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Published on: July 13, 2019
New sequence polymorphisms in the outer loops of the JC polyomavirus major capsid protein (VP1) possibly associated
Huai-Ying Zheng1,2, Tomokazu Takasaka2, Kazuyuki Noda3
1Japanese Foundation for AIDS Prevention, Tokyo 105-0001, Japan.
Abstract:
JC polyomavirus (JCPyV) causes progressive multifocal leukoencephalopathy (PML) in patients with decreased immune competence. To elucidate genetic changes in JCPyV associated with the pathogenesis of PML, multiple complete JCPyV DNA clones originating from the brains of three PML cases were established and sequenced. Although unique rearranged control regions occurred in all clones, a low level of nucleotide variation was also found in the coding region. In each case, a parental coding sequence was identified, from which variant coding sequences with nucleotide substitutions would have been generated. A comparison between the parental and variant coding sequences demonstrated that all 12 detected nucleotide substitutions gave rise to amino acid changes. Interestingly, seven of these changes were located in the surface loops of the major capsid protein (VP1). Finally, 16 reported VP1 sequences of PML-type JCPyV (i.e. derived from the brain or cerebrospinal fluid of PML patients) were compared with their genotypic prototypes, generated as consensus sequences of representative archetypal isolates belonging to the same genotypes; 13 VP1 proteins had amino acid changes in the surface loops. In contrast, VP1 proteins from isolates from the urine of immunocompetent and immunosuppressed patients rarely underwent mutations in the VP1 loops. The present findings suggest that PML-type JCPyV frequently undergoes amino acid substitutions in the VP1 loops. These polymorphisms should serve as a new marker for the identification of JCPyV isolates associated with PML. The biological significance of these mutations, however, remains unclear.
Insights
JC polyomavirus (JCPyV) causes progressive multifocal leukoencephalopathy (PML) in immunocompromised individuals. JCPyV variants in PML brains show specific VP1 protein loop mutations, potentially serving as a diagnostic marker for PML.
Area of Science:
- Virology
- Molecular Biology
- Neuroscience
Background:
- JC polyomavirus (JCPyV) is a human polyomavirus that can cause progressive multifocal leukoencephalopathy (PML) in immunocompromised patients.
- PML is a demyelinating disease of the central nervous system with significant morbidity and mortality.
Observation:
- Complete JCPyV DNA clones from PML brains revealed unique rearranged control regions and nucleotide variations in coding sequences.
- Amino acid changes were observed in all 12 detected nucleotide substitutions, with seven occurring in the surface loops of the major capsid protein (VP1).
Findings:
- Comparison of PML-type JCPyV VP1 sequences with genotypic prototypes showed that 13 out of 16 VP1 proteins had amino acid changes in the surface loops.
- VP1 proteins from JCPyV isolates in urine rarely exhibited mutations in these loops, unlike those found in PML brain tissue.
Implications:
- The study suggests that specific amino acid substitutions in the VP1 surface loops are frequent in PML-associated JCPyV.
- These VP1 loop polymorphisms may serve as a novel molecular marker for identifying JCPyV isolates linked to PML pathogenesis.
- The precise biological role of these VP1 mutations in PML development requires further investigation.
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