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71.
Lehmann F Tiralongo E Tiralongo J 《Cellular and molecular life sciences : CMLS》2006,63(12):1331-1354
Sialic acids consist of a family of acidic ninecarbon sugars that are typically located at the terminal positions of a variety
of glycoconjugates. Naturally occurring sialic acids show an immense diversity of structure, and this reflects their involvement
in a variety of biologically important processes. One such process involves the direct participation of sialic acids in recognition
events through specific interactions with lectins, a family of proteins that recognise and bind sugars. This review will present
a detailed overview of our current knowledge regarding the occurrence, specificity and function of sialic acid-specific lectins,
particularly those that occur in viruses, bacteria and non-vertebrate eukaryotes.
Received 13 December 2005; received after revision 9 February 2006; accepted 15 February 2006 相似文献
72.
Glycogen synthase kinase 3β and Alzheimer’s disease: pathophysiological and therapeutic significance 总被引:3,自引:0,他引:3
Balaraman Y Limaye AR Levey AI Srinivasan S 《Cellular and molecular life sciences : CMLS》2006,63(11):1226-1235
Alzheimer’s disease (AD) is a neurodegenerative disorder associated with cognitive and behavioral dysfunction and is the leading
cause of dementia in the elderly. Several studies have implicated molecular and cellular signaling cascades involving the
serine-threonine kinase, glycogen synthase kinase β(GSK-3β) in the pathogenesis of AD. GSK-3β may play an important role in
the formation of neurofibrillary tangles and senile plaques, the two classical pathological hallmarks of AD. In this review,
we discuss the interaction between GSK-3β and several key molecules involved in AD, including the presenilins, amyloid precursor
protein, tau, and β-amyloid. We identify the signal transduction pathways involved in the pathogenesis of AD, including Wnt,
Notch, and the PI3 kinase/Akt pathway. These may be potential therapeutic targets in AD.
Received 19 December 2005; received after revision 24 January 2006; accepted 6 February 2006 相似文献
73.
Phytanic acid is a branched-chain fatty acid that accumulates in a variety of metabolic disorders. High levels of phytanic
acid found in patients can exceed the millimolar range and lead to severe symptoms. Degradation of phytanic acid takes place
by α-oxidation inside the peroxisome. A deficiency of its breakdown, leading to elevated levels, can result from either a
general peroxisomal dysfunction or from a defect in one of the enzymes involved in α-oxidation. Research on Refsum disease,
belonging to the latter group of disorders and characterized by a deficiency of the first enzyme of α-oxidation, has extended
our knowledge of phytanic acid metabolism and pathology of the disease greatly over the past few decades. This review will
centre on this research on phytanic acid: its origin, the mechanism by which its α-oxidation takes place, its role in human
disease and the way it is produced from phytol.
Received 4 October 2005; received after revision 24 February 2006; accepted 26 April 2006 相似文献
74.
Many notions regarding the function, structure and regulation of cholera toxin expression have remained essentially unaltered
in the last 15 years. At the same time, recent findings have generated additional perspectives. For example, the cholera toxin
genes are now known to be carried by a non-lytic bacteriophage, a previously unsuspected condition. Understanding of how the
expression of cholera toxin genes is controlled by the bacterium at the molecular level has advanced significantly and relationships
with cell-density-associated (quorum-sensing) responses have recently been discovered. Regarding the cell intoxication process,
the mode of entry and intracellular transport of cholera toxin are becoming clearer. In the immunological field, the strong
oral immunogenicity of the non-toxic B subunit of cholera toxin (CTB) has been exploited in the development of a now widely
licensed oral cholera vaccine. Additionally, CTB has been shown to induce tolerance against co-administered (linked) foreign
antigens in some autoimmune and allergic diseases.
Received 25 October 2007; accepted 12 December 2007 相似文献
75.
Shin JM Vagin O Munson K Kidd M Modlin IM Sachs G 《Cellular and molecular life sciences : CMLS》2008,65(2):264-281
Inhibition of gastric acid secretion is the mainstay of the treatment of gastroesophageal reflux disease and peptic ulceration;
therapies to inhibit acid are among the best-selling drugs worldwide. Highly effective agents targeting the histamine H2 receptor
were first identified in the 1970s. These were followed by the development of irreversible inhibitors of the parietal cell
hydrogen-potassium ATPase (the proton pump inhibitors) that inhibit acid secretion much more effectively. Reviewed here are
the chemistry, biological targets and pharmacology of these drugs, with reference to their current and evolving clinical utilities.
Future directions in the development of acid inhibitory drugs include modifications of current agents and the emergence of
a novel class of agents, the acid pump antagonists.
Received 30 May 2007; received after revision 15 August 2007; accepted 13 September 2007 相似文献
76.
Taylor DM Maxwell MM Luthi-Carter R Kazantsev AG 《Cellular and molecular life sciences : CMLS》2008,65(24):4000-4018
Sirtuins comprise a unique class of nicotinamide adenine dinucleotide (NAD+)-dependent deacetylases that target multiple protein substrates to execute diverse biological functions. These enzymes are
key regulators of clinically important cellular and organismal processes, including metabolism, cell division and aging. The
desire to understand the important determinants of human health and lifespan has resulted in a firestorm of work on the seven
mammalian sirtuins in less than a decade. The implication of sirtuins in medically important areas such as diabetes, cancer,
cardiovascular dysfunction and neurodegenerative disease has further catapulted them to a prominent status as potential targets
for nutritional and therapeutic development. Here, we present a review of published results on sirtuin biology and its relevance
to human disease.
Received 25 June 2008; received after revision 20 August 2008; accepted 29 August 2008 相似文献
77.
目的 观察 MPTP慢性帕金森病小鼠海马氧化应激指标及细胞凋亡相关蛋白的表达.方法 应用MPTP制备慢性帕金森病模型,观察行为学改变,Morris水迷宫实验,检测模型组和对照组小鼠海马内超氧化物歧化酶(SOD)、还原型谷胱甘肽(GSH)及丙二醛(MDA)舍量变化,以及免疫组织化学方法、RT-PCR方法、Western blot方法检测海马Bax和Bel-2蛋白表达.结果 慢性帕金森病模型小鼠行为学特点为震颤、活动减少;水迷宫实验结果提示认知功能降低;与对照组海马比较:模型组海马SOD、GSH含量均下降,而MDA含量升高(P〈0.05);模型组海马Bax蛋白表达增高,而Bel-2蛋白表达下降(P〈0.05).结论 氧化应激在慢性帕全森病认知功能障碍发病机制中起重要作用,而Bax和Bcl-2蛋白参与了氧化应激诱导海马神经元凋亡的调控过程. 相似文献
78.
《信阳师范学院学报(自然科学版)》2017,(3):504-508
帕金森病(Parkinson’s disease,PD)是一种常见的神经退行性疾病.茶叶中特有的多酚类物质在预防神经退行性疾病方面具有重要作用.大量的体外研究表明,茶多酚在PD中通过抗氧化、铁螯合、抑制α-突触核蛋白聚集和调节细胞内信号通路等机制发挥神经保护作用.综述了茶多酚在PD模型动物和临床研究中的神经保护作用,对今后茶多酚在抗PD的研究中存在的问题和发展趋势给出了建议. 相似文献
79.
哈维氏弧菌黑鲷分离株BK-1培养条件优化研究 总被引:9,自引:0,他引:9
从患病黑鲷Sparus macrocephalus 的肾脏分离到一致病菌株BK-1,经鉴定为哈维氏弧菌.对哈维氏弧菌BK-1株的最佳生长条件及培养基优化进行了测定.结果表明:不同的培养条件和培养基成份均会影响其产量.哈维氏弧菌最适宜生长条件为:盐度为2%、pH8、温度为30℃;最佳培养基成份为:蛋白胨0.5%,牛肉膏0.75%,甘油0.05%,CuSO40.15 mg/L,CaCl2 0.01 g/L. 相似文献
80.