Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions.
The canonical ATP-dependent protease Lon participates in an assortment of biological processes in bacteria, including the catalysis of damaged or senescent proteins and short-lived regulatory proteins. Borrelia spirochetes are unusual in that they code for two putative ATP-dependent Lon homologs, Lo...
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2009-11-01
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doaj-c2ae5dd90c254a8383852219841107792020-11-25T01:18:26ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742009-11-01511e100067610.1371/journal.ppat.1000676Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions.James L ColemanLaura I KatonaChristopher KuhlowAlvaro ToledoNihal A OkanRafal TokarzJorge L BenachThe canonical ATP-dependent protease Lon participates in an assortment of biological processes in bacteria, including the catalysis of damaged or senescent proteins and short-lived regulatory proteins. Borrelia spirochetes are unusual in that they code for two putative ATP-dependent Lon homologs, Lon-1 and Lon-2. Borrelia burgdorferi, the etiologic agent of Lyme disease, is transmitted through the blood feeding of Ixodes ticks. Previous work in our laboratory reported that B. burgdorferi lon-1 is upregulated transcriptionally by exposure to blood in vitro, while lon-2 is not. Because blood induction of Lon-1 may be of importance in the regulation of virulence factors critical for spirochete transmission, the clarification of functional roles for these two proteases in B. burgdorferi was the object of this study. On the chromosome, lon-2 is immediately downstream of ATP-dependent proteases clpP and clpX, an arrangement identical to that of lon of Escherichia coli. Phylogenetic analysis revealed that Lon-1 and Lon-2 cluster separately due to differences in the NH(2)-terminal substrate binding domains that may reflect differences in substrate specificity. Recombinant Lon-1 manifested properties of an ATP-dependent chaperone-protease in vitro but did not complement an E. coli Lon mutant, while Lon-2 corrected two characteristic Lon-mutant phenotypes. We conclude that B. burgdorferi Lons -1 and -2 have distinct functional roles. Lon-2 functions in a manner consistent with canonical Lon, engaged in cellular homeostasis. Lon-1, by virtue of its blood induction, and as a unique feature of the Borreliae, may be important in host adaptation from the arthropod to a warm-blooded host.http://europepmc.org/articles/PMC2777506?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
James L Coleman Laura I Katona Christopher Kuhlow Alvaro Toledo Nihal A Okan Rafal Tokarz Jorge L Benach |
spellingShingle |
James L Coleman Laura I Katona Christopher Kuhlow Alvaro Toledo Nihal A Okan Rafal Tokarz Jorge L Benach Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. PLoS Pathogens |
author_facet |
James L Coleman Laura I Katona Christopher Kuhlow Alvaro Toledo Nihal A Okan Rafal Tokarz Jorge L Benach |
author_sort |
James L Coleman |
title |
Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. |
title_short |
Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. |
title_full |
Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. |
title_fullStr |
Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. |
title_full_unstemmed |
Evidence that two ATP-dependent (Lon) proteases in Borrelia burgdorferi serve different functions. |
title_sort |
evidence that two atp-dependent (lon) proteases in borrelia burgdorferi serve different functions. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2009-11-01 |
description |
The canonical ATP-dependent protease Lon participates in an assortment of biological processes in bacteria, including the catalysis of damaged or senescent proteins and short-lived regulatory proteins. Borrelia spirochetes are unusual in that they code for two putative ATP-dependent Lon homologs, Lon-1 and Lon-2. Borrelia burgdorferi, the etiologic agent of Lyme disease, is transmitted through the blood feeding of Ixodes ticks. Previous work in our laboratory reported that B. burgdorferi lon-1 is upregulated transcriptionally by exposure to blood in vitro, while lon-2 is not. Because blood induction of Lon-1 may be of importance in the regulation of virulence factors critical for spirochete transmission, the clarification of functional roles for these two proteases in B. burgdorferi was the object of this study. On the chromosome, lon-2 is immediately downstream of ATP-dependent proteases clpP and clpX, an arrangement identical to that of lon of Escherichia coli. Phylogenetic analysis revealed that Lon-1 and Lon-2 cluster separately due to differences in the NH(2)-terminal substrate binding domains that may reflect differences in substrate specificity. Recombinant Lon-1 manifested properties of an ATP-dependent chaperone-protease in vitro but did not complement an E. coli Lon mutant, while Lon-2 corrected two characteristic Lon-mutant phenotypes. We conclude that B. burgdorferi Lons -1 and -2 have distinct functional roles. Lon-2 functions in a manner consistent with canonical Lon, engaged in cellular homeostasis. Lon-1, by virtue of its blood induction, and as a unique feature of the Borreliae, may be important in host adaptation from the arthropod to a warm-blooded host. |
url |
http://europepmc.org/articles/PMC2777506?pdf=render |
work_keys_str_mv |
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