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Numerous rRNA molecules form the apicomplexan mitoribosome via repurposed protein and RNA elements
by
Ovciarikova, Jana
, Ferreira Silva, Mariana
, Sheiner, Lilach
, Shikha, Shikha
, Beraldi, Dario
, Tobiasson, Victor
, Mühleip, Alexander
in
13
/ 14/28
/ 14/63
/ 38/91
/ 631/326/417/1716
/ 631/337/574/1789
/ 631/535/1258/1259
/ 631/80/642/333
/ 82/58
/ Cryoelectron Microscopy
/ DNA fragmentation
/ DNA structure
/ Eukaryotes
/ Gene sequencing
/ Humanities and Social Sciences
/ Microorganisms
/ Mitochondria
/ Mitochondria - metabolism
/ Mitochondrial Proteins - genetics
/ Mitochondrial Proteins - metabolism
/ Mitochondrial Ribosomes - metabolism
/ Mitochondrial Ribosomes - ultrastructure
/ multidisciplinary
/ Nucleotide sequence
/ Parasites
/ Poly A - metabolism
/ Protein folding
/ Proteins
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Ribonucleic acid
/ Ribosomal Proteins - metabolism
/ Ribosomes
/ RNA
/ RNA, Protozoan - genetics
/ RNA, Protozoan - metabolism
/ RNA, Ribosomal - chemistry
/ RNA, Ribosomal - genetics
/ RNA, Ribosomal - metabolism
/ rRNA
/ Science
/ Science (multidisciplinary)
/ Toxoplasma - genetics
/ Toxoplasma - metabolism
/ Transcription factors
2025
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Numerous rRNA molecules form the apicomplexan mitoribosome via repurposed protein and RNA elements
by
Ovciarikova, Jana
, Ferreira Silva, Mariana
, Sheiner, Lilach
, Shikha, Shikha
, Beraldi, Dario
, Tobiasson, Victor
, Mühleip, Alexander
in
13
/ 14/28
/ 14/63
/ 38/91
/ 631/326/417/1716
/ 631/337/574/1789
/ 631/535/1258/1259
/ 631/80/642/333
/ 82/58
/ Cryoelectron Microscopy
/ DNA fragmentation
/ DNA structure
/ Eukaryotes
/ Gene sequencing
/ Humanities and Social Sciences
/ Microorganisms
/ Mitochondria
/ Mitochondria - metabolism
/ Mitochondrial Proteins - genetics
/ Mitochondrial Proteins - metabolism
/ Mitochondrial Ribosomes - metabolism
/ Mitochondrial Ribosomes - ultrastructure
/ multidisciplinary
/ Nucleotide sequence
/ Parasites
/ Poly A - metabolism
/ Protein folding
/ Proteins
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Ribonucleic acid
/ Ribosomal Proteins - metabolism
/ Ribosomes
/ RNA
/ RNA, Protozoan - genetics
/ RNA, Protozoan - metabolism
/ RNA, Ribosomal - chemistry
/ RNA, Ribosomal - genetics
/ RNA, Ribosomal - metabolism
/ rRNA
/ Science
/ Science (multidisciplinary)
/ Toxoplasma - genetics
/ Toxoplasma - metabolism
/ Transcription factors
2025
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Numerous rRNA molecules form the apicomplexan mitoribosome via repurposed protein and RNA elements
by
Ovciarikova, Jana
, Ferreira Silva, Mariana
, Sheiner, Lilach
, Shikha, Shikha
, Beraldi, Dario
, Tobiasson, Victor
, Mühleip, Alexander
in
13
/ 14/28
/ 14/63
/ 38/91
/ 631/326/417/1716
/ 631/337/574/1789
/ 631/535/1258/1259
/ 631/80/642/333
/ 82/58
/ Cryoelectron Microscopy
/ DNA fragmentation
/ DNA structure
/ Eukaryotes
/ Gene sequencing
/ Humanities and Social Sciences
/ Microorganisms
/ Mitochondria
/ Mitochondria - metabolism
/ Mitochondrial Proteins - genetics
/ Mitochondrial Proteins - metabolism
/ Mitochondrial Ribosomes - metabolism
/ Mitochondrial Ribosomes - ultrastructure
/ multidisciplinary
/ Nucleotide sequence
/ Parasites
/ Poly A - metabolism
/ Protein folding
/ Proteins
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Ribonucleic acid
/ Ribosomal Proteins - metabolism
/ Ribosomes
/ RNA
/ RNA, Protozoan - genetics
/ RNA, Protozoan - metabolism
/ RNA, Ribosomal - chemistry
/ RNA, Ribosomal - genetics
/ RNA, Ribosomal - metabolism
/ rRNA
/ Science
/ Science (multidisciplinary)
/ Toxoplasma - genetics
/ Toxoplasma - metabolism
/ Transcription factors
2025
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Numerous rRNA molecules form the apicomplexan mitoribosome via repurposed protein and RNA elements
Journal Article
Numerous rRNA molecules form the apicomplexan mitoribosome via repurposed protein and RNA elements
2025
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Overview
Mitochondrial ribosomes (mitoribosomes) are essential, and their function of synthesising mitochondrial proteins is universal. The core of almost all mitoribosomes is formed from a small number of long and self-folding rRNA molecules. In contrast, the mitoribosome of the apicomplexan parasite
Toxoplasma gondii
assembles from over 50 extremely short rRNA molecules. Here, we use cryo-EM to discover the features that enable this unusual mitoribosome to perform its function. We reveal that poly-A tails added to rRNA molecules are integrated into the ribosome, and we demonstrate their essentiality for mitoribosome formation and for parasite survival. This is a distinct function for poly-A tails, which are otherwise known primarily as stabilisers of messenger RNAs. Furthermore, while ribosomes typically consist of unique rRNA sequences, here nine sequences are used twice, each copy integrated in a different mitoribosome domain, revealing one of the mechanisms enabling the extreme mitochondrial genome reduction characteristic to Apicomplexa and to a large group of related microbial eukaryotes. Finally, several transcription factor-like proteins are repurposed to compensate for reduced or lost critical ribosomal domains, including members of the ApiAP2 family thus far considered to be DNA-binding transcription factors.
Structure of the Toxoplasma mitoribosome made of >50 short rRNA molecules reveals evolutionary solutions to rRNA fragmentation: addition of poly A tails to rRNAs, reused rRNA sequences, and repurposing of proteins with transcription factor domains.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 14/28
/ 14/63
/ 38/91
/ 82/58
/ Humanities and Social Sciences
/ Mitochondrial Proteins - genetics
/ Mitochondrial Proteins - metabolism
/ Mitochondrial Ribosomes - metabolism
/ Mitochondrial Ribosomes - ultrastructure
/ Proteins
/ Protozoan Proteins - genetics
/ Protozoan Proteins - metabolism
/ Ribosomal Proteins - metabolism
/ RNA
/ rRNA
/ Science
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