Javascript must be enabled to continue!
Control of three-carbon amino acid homeostasis by promiscuous importers and exporters in Bacillus subtilis : role of the “sleeping beauty” amino acid exporters
View through CrossRef
ABSTRACT
The Gram-positive model bacterium
Bacillus subtilis
can acquire amino acids by import,
de novo
biosynthesis, or degradation of proteins and peptides. The accumulation of several amino acids inhibits the growth of
B. subtilis
, probably due to misincorporation into cellular macromolecules such as proteins or peptidoglycan or due to interference with other amino acid biosynthetic pathways. Here, we studied the adaptation of
B. subtilis
to toxic concentrations of the three-carbon amino acids L-alanine, β-alanine, and 2,3-diaminopropionic acid, as well as the two-carbon amino acid glycine. Resistance to the non-proteinogenic amino acid β-alanine, which is a precursor for coenzyme A biosynthesis, is achieved by mutations that either activate a cryptic amino acid exporter, AexA (previously YdeD), or inactivate the amino acid importers AimA, AimB (previously YbxG), and BcaP. The
aexA
gene is very poorly expressed under most conditions studied. However, mutations affecting the transcription factor AerA (previously YdeC) can result in strong constitutive
aexA
expression. AexA is the first characterized member of a group of amino acid exporters in
B. subtilis
, which are all very poorly expressed. Therefore, we suggest to call this group “sleeping beauty amino acid exporters.” 2,3-Diaminopropionic acid can also be exported by AexA, and this amino acid also seems to be a natural substrate of AerA/AexA, as it can cause a slight but significant induction of
aexA
expression, and AexA also provides some natural resistance toward 2,3-diaminopropionic acid. Moreover, our work shows how low-specificity amino acid transporters contribute to amino acid homeostasis in
B. subtilis
.
IMPORTANCE
Even though
Bacillus subtilis
is one of the most-studied bacteria, amino acid homeostasis in this organism is not fully understood. We have identified import and export systems for the C2 and C3 amino acids. Our work demonstrates that the responsible amino acid permeases contribute in a rather promiscuitive way to amino acid uptake. In addition, we have discovered AexA, the first member of a group of very poorly expressed amino acid exporters in
B. subtilis
that we call “sleeping beauty amino acid exporters.” The expression of these transporters is typically triggered by mutations in corresponding regulator genes that are acquired upon exposure to toxic amino acids. These exporters are ubiquitous in all domains of life. It is tempting to speculate that many of them are not expressed until the cells experience selective pressure by toxic compounds, and they protect the cells from rare but potentially dangerous encounters with such compounds.
American Society for Microbiology
Title: Control of three-carbon amino acid homeostasis by promiscuous importers and exporters in
Bacillus subtilis
: role of the “sleeping beauty” amino acid exporters
Description:
ABSTRACT
The Gram-positive model bacterium
Bacillus subtilis
can acquire amino acids by import,
de novo
biosynthesis, or degradation of proteins and peptides.
The accumulation of several amino acids inhibits the growth of
B.
subtilis
, probably due to misincorporation into cellular macromolecules such as proteins or peptidoglycan or due to interference with other amino acid biosynthetic pathways.
Here, we studied the adaptation of
B.
subtilis
to toxic concentrations of the three-carbon amino acids L-alanine, β-alanine, and 2,3-diaminopropionic acid, as well as the two-carbon amino acid glycine.
Resistance to the non-proteinogenic amino acid β-alanine, which is a precursor for coenzyme A biosynthesis, is achieved by mutations that either activate a cryptic amino acid exporter, AexA (previously YdeD), or inactivate the amino acid importers AimA, AimB (previously YbxG), and BcaP.
The
aexA
gene is very poorly expressed under most conditions studied.
However, mutations affecting the transcription factor AerA (previously YdeC) can result in strong constitutive
aexA
expression.
AexA is the first characterized member of a group of amino acid exporters in
B.
subtilis
, which are all very poorly expressed.
Therefore, we suggest to call this group “sleeping beauty amino acid exporters.
” 2,3-Diaminopropionic acid can also be exported by AexA, and this amino acid also seems to be a natural substrate of AerA/AexA, as it can cause a slight but significant induction of
aexA
expression, and AexA also provides some natural resistance toward 2,3-diaminopropionic acid.
