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Inventory and Evolution of Mitochondrion-localized Family A DNA Polymerases in Euglenozoa. | LitMetric

AI Article Synopsis

  • The order Trypanosomatida, known for its pathogenicity and unique mitochondrion biology, contains four distinct DNA polymerases localized within its mitochondria.
  • These polymerases (PolIA, PolIB, PolIC, and PolID) are evolutionarily different from other known DNA polymerases found in other organisms, like humans and plants.
  • This study identifies various types of mitochondrion-localized DNA polymerases across three major classes of Euglenozoa, revealing specific patterns of presence and evolution among PolIA-D in Kinetoplastea, Diplonemea, and Euglenida.

Article Abstract

The order Trypanosomatida has been well studied due to its pathogenicity and the unique biology of the mitochondrion. In , four DNA polymerases, namely PolIA, PolIB, PolIC, and PolID, related to bacterial DNA polymerase I (PolI), were shown to be localized in mitochondria experimentally. These mitochondrion-localized DNA polymerases are phylogenetically distinct from other family A DNA polymerases, such as bacterial PolI, DNA polymerase gamma (Polγ) in human and yeasts, "plant and protist organellar DNA polymerase (POP)" in diverse eukaryotes. However, the diversity of mitochondrion-localized DNA polymerases in Euglenozoa other than Trypanosomatida is poorly understood. In this study, we discovered putative mitochondrion-localized DNA polymerases in broad members of three major classes of Euglenozoa-Kinetoplastea, Diplonemea, and Euglenida-to explore the origin and evolution of trypanosomatid PolIA-D. We unveiled distinct inventories of mitochondrion-localized DNA polymerases in the three classes: (1) PolIA is ubiquitous across the three euglenozoan classes, (2) PolIB, C, and D are restricted in kinetoplastids, (3) new types of mitochondrion-localized DNA polymerases were identified in a prokinetoplastid and diplonemids, and (4) evolutionarily distinct types of POP were found in euglenids. We finally propose scenarios to explain the inventories of mitochondrion-localized DNA polymerases in Kinetoplastea, Diplonemea, and Euglenida.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7238167PMC
http://dx.doi.org/10.3390/pathogens9040257DOI Listing

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