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141.
Modulation of protein biophysical properties by chemical glycosylation: biochemical insights and biomedical implications 总被引:2,自引:0,他引:2
Solá RJ Rodríguez-Martínez JA Griebenow K 《Cellular and molecular life sciences : CMLS》2007,64(16):2133-2152
Glycosylation constitutes one of the most important posttranslational modifications employed by biological systems to modulate
protein biophysical properties. Due to the direct biochemical and biomedical implications of achieving control over protein
stability and function by chemical means, there has been great interest in recent years towards the development of chemical
strategies for protein glycosylation. Since current knowledge about glycoprotein biophysics has been mainly derived from the
study of naturally glycosylated proteins, chemical glycosylation provides novel insights into its mechanistic understanding
by affording control over glycosylation parameters. This review presents a survey of the effects that natural and chemical
glycosylation have on the fundamental biophysical properties of proteins (structure, dynamics, stability, and function). This
is complemented by a mechanistic discussion of how glycans achieve such effects and discussion of the implications of employing
chemical glycosylation as a tool to exert control over protein biophysical properties within biochemical and biomedical applications.
Received 15 December 2006; received after revision 28 March 2007; accepted 25 April 2007 相似文献
142.
Alzheimer disease (AD), while chronic and progressive with an average progression of 7 – 10 years, is both multifactorial
and heterogeneous. Thus, AD offers a large window of opportunity and a large number of therapeutic targets to inhibit it.
The selection of a therapeutic target, however, is one of the biggest challenges in developing a pharmacological treatment
of this multifactorial disease. Inhibition of a pivotal downstream event is likely to benefit more patients than inhibition
of an upstream event in AD pathogenesis. Neurofibrillary degeneration of abnormally hyperphosphorylated tau offers such a
pivotal therapeutic target. Abnormal hyperphosphorylation of tau and not its aggregation into filaments appears to be the
most deleterious step in neurofibrillary degeneration. Tau can be abnormally hyperphosphorylated by downregulation of protein
phosphatase-2A activity or by upregulation of more than one tau kinase. Restoration of the phosphatase activity which is downregulated
in AD brain or inhibition of GSK-3β and cdk5, which are required for AD-type abnormal hyperphosphorylation of tau, are among
the most promising therapeutic strategies. 相似文献
143.
Regulation of insulin receptor function 总被引:1,自引:0,他引:1
Youngren JF 《Cellular and molecular life sciences : CMLS》2007,64(7-8):873-891
Resistance to the biological actions of insulin contributes to the development of type 2 diabetes and risk of cardiovascular
disease. A reduced biological response to insulin by tissues results from an impairment in the cascade of phosphorylation
events within cells that regulate the activity of enzymes comprising the insulin signaling pathway. In most models of insulin
resistance, there is evidence that this decrement in insulin signaling begins with either the activation or substrate kinase
activity of the insulin receptor (IR), which is the only component of the pathway that is unique to insulin action. Activation
of the IR can be impaired by post-translational modifications of the protein involving serine phosphorylation, or by binding
to inhibiting proteins such as PC-1 or members of the SOCS or Grb protein families. The impact of these processes on the conformational
changes and phosphorylation events required for full signaling activity, as well as the role of these mechanisms in human
disease, is reviewed in this article.
Received 3 August 2006; received after revision 1 December 2006; accepted 8 January 2007 相似文献
144.
Receptor communication within the lymphocyte plasma membrane: a role for the thrombospondin family of matricellular proteins 总被引:1,自引:0,他引:1
Lymphocytes, the principal cells of the immune system, carry out immune surveillance throughout the body by their unique capacity
to constantly reposition themselves between a free-floating vascular state and a tissue state characterized by migration and
frequent adhesive interactions with endothelial cells and components of the extracellular matrix. Therefore, mechanisms co-ordinating
adhesion and migration with signals delivered through antigen recognition probably play a pivotal role for the regulation
of lymphocyte behaviour and function. Endogenous thrombospondin-1 (TSP-1) seems to be the hub in such a mechanism for autocrine
regulation of T cell adhesion and migration. TSP-1 functions as a mediator of cis interaction of vital receptors within the T lymphocyte plasma membrane, including integrins, low density lipoprotein receptor-related
protein, calreticulin and integrin-associated protein.
Received 1 June 2006; received after revision 28 June 2006; accepted 11 October 2006 相似文献
145.
为分析多高层建筑采用铅芯橡胶垫进行隔震后的结构减震效果,试验对一1:16小比例尺隔震结构模型进行了水平和竖向两向输入地震波的振动台试验;试验中地震波输入和模型结构尺寸采用统一试验相似比设计,以尽可能反应真实隔震结构的动力特性。对模型结构上部加速度和层间位移试验数据进行分析,数据显示隔震结构模型无论加速度还是层间位移反应都得到减小,因此证明该隔震技术对高层建筑同样有较好的减震效果。 相似文献
146.
综述了计算机辅助解析傅里叶变换红外光谱在蛋白质构象定量研究中的应用进展,简要介绍了红外光谱测定及二阶导数谱、去卷积和曲线拟合等计算机数学处理方法.对已有的研究结果进行了分类总结,最后讨论了该领域中存在的问题和发展方向. 相似文献
147.
夏玉凤 《河北师范大学学报(自然科学版)》2006,30(3):343-345
使用绿色荧光蛋白作为报告基因来研究目的蛋白的亚细胞定位得到广泛应用.使用稳定表达系统研究蛋白的亚细胞定位比较耗时,但可以先选择愈伤组织进行观察以确保构建的载体能够表达.优化了愈伤组织的培养条件,得到了质地疏松柔软的白色愈伤,不受叶绿体的荧光干扰,便于进行荧光观察. 相似文献
148.
由大肠杆菌以包涵体形式表达的一种抗内皮细胞生长工程蛋白(A nti-ang iogen ic agent,简称3A)经变性,Sephacry l S-100 HR柱复性,SP Sepharose FF离子交换吸附纯化,SephadexG-25脱盐,获得复性率为53.47%,HPLC纯度为92.52%的3A活性蛋白。以猪髋动脉内皮细胞为受检细胞,表明纯化蛋白具有抑制内皮细胞生长的特性。 相似文献
149.
新型冠状病毒(SARS-CoV-2)有4种关键的结构蛋白,而核衣壳蛋白就是其中的1种.本实验从公开数据库NCBI上选取的SARS-CoV-2核衣壳蛋白质序列数据,分析SARS-CoV-2核衣壳蛋白与SARS-CoV核衣壳蛋白的序列相似性,对SARS-CoV-2核衣壳蛋白的理化性质和疏水性进行分析;在此基础上提出基于位点... 相似文献
150.
仲慧 《淮阴师范学院学报(自然科学版)》2006,5(2):135-139
利用光吸收和共振光散射(RLS)光谱研究了铝试剂(ATA)与蛋白质在水溶液中的相互作用.在pH2.50时,蛋白质可使弱的ATA光散射信号曾强.基于这种现象,我们运用RLS技术,建立了测定纳克级蛋白质的方法.该方法简单、实用、灵敏.BSA的线性范围为0.010~27.4μg/mL,HSA的线性范围为0.010~30.5μg/mL.BSA的检测限为10.7 ng/mL,HSA的检测限为10.2 ng/mL.对实际人血清样品中的蛋白质进行了测定,其结果与临床方法一致.氨基酸、金属离子或其它共存化合物的干扰很小. 相似文献