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A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles

Although new genes can arrive from modes other than duplication, few examples are well characterized. Given high expression in some human brain subregions and a putative link to psychological disorders [e.g., schizophrenia (SCZ)], suggestive of brain functionality, here we characterize piggyBac tran...

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Autores principales: Raskó, Tamás, Pande, Amit, Radscheit, Kathrin, Zink, Annika, Singh, Manvendra, Sommer, Christian, Wachtl, Gerda, Kolacsek, Orsolya, Inak, Gizem, Szvetnik, Attila, Petrakis, Spyros, Bunse, Mario, Bansal, Vikas, Selbach, Matthias, Orbán, Tamás I, Prigione, Alessandro, Hurst, Laurence D, Izsvák, Zsuzsanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9538788/
https://www.ncbi.nlm.nih.gov/pubmed/36205081
http://dx.doi.org/10.1093/molbev/msac175
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author Raskó, Tamás
Pande, Amit
Radscheit, Kathrin
Zink, Annika
Singh, Manvendra
Sommer, Christian
Wachtl, Gerda
Kolacsek, Orsolya
Inak, Gizem
Szvetnik, Attila
Petrakis, Spyros
Bunse, Mario
Bansal, Vikas
Selbach, Matthias
Orbán, Tamás I
Prigione, Alessandro
Hurst, Laurence D
Izsvák, Zsuzsanna
author_facet Raskó, Tamás
Pande, Amit
Radscheit, Kathrin
Zink, Annika
Singh, Manvendra
Sommer, Christian
Wachtl, Gerda
Kolacsek, Orsolya
Inak, Gizem
Szvetnik, Attila
Petrakis, Spyros
Bunse, Mario
Bansal, Vikas
Selbach, Matthias
Orbán, Tamás I
Prigione, Alessandro
Hurst, Laurence D
Izsvák, Zsuzsanna
author_sort Raskó, Tamás
collection PubMed
description Although new genes can arrive from modes other than duplication, few examples are well characterized. Given high expression in some human brain subregions and a putative link to psychological disorders [e.g., schizophrenia (SCZ)], suggestive of brain functionality, here we characterize piggyBac transposable element-derived 1 (PGBD1). PGBD1 is nonmonotreme mammal-specific and under purifying selection, consistent with functionality. The gene body of human PGBD1 retains much of the original DNA transposon but has additionally captured SCAN and KRAB domains. Despite gene body retention, PGBD1 has lost transposition abilities, thus transposase functionality is absent. PGBD1 no longer recognizes piggyBac transposon-like inverted repeats, nonetheless PGBD1 has DNA binding activity. Genome scale analysis identifies enrichment of binding sites in and around genes involved in neuronal development, with association with both histone activating and repressing marks. We focus on one of the repressed genes, the long noncoding RNA NEAT1, also dysregulated in SCZ, the core structural RNA of paraspeckles. DNA binding assays confirm specific binding of PGBD1 both in the NEAT1 promoter and in the gene body. Depletion of PGBD1 in neuronal progenitor cells (NPCs) results in increased NEAT1/paraspeckles and differentiation. We conclude that PGBD1 has evolved core regulatory functionality for the maintenance of NPCs. As paraspeckles are a mammal-specific structure, the results presented here show a rare example of the evolution of a novel gene coupled to the evolution of a contemporaneous new structure.
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spelling pubmed-95387882022-10-07 A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles Raskó, Tamás Pande, Amit Radscheit, Kathrin Zink, Annika Singh, Manvendra Sommer, Christian Wachtl, Gerda Kolacsek, Orsolya Inak, Gizem Szvetnik, Attila Petrakis, Spyros Bunse, Mario Bansal, Vikas Selbach, Matthias Orbán, Tamás I Prigione, Alessandro Hurst, Laurence D Izsvák, Zsuzsanna Mol Biol Evol Discoveries Although new genes can arrive from modes other than duplication, few examples are well characterized. Given high expression in some human brain subregions and a putative link to psychological disorders [e.g., schizophrenia (SCZ)], suggestive of brain functionality, here we characterize piggyBac transposable element-derived 1 (PGBD1). PGBD1 is nonmonotreme mammal-specific and under purifying selection, consistent with functionality. The gene body of human PGBD1 retains much of the original DNA transposon but has additionally captured SCAN and KRAB domains. Despite gene body retention, PGBD1 has lost transposition abilities, thus transposase functionality is absent. PGBD1 no longer recognizes piggyBac transposon-like inverted repeats, nonetheless PGBD1 has DNA binding activity. Genome scale analysis identifies enrichment of binding sites in and around genes involved in neuronal development, with association with both histone activating and repressing marks. We focus on one of the repressed genes, the long noncoding RNA NEAT1, also dysregulated in SCZ, the core structural RNA of paraspeckles. DNA binding assays confirm specific binding of PGBD1 both in the NEAT1 promoter and in the gene body. Depletion of PGBD1 in neuronal progenitor cells (NPCs) results in increased NEAT1/paraspeckles and differentiation. We conclude that PGBD1 has evolved core regulatory functionality for the maintenance of NPCs. As paraspeckles are a mammal-specific structure, the results presented here show a rare example of the evolution of a novel gene coupled to the evolution of a contemporaneous new structure. Oxford University Press 2022-08-23 /pmc/articles/PMC9538788/ /pubmed/36205081 http://dx.doi.org/10.1093/molbev/msac175 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Discoveries
Raskó, Tamás
Pande, Amit
Radscheit, Kathrin
Zink, Annika
Singh, Manvendra
Sommer, Christian
Wachtl, Gerda
Kolacsek, Orsolya
Inak, Gizem
Szvetnik, Attila
Petrakis, Spyros
Bunse, Mario
Bansal, Vikas
Selbach, Matthias
Orbán, Tamás I
Prigione, Alessandro
Hurst, Laurence D
Izsvák, Zsuzsanna
A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title_full A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title_fullStr A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title_full_unstemmed A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title_short A Novel Gene Controls a New Structure: PiggyBac Transposable Element-Derived 1, Unique to Mammals, Controls Mammal-Specific Neuronal Paraspeckles
title_sort novel gene controls a new structure: piggybac transposable element-derived 1, unique to mammals, controls mammal-specific neuronal paraspeckles
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9538788/
https://www.ncbi.nlm.nih.gov/pubmed/36205081
http://dx.doi.org/10.1093/molbev/msac175
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