Javascript must be enabled to continue!
Bacteriocins in archaea & archaeocins in bacteria
View through CrossRef
ABSTRACT
Archaea and bacteria routinely live side by side in microbial communities and must interact at least on occasion. Whether such cross-Domain interactions are dominated by mutual disregard, co-operation, or conflict remains fundamentally unknown. One potential window into archaeal-bacterial conflict is to ask whether some of the molecular weapons bacteria wield to kill other bacteria are present in archaea, and vice versa. Here, to start to address this question, we carry out a phylogenomic survey of bacteriocins in archaeal genomes and archaeocins in bacterial genomes. We find that more than 20% of known bacteriocins – proteins deployed by bacteria against other bacteria - have at least one homolog in archaea. Typically, these archaeal homologs are related to bacteriocins targeting (and encoded by) monoderm bacteria. Based on conservation of functionally critical residues, protein structure, and accessory genes critical for bacteriocin biosynthesis, we highlight homologs of subtilosin A, encoded in some
Thermococcus
archaea, as promising candidates for experimental follow- up work. We also show that halocin C8, originally described in
Natrinema
archaea, is comparatively common in bacterial genomes, including a number of skin-resident
Staphylococcus
species. Our results suggest that bacteriocins/archaeocins are shared across Domain boundaries with some regularity. While many instances are phylogenetically isolated – raising doubts about their functional importance and integration into host physiology – some bacteriocins are present in multiple related genomes and embedded in broader biosynthetic gene clusters that are also found in the original producers, suggesting that archaea and bacteria periodically use the same weapon systems in conflicts with other microbes. Further study of these systems might elucidate cross-Domain conflict and the nature of archaeal-bacterial interactions in different environments.
Title: Bacteriocins in archaea & archaeocins in bacteria
Description:
ABSTRACT
Archaea and bacteria routinely live side by side in microbial communities and must interact at least on occasion.
Whether such cross-Domain interactions are dominated by mutual disregard, co-operation, or conflict remains fundamentally unknown.
One potential window into archaeal-bacterial conflict is to ask whether some of the molecular weapons bacteria wield to kill other bacteria are present in archaea, and vice versa.
Here, to start to address this question, we carry out a phylogenomic survey of bacteriocins in archaeal genomes and archaeocins in bacterial genomes.
We find that more than 20% of known bacteriocins – proteins deployed by bacteria against other bacteria - have at least one homolog in archaea.
Typically, these archaeal homologs are related to bacteriocins targeting (and encoded by) monoderm bacteria.
Based on conservation of functionally critical residues, protein structure, and accessory genes critical for bacteriocin biosynthesis, we highlight homologs of subtilosin A, encoded in some
Thermococcus
archaea, as promising candidates for experimental follow- up work.
We also show that halocin C8, originally described in
Natrinema
archaea, is comparatively common in bacterial genomes, including a number of skin-resident
Staphylococcus
species.
Our results suggest that bacteriocins/archaeocins are shared across Domain boundaries with some regularity.
While many instances are phylogenetically isolated – raising doubts about their functional importance and integration into host physiology – some bacteriocins are present in multiple related genomes and embedded in broader biosynthetic gene clusters that are also found in the original producers, suggesting that archaea and bacteria periodically use the same weapon systems in conflicts with other microbes.
Further study of these systems might elucidate cross-Domain conflict and the nature of archaeal-bacterial interactions in different environments.
Related Results
Focus on slow rotators - first results from stellar occultations campaign on long-period asteroids
Focus on slow rotators - first results from stellar occultations campaign on long-period asteroids
<p><strong>Most asteroids are slow rotators &#160;</strong> &#160;&#160;&#160;&#160;&#160;...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">ΠΗΛΙΝΑ ΙΓ&Delta...
Morphometry of an hexagonal pit crater in Pavonis Mons, Mars
Morphometry of an hexagonal pit crater in Pavonis Mons, Mars
<p><strong>Introduction:</strong></p>
<p>Pit craters are peculiar depressions found in almost every terrestria...
Un manoscritto equivocato del copista santo Theophilos († 1548)
Un manoscritto equivocato del copista santo Theophilos († 1548)
<p><font size="3"><span class="A1"><span style="font-family: 'Times New Roman','serif'">ΕΝΑ ΛΑΝ&...
A Touch of Space Weather - Outreach project for visually impaired students
A Touch of Space Weather - Outreach project for visually impaired students
<p><em><span data-preserver-spaces="true">'A Touch of Space Weather' is a project that brings space weather science into...
Ballistic landslides on comet 67P/Churyumov–Gerasimenko
Ballistic landslides on comet 67P/Churyumov–Gerasimenko
<p><strong>Introduction:</strong></p><p>The slow ejecta (i.e., with velocity lower than escape velocity) and l...
Stress transfer process in doublet events studied by numerical TREMOL simulations: Study case Ometepec 1982 Doublet.
Stress transfer process in doublet events studied by numerical TREMOL simulations: Study case Ometepec 1982 Doublet.
<pre class="western"><span><span lang="en-US">Earthquake doublets are a characteristic rupture <...

