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Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261

The effects of spermidine analogues [norspermidine (NSPD, 33), spermidine (SPