. In the absence of the crystal structure of SHIP2-SH2, its structural model was developed followed by tracking its molecular interactions with Shc through molecular docking and dynamics studies. This study revealed much about the structural interactions between the SHIP2-SH2 and Shc-CH. Finally, docking study of a nonpeptide inhibitor into the SHIP2-SH2 domain further confirmed the structural interactions involved in ligand binding and also proposed the inhibitor as a major starting point against SHIP2-SH2 inhibition. The insights gained from the current study should prove useful in the design of more potent inhibitors against type 2 diabetes.  相似文献   

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Three new silver(I) complexes of 5,5-diethlybarbiturate (barb), [Ag(barb)(apy)]·H2O (1), {[Ag(μ-ampy)][Ag(μ-barb)2]}n (2) and [Ag(barb)(dmamhpy)] (3) [apy = 2-aminopyridine, ampy = 2-aminomethylpyridine and dmamhpy = 2-(dimethylaminomethyl)-3-hydroxypyridine] have been synthesized and characterized by elemental analysis and FT-IR. Single crystal X-ray diffraction analyses showed that complexes 1 and 3 are mononuclear. In 1, the silver(I) ion is linearly coordinated by a barb anion and a ampy ligand, while a bidentate dmamhpy ligand together with an N-coordinated barb anion forms a trigonal coordination geometry around silver(I) in 3. Complex 2 is a one-dimensional coordination polymer in which silver(I) ions are bridged by ampy ligands, leading to a cationic chain . The [Ag(barb)2] units contains two N-bonded barb ligands, bridging the silver centers in the cationic and anionic units via the carbonyl O atoms. Thus, complex 2 contains two-coordinated and four-coordinated silver ions. All complexes display hydrogen-bonded network structures and exhibit appreciable fluorescence at room temperature. Thermal analysis (TG-DTA) data are in agreement with the structures of the complexes.  相似文献   

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We have cloned and expressed genes encoding the allergenic brazil nut 2S albumin (Ber e 1) and the sunflower albumin 8 (SFA8) in the methylotrophic yeast Pichia pastoris. We show that both proteins were secreted at high levels and that the purified proteins were properly folded. We also showed that Ber e 1 is glycosylated during secretion and that the glycan does not interfere with the folding or immunoreactivity. The disulphide map of the Ber e 1 protein was experimentally established and is in agreement with the conserved disulphide structure of other members of the 2S albumin family. A model three-dimensional structure of the allergen was generated. During the expression studies and through mutation we have also shown that alteration of the sequences around the Kex2 endoproteolytic processing site in the expressed fusion protein can compromise the secretion by targeting part of the protein for possible degradation. The secreted production of these properly folded sulphur-rich plant albumins presents an opportunity to delineate the attributes that make an allergen and to facilitate the diagnosis and therapy of type I allergy.  相似文献   

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《Cell metabolism》2022,34(1):158-170.e5
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