TY - JOUR
T1 - Molecular Properties and Evolutionary Origins of a Parvovirus-Derived Myosin Fusion Gene in Guinea Pigs
AU - Valencia-Herrera, Ignacio
AU - Faunes, Fernando
AU - Cena-Ahumada, Eduardo
AU - Ibarra-Karmy, Rodrigo
AU - Gifford, Robert J.
AU - Arriagada, Gloria
N1 - Funding Information:
This work was supported by Fondo Nacional de Desarrollo Cient?fico y Tecnol?gico grant FONDECYT1180705 to G.A. I.V.-H. was supported by AAP2018-1 from Universidad Andres Bello. R.J.G. was funded by the Medical Research Council of the United Kingdom (MC_UU_12014/12).
Funding Information:
This work was supported by Fondo Nacional de Desarrollo Científico y Tecnológico grant FONDECYT1180705 to G.A. I.V.-H. was supported by AAP2018-1 from Universidad Andres Bello. R.J.G. was funded by the Medical Research Council of the United Kingdom (MC_UU_12014/12).
Publisher Copyright:
© 2019 American Society for Microbiology. All Rights Reserved.
PY - 2019/9/1
Y1 - 2019/9/1
N2 - Sequences derived from parvoviruses (family Parvoviridae) are relatively common in animal genomes, but the functional significance of these endogenous parvoviral element (EPV) sequences remains unclear. In this study, we used a combination of in silico and molecular biological approaches to investigate a fusion gene carried by guinea pigs (genus Cavia) that is partially derived from an EPV. This gene, named enRep-M9l, encodes a predicted polypeptide gene product comprising a partial myosin9-like (M9l) gene fused to a 3' truncated, EPV-encoded replicase. We examined the genomic and phylogenetic characteristics of the EPV locus (enRep) that encodes the viral portions of enRep-M9l, revealing that it derives from an ancient dependoparvovirus (genus Dependoparvovirus) that was incorporated into the guinea pig germ line between approximately 22 and 35 million years ago (MYA). Despite these ancient origins, the regions of the enRep locus that are expressed in the enRep-M9l gene are conserved across multiple species in the family Caviidae (guinea pigs and cavies), consistent with a potential function at the amino acid level. Using molecular biological approaches, we further demonstrated that (i) enRep-M9l mRNA is broadly transcribed in guinea pig cells, (ii) the cloned enRep-M9l transcript can express a protein of the expected size in guinea pig cells in vitro, and (iii) the expressed protein localizes to the cytosol. Our findings demonstrate that, consistent with a functional role, the enRep-M9l fusion gene is evolutionarily conserved, broadly transcribed, and capable of expressing protein.IMPORTANCE DNA from viruses has been "horizontally transferred" to mammalian genomes during evolution, but the impact of this process on mammalian biology remains poorly understood. The findings of our study indicate that a novel gene has evolved in guinea pigs through fusion of host and virus genes.
AB - Sequences derived from parvoviruses (family Parvoviridae) are relatively common in animal genomes, but the functional significance of these endogenous parvoviral element (EPV) sequences remains unclear. In this study, we used a combination of in silico and molecular biological approaches to investigate a fusion gene carried by guinea pigs (genus Cavia) that is partially derived from an EPV. This gene, named enRep-M9l, encodes a predicted polypeptide gene product comprising a partial myosin9-like (M9l) gene fused to a 3' truncated, EPV-encoded replicase. We examined the genomic and phylogenetic characteristics of the EPV locus (enRep) that encodes the viral portions of enRep-M9l, revealing that it derives from an ancient dependoparvovirus (genus Dependoparvovirus) that was incorporated into the guinea pig germ line between approximately 22 and 35 million years ago (MYA). Despite these ancient origins, the regions of the enRep locus that are expressed in the enRep-M9l gene are conserved across multiple species in the family Caviidae (guinea pigs and cavies), consistent with a potential function at the amino acid level. Using molecular biological approaches, we further demonstrated that (i) enRep-M9l mRNA is broadly transcribed in guinea pig cells, (ii) the cloned enRep-M9l transcript can express a protein of the expected size in guinea pig cells in vitro, and (iii) the expressed protein localizes to the cytosol. Our findings demonstrate that, consistent with a functional role, the enRep-M9l fusion gene is evolutionarily conserved, broadly transcribed, and capable of expressing protein.IMPORTANCE DNA from viruses has been "horizontally transferred" to mammalian genomes during evolution, but the impact of this process on mammalian biology remains poorly understood. The findings of our study indicate that a novel gene has evolved in guinea pigs through fusion of host and virus genes.
KW - parvoviral EVE
UR - http://www.scopus.com/inward/record.url?scp=85071352789&partnerID=8YFLogxK
U2 - 10.1128/JVI.00404-19
DO - 10.1128/JVI.00404-19
M3 - Article
C2 - 31217242
AN - SCOPUS:85071352789
SN - 0022-538X
VL - 93
JO - Journal of Virology
JF - Journal of Virology
IS - 17
M1 - e00404-19
ER -