首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >PRION PROTEIN (PRP) SYNTHETIC PEPTIDES INDUCE CELLULAR PRP TO ACQUIRE PROPERTIES OF THE SCRAPIE ISOFORM
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PRION PROTEIN (PRP) SYNTHETIC PEPTIDES INDUCE CELLULAR PRP TO ACQUIRE PROPERTIES OF THE SCRAPIE ISOFORM

机译:ION蛋白(PRP)合成肽诱导细胞PRP获得SCR形异构体的性质

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Conversion of the cellular isoform of prion protein (PrPC) into the scrapie isoform (PrPSc) involves an increase in the P-sheet content, diminished solubility, and resistance to proteolytic digestion. Transgenetic studies argue that PrPC and PrPSc form a complex during PrPSc formation; thus, synthetic PrP peptides, which mimic the conformational pluralism of PrP, were mixed with PrPC to determine whether its properties were altered, Peptides encompassing two alpha-helical domains of PrP when mixed with PrPC produced a complex that displayed many properties of PrPSc, The PrPC-peptide complex formed fibrous aggregates and up to 65% of complexed PrPC sedimented at 100,000 x g for 1 h, whereas PrPC alone did not. These complexes were resistant to proteolytic digestion and displayed a high P-sheet content. Unexpectedly, the peptide in a P-sheet conformation did not form the complex, whereas the random coil did. Addition of 2% Sarkosyl disrupted the complex and rendered PrPC sensitive to protease digestion, While the pathogenic A117V mutation increased the efficacy of complex formation, anti-PrP monoclonal antibody prevented interaction between PrPC and peptides, Our findings in concert with transgenetic investigations argue that PrPC interacts with PrPSc through a domain that contains the first two putative alpha-helices. Whether PrPC-peptide complexes possess prion infectivity as determined by bioassays remains to be established. [References: 45]
机译:the病毒蛋白(PrPC)的细胞同工型转化为瘙痒病同工型(PrPSc)涉及P片含量的增加,溶解度的降低以及对蛋白水解消化的抵抗力。转基因研究认为PrPC和PrPSc在PrPSc形成过程中会形成复合物。因此,将模拟PrP构象多样性的合成PrP肽与PrPC混合,以确定其特性是否被改变。与PrPC混合时,包含PrP两个α-螺旋结构域的肽产生的复合物显示出PrPSc的许多特性。 PrPC-肽复合物形成纤维状聚集体,高达65%的复合PrPC在100,000 xg的条件下沉淀1小时,而单独的PrPC则没有。这些复合物对蛋白水解消化具有抵抗力,并且显示出高的P-片含量。出乎意料的是,P-sheet构象的肽没有形成复合物,而无规卷曲却形成了复合物。加入2%的Sarkosyl破坏了复合物并使PrPC对蛋白酶消化敏感,而病原性A117V突变增加了复合物形成的功效,而抗PrP单克隆抗体阻止了PrPC和肽之间的相互作用,我们的研究结果与转基因研究一致认为,PrPC通过包含前两个推定的α-螺旋的域与PrPSc相互作用。如通过生物测定所确定的,PrPC-肽复合物是否具有病毒感染性尚待确定。 [参考:45]

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