首页> 外文期刊>Journal of Alzheimer's disease: JAD >Cryptic peptides of the kringle domains preferentially bind to disease-associated prion protein.
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Cryptic peptides of the kringle domains preferentially bind to disease-associated prion protein.

机译:环状结构域的隐性肽优先结合疾病相关的ion病毒蛋白。

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Prion diseases are a group of fatal neurodegenerative disorders characterized by the accumulation of a misfolded form (PrP(Sc)) of the cellular prion protein (PrP(C)) in the brains of affected individuals. The conversion of PrP(C) to PrP(Sc) is thought to involve a change in protein conformation from a normal, primarily alpha-helical structure into a beta-sheet conformer. Few proteins have been identified that differentially interact with the two forms of PrP. It has been reported that plasminogen binds to PrP(Sc) from a variety of prion phenotypes. We have examined potential motifs within the kringle region that may be responsible for binding to PrP. We synthesized 12-15-mer peptides that contain small, repetitive stretches of amino acid residues found within the kringle domains of plasminogen. These synthetic peptides were found to capture PrP(Sc) from the brain homogenates of bovine spongiform encephalopathy affected cattle, chronic wasting disease affected elk, experimental scrapie of hamsters and that of subjects affected by Creutzfeldt-Jakob disease, without binding to PrP(C) in unaffected controls. Therefore, we have identified critical peptide motifs that may be important for protein-protein interactions in prion disease pathogenesis. The ability of these synthetic peptides to bind preferentially to PrP(Sc) suggests a potential application in the diagnosis of prion diseases.
机译:on病毒疾病是一组致命的神经退行性疾病,其特征是在受影响的人脑中积累了细胞病毒蛋白(PrP(C))的错误折叠形式(PrP(Sc))。 PrP(C)转换为PrP(Sc)被认为涉及蛋白质构象从正常的,主要是α螺旋结构转变为β-sheet构象构象的变化。很少有蛋白质能与两种形式的PrP发生差异性相互作用。据报道,纤溶酶原结合多种from病毒表型的PrP(Sc)。我们已经检查了在环区域内可能负责与PrP结合的潜在基序。我们合成了12-15个肽段,这些肽段包含在纤溶酶原的kringle域内发现的小而重复的氨基酸残基。发现这些合成肽可从牛海绵状脑病感染的牛的脑匀浆,慢性消耗性疾病的麋鹿,实验性仓鼠和受Creutzfeldt-Jakob病影响的受试者的脑匀浆中捕获PrP(Sc),但不与PrP(C)结合在不受影响的控件中。因此,我们已经确定了关键的肽基序,这些基序对于for病毒疾病发病机理中的蛋白质间相互作用可能很重要。这些合成肽优先结合PrP(Sc)的能力表明潜在的应用在diagnosis病毒疾病的诊断中。

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