Moreover, our work shows how low-specificity amino acid transporters contribute to amino acid homeostasis in
B.
subtilis
.
IMPORTANCE
Even though
Bacillus subtilis
is one of the most-studied bacteria, amino acid homeostasis in this organism is not fully understood.
We have identified import and export systems for the C2 and C3 amino acids.
Our work demonstrates that the responsible amino acid permeases contribute in a rather promiscuitive way to amino acid uptake.
In addition, we have discovered AexA, the first member of a group of very poorly expressed amino acid exporters in
B.
subtilis
that we call “sleeping beauty amino acid exporters.
” The expression of these transporters is typically triggered by mutations in corresponding regulator genes that are acquired upon exposure to toxic amino acids.
These exporters are ubiquitous in all domains of life.
It is tempting to speculate that many of them are not expressed until the cells experience selective pressure by toxic compounds, and they protect the cells from rare but potentially dangerous encounters with such compounds.
Related Results
Control of three-carbon amino acid homeostasis by promiscuous importers and exporters in
Bacillus subtilis
: Role of the sleeping beauty family of amino acid exporters
Control of three-carbon amino acid homeostasis by promiscuous importers and exporters in
Bacillus subtilis
: Role of the sleeping beauty family of amino acid exporters
ABSTRACT
The Gram-positive model bacterium
Bacillus subtilis
can acquire amino acids by import,
...
Amino Acids, Survey
Amino Acids, Survey
AbstractAmino acids are the main components of proteins. Approximately 20 amino acids are common constituents of proteins and are called protein amino acids, or primary protein ami...
Response of Bacillus megaterium and Bacillus mucilaginosus Strains on Yield and Quality of Soybean
Response of Bacillus megaterium and Bacillus mucilaginosus Strains on Yield and Quality of Soybean
At present due to continuous use of phosphatic and potassic fertilizers a deposits of these nutrient have increased in the soil of studied area, and Bacillus megaterium and Bacillu...
การสำรวจหาประสิทธิภาพของสายพันธุ์ต่าง ๆ ของ Bacillus thuringiensis ในการควบคุม หนอนผี้เสื้อกินไขผึ้งขนาดเล็ก Achroia grisella และ หนอนผีเสื้อกินไขผึ้งขนาดใหญ่ Galleria mellonella
การสำรวจหาประสิทธิภาพของสายพันธุ์ต่าง ๆ ของ Bacillus thuringiensis ในการควบคุม หนอนผี้เสื้อกินไขผึ้งขนาดเล็ก Achroia grisella และ หนอนผีเสื้อกินไขผึ้งขนาดใหญ่ Galleria mellonella
ผลการทดสอบความเป็นพิษของแบคทีเรีย Bacillus thuringiensis สายพันธุ์ต่างๆต่อหนอนผีเสื้อกินไขผึ้งขนาดเล็ก (Achroia grisella) และหนอนผีเสื้อกินไขผึ้งขนาดใหญ่ (Galleria mellonella) จากจ...
Amino Acids
Amino Acids
AbstractAmino acids are the main components of proteins. Approximately 20 amino acids are common constituents of proteins and are called protein amino acids, or primary protein ami...
Antagonistic effects of Bacillus species against bacterial multi-drug resistant (MDR) food-borne pathogens and aflatoxigenic fungi
Antagonistic effects of Bacillus species against bacterial multi-drug resistant (MDR) food-borne pathogens and aflatoxigenic fungi
This study was designed to investigate the antagonistic pattern of Bacillus species against MDR bacterial food-borne pathogens and aflatoxigenic fungi and evaluate their technologi...
Use of Sleeping Medication and Quality of Life among Older Women who Report Sleeping Difficulty
Use of Sleeping Medication and Quality of Life among Older Women who Report Sleeping Difficulty
Objective: To estimate the proportion of older women who report sleeping difficulties and/or use sleeping medication; and to identify associated factors. Method: Cross sectional su...
1064 Longitudinal Association Between Co-Sleeping and Sleep Anxiety in a 6-year Child Cohort Study
1064 Longitudinal Association Between Co-Sleeping and Sleep Anxiety in a 6-year Child Cohort Study
Abstract
Introduction
The impact of co-sleeping on children and parents has been insufficiently explored in longitudinal researc...

