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Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma

Massive DNA excision occurs regularly in ciliates, ubiquitous microbial eukaryotes with somatic and germline nuclei in the same cell. Tens of thousands of internally eliminated sequences (IESs) scattered throughout the ciliate germline genome are deleted during the development of the streamlined som...

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Autores principales: Singh, Minakshi, Seah, Brandon K.B., Emmerich, Christiane, Singh, Aditi, Woehle, Christian, Huettel, Bruno, Byerly, Adam, Stover, Naomi A., Sugiura, Mayumi, Harumoto, Terue, Swart, Estienne C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9942806/
https://www.ncbi.nlm.nih.gov/pubmed/36669098
http://dx.doi.org/10.1073/pnas.2213887120
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author Singh, Minakshi
Seah, Brandon K.B.
Emmerich, Christiane
Singh, Aditi
Woehle, Christian
Huettel, Bruno
Byerly, Adam
Stover, Naomi A.
Sugiura, Mayumi
Harumoto, Terue
Swart, Estienne C.
author_facet Singh, Minakshi
Seah, Brandon K.B.
Emmerich, Christiane
Singh, Aditi
Woehle, Christian
Huettel, Bruno
Byerly, Adam
Stover, Naomi A.
Sugiura, Mayumi
Harumoto, Terue
Swart, Estienne C.
author_sort Singh, Minakshi
collection PubMed
description Massive DNA excision occurs regularly in ciliates, ubiquitous microbial eukaryotes with somatic and germline nuclei in the same cell. Tens of thousands of internally eliminated sequences (IESs) scattered throughout the ciliate germline genome are deleted during the development of the streamlined somatic genome. The genus Blepharisma represents one of the two high-level ciliate clades (subphylum Postciliodesmatophora) and, unusually, has dual pathways of somatic nuclear and genome development. This makes it ideal for investigating the functioning and evolution of these processes. Here we report the somatic genome assembly of Blepharisma stoltei strain ATCC 30299 (41 Mbp), arranged as numerous telomere-capped minichromosomal isoforms. This genome encodes eight PiggyBac transposase homologs no longer harbored by transposons. All appear subject to purifying selection, but just one, the putative IES excisase, has a complete catalytic triad. We hypothesize that PiggyBac homologs were ancestral excisases that enabled the evolution of extensive natural genome editing.
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spelling pubmed-99428062023-02-22 Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma Singh, Minakshi Seah, Brandon K.B. Emmerich, Christiane Singh, Aditi Woehle, Christian Huettel, Bruno Byerly, Adam Stover, Naomi A. Sugiura, Mayumi Harumoto, Terue Swart, Estienne C. Proc Natl Acad Sci U S A Biological Sciences Massive DNA excision occurs regularly in ciliates, ubiquitous microbial eukaryotes with somatic and germline nuclei in the same cell. Tens of thousands of internally eliminated sequences (IESs) scattered throughout the ciliate germline genome are deleted during the development of the streamlined somatic genome. The genus Blepharisma represents one of the two high-level ciliate clades (subphylum Postciliodesmatophora) and, unusually, has dual pathways of somatic nuclear and genome development. This makes it ideal for investigating the functioning and evolution of these processes. Here we report the somatic genome assembly of Blepharisma stoltei strain ATCC 30299 (41 Mbp), arranged as numerous telomere-capped minichromosomal isoforms. This genome encodes eight PiggyBac transposase homologs no longer harbored by transposons. All appear subject to purifying selection, but just one, the putative IES excisase, has a complete catalytic triad. We hypothesize that PiggyBac homologs were ancestral excisases that enabled the evolution of extensive natural genome editing. National Academy of Sciences 2023-01-20 2023-01-24 /pmc/articles/PMC9942806/ /pubmed/36669098 http://dx.doi.org/10.1073/pnas.2213887120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Singh, Minakshi
Seah, Brandon K.B.
Emmerich, Christiane
Singh, Aditi
Woehle, Christian
Huettel, Bruno
Byerly, Adam
Stover, Naomi A.
Sugiura, Mayumi
Harumoto, Terue
Swart, Estienne C.
Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title_full Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title_fullStr Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title_full_unstemmed Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title_short Origins of genome-editing excisases as illuminated by the somatic genome of the ciliate Blepharisma
title_sort origins of genome-editing excisases as illuminated by the somatic genome of the ciliate blepharisma
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9942806/
https://www.ncbi.nlm.nih.gov/pubmed/36669098
http://dx.doi.org/10.1073/pnas.2213887120
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