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Expression of different L1 isoforms of Mastomys natalensis papillomavirus as mechanism to circumvent adaptive immunity.


ABSTRACT: Although many high-risk mucosal and cutaneous human papillomaviruses (HPVs) theoretically have the potential to synthesize L1 isoforms differing in length, previous seroepidemiological studies only focused on the short L1 variants, co-assembling with L2 to infectious virions. Using the multimammate mouse Mastomys coucha as preclinical model, this is the first study demonstrating seroconversion against different L1 isoforms during the natural course of papillomavirus infection. Intriguingly, positivity with the cutaneous MnPV was accompanied by a strong seroresponse against a longer L1 isoform, but to our surprise, the raised antibodies were non-neutralizing. Only after a delay of around 4 months, protecting antibodies against the short L1 appeared, enabling the virus to successfully establish an infection. This argues for a novel humoral immune escape mechanism that may also have important implications on the interpretation of epidemiological data in terms of seropositivity and protection of PV infections in general.

SUBMITTER: Fu Y 

PROVIDER: S-EPMC7402679 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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Expression of different L1 isoforms of <i>Mastomys natalensis</i> papillomavirus as mechanism to circumvent adaptive immunity.

Fu Yingying Y   Cao Rui R   Schäfer Miriam M   Stephan Sonja S   Braspenning-Wesch Ilona I   Schmitt Laura L   Bischoff Ralf R   Müller Martin M   Schäfer Kai K   Vinzón Sabrina E SE   Rösl Frank F   Hasche Daniel D  

eLife 20200804


Although many high-risk mucosal and cutaneous human papillomaviruses (HPVs) theoretically have the potential to synthesize L1 isoforms differing in length, previous seroepidemiological studies only focused on the short L1 variants, co-assembling with L2 to infectious virions. Using the multimammate mouse <i>Mastomys coucha</i> as preclinical model, this is the first study demonstrating seroconversion against different L1 isoforms during the natural course of papillomavirus infection. Intriguingl  ...[more]

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