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Measles Virus: Identification in the M Protein Primary Sequence of a Potential Molecular Marker for Subacute Sclerosing Panencephalitis

机译:麻疹病毒:亚急性硬化性全脑炎的潜在分子标记的M蛋白一级序列的鉴定。

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摘要

Subacute Sclerosing Panencephalitis (SSPE), a rare lethal disease of children and young adults due to persistence of measles virus (MeV) in the brain, is caused by wild type (wt) MeV. Why MeV vaccine strains never cause SSPE is completely unknown. Hypothesizing that this phenotypic difference could potentially be represented by a molecular marker, we compared glycoprotein and matrix (M) genes from SSPE cases with those from the Moraten vaccine strain, searching for differential structural motifs. We observed that all known SSPE viruses have residues P64, E89, and A209 (PEA) in their M proteins whereas the equivalent residues for vaccine strains are either S64, K89, and T209 (SKT) as in Moraten or PKT. Through the construction of MeV recombinants, we have obtained evidence that the wt MeV-M protein PEA motif, in particular A209, is linked to increased viral spread. Importantly, for the 10 wt genotypes (of 23) that have had their M proteins sequenced, 9 have the PEA motif, the exception being B3, which has PET. Interestingly, cases of SSPE caused by genotype B3 have yet to be reported. In conclusion, our results strongly suggest that the PEA motif is a molecular marker for wt MeV at risk to cause SSPE.
机译:亚急性硬化性全脑炎(SSPE)是野生型(wt)MeV引起的,由于麻疹病毒(MeV)在大脑中的持续存在,这是儿童和年轻人罕见的致死性疾病。为何MeV疫苗株永远不会引起SSPE尚不得而知。假设这种表型差异可能由分子标记来表示,我们比较了来自SSPE病例的糖蛋白和基质(M)基因与来自Moraten疫苗株的糖蛋白和基质(M)基因,以寻找不同的结构基序。我们观察到,所有已知的SSPE病毒在其M蛋白中均具有P64,E89和A209(PEA)残基,而疫苗株的等效残基为Moraten或PKT中的S64,K89和T209(SKT)。通过构建MeV重组体,我们获得了证据,表明wt MeV-M蛋白PEA基序,特别是A209,与病毒传播的增加有关。重要的是,对于已经对其M蛋白进行了测序的10种wt基因型(共23种),其中9种具有PEA基序,只有B3具有PET。有趣的是,由基因型B3引起的SSPE病例尚未报道。总之,我们的结果强烈表明,PEA基序是wt MeV可能引起SSPE的分子标记。

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