Javascript must be enabled to continue!
Functional Interactions of Ribosomal Intersubunit Bridges in Saccharomyces cerevisiae
View through CrossRef
Abstract
Ribosomes of Archaea and Eukarya share higher homology with each other than with bacterial ribosomes. For example, there is a set of 35 r-proteins that are specific only for archaeal and eukaryotic ribosomes. Three of these proteins—eL19, eL24, and eL41—participate in interactions between ribosomal subunits. The eukaryote-specific extensions of r-proteins eL19 and eL24 form two intersubunit bridges eB12 and eB13, which are present only in eukaryotic ribosomes. The third r-protein, eL41, forms bridge eB14. Notably, eL41 is found in all eukaryotes but only in some Archaea. It has been shown that bridges eB12 and eB13 are needed for efficient translation, while r-protein eL41 plays a minor role in ribosome function. Here, the functional interactions between intersubunit bridges were studied using budding yeast strains lacking different combinations of the abovementioned bridges/proteins. The growth phenotypes, levels of in vivo translation, ribosome–polysome profiles, and in vitro association of ribosomal subunits were analyzed. The results show a genetic interaction between r-protein eL41 and the eB12 bridge-forming region of eL19, and between r-proteins eL41 and eL24. It was possible to construct viable yeast strains with Archaea-like ribosomes lacking two or three eukaryote-specific bridges. These strains display slow growth and a poor translation phenotype. In addition, bridges eB12 and eB13 appear to cooperate during ribosome subunit association. These results indicate that nonessential structural elements of r-proteins become highly important in the context of disturbed subunit interactions. Therefore, eukaryote-specific bridges may contribute to the evolutionary success of eukaryotic translation machinery.
Title: Functional Interactions of Ribosomal Intersubunit Bridges in
Saccharomyces cerevisiae
Description:
Abstract
Ribosomes of Archaea and Eukarya share higher homology with each other than with bacterial ribosomes.
For example, there is a set of 35 r-proteins that are specific only for archaeal and eukaryotic ribosomes.
Three of these proteins—eL19, eL24, and eL41—participate in interactions between ribosomal subunits.
The eukaryote-specific extensions of r-proteins eL19 and eL24 form two intersubunit bridges eB12 and eB13, which are present only in eukaryotic ribosomes.
The third r-protein, eL41, forms bridge eB14.
Notably, eL41 is found in all eukaryotes but only in some Archaea.
It has been shown that bridges eB12 and eB13 are needed for efficient translation, while r-protein eL41 plays a minor role in ribosome function.
Here, the functional interactions between intersubunit bridges were studied using budding yeast strains lacking different combinations of the abovementioned bridges/proteins.
The growth phenotypes, levels of in vivo translation, ribosome–polysome profiles, and in vitro association of ribosomal subunits were analyzed.
The results show a genetic interaction between r-protein eL41 and the eB12 bridge-forming region of eL19, and between r-proteins eL41 and eL24.
It was possible to construct viable yeast strains with Archaea-like ribosomes lacking two or three eukaryote-specific bridges.
These strains display slow growth and a poor translation phenotype.
In addition, bridges eB12 and eB13 appear to cooperate during ribosome subunit association.
These results indicate that nonessential structural elements of r-proteins become highly important in the context of disturbed subunit interactions.
Therefore, eukaryote-specific bridges may contribute to the evolutionary success of eukaryotic translation machinery.
Related Results
RNA in motion : NMR insights into ribosomal RNA dynamics
RNA in motion : NMR insights into ribosomal RNA dynamics
<p dir="ltr">RNAs perform many different tasks in biology. The ribosome is an RNA-protein complex which synthesises proteins based on the message from DNA. It consists of two...
RNA in motion : NMR insights into ribosomal RNA dynamics
RNA in motion : NMR insights into ribosomal RNA dynamics
<p dir="ltr">RNAs perform many different tasks in biology. The ribosome is an RNA-protein complex which synthesises proteins based on the message from DNA. It consists of two...
Interactions entre levures Saccharomyces cerevisiae et non-Saccharomyces en vinification. : Incidence de facteurs de l’environnement.
Interactions entre levures Saccharomyces cerevisiae et non-Saccharomyces en vinification. : Incidence de facteurs de l’environnement.
Les levures non-Saccharomyces, naturellement présentes dans les moûts, peuvent impacter positivement ou négativement la qualité des vins. Depuis quelques années, l’utilisation de c...
Sustainable Production of Bioethanol by Zymomonas mobilis and Saccharomyces cerevisiae using Rice Husk and Groundnut Shell as Substrates
Sustainable Production of Bioethanol by Zymomonas mobilis and Saccharomyces cerevisiae using Rice Husk and Groundnut Shell as Substrates
Background of Study: Plant waste such as rice husk and groundnut shell are generated in large amounts, these waste presents a tremendous pollution to the environment. Worldwide, th...
โครงสร้างและสมบัติเชิงหน้าที่ของบีตากลูแคนที่สกัดจากยีสต์ Saccharomyces ต่างชนิดและสายพันธุ์
โครงสร้างและสมบัติเชิงหน้าที่ของบีตากลูแคนที่สกัดจากยีสต์ Saccharomyces ต่างชนิดและสายพันธุ์
งานวิจัยนี้มีวัตถุประสงค์เพื่อศึกษาโครงสร้างและสมบัติเชิงหน้าที่ของสารสกัดบีตากลูแคนจากยีสต์ Saccharomyces 5 สายพันธุ์ คือ S. bayanus EC1118 S. cerevisiae FT1 S. cerevisiae Fermipa...
Genomic and phenotypic comparison of
Saccharomyces cerevisiae
and
Saccharomyces boulardii
Genomic and phenotypic comparison of
Saccharomyces cerevisiae
and
Saccharomyces boulardii
Abstract
Saccharomyces boulardii
is a widely used probiotic yeast with clinical efficacy against certain gastrointestinal disor...
Diversity of Essential oils in Sop Cop Nature Reserve in Sơn La province
Diversity of Essential oils in Sop Cop Nature Reserve in Sơn La province
According the results of the plant species for essential oil in Sop Cop Nature Reserve Area have identified 228 species, 158 genus of 66 families belong Pinophyta and Magnoliophy...
Antimicrobial Effects of Ocimum gratissimum Extracts on the Spoilage Organisms Isolated from Yoghurt Samples
Antimicrobial Effects of Ocimum gratissimum Extracts on the Spoilage Organisms Isolated from Yoghurt Samples
Ocimum gratissimum (OG) is recognised for its nutritional, antioxidant, and antimicrobial properties, making it a strong candidate for natural food preservation. This study evaluat...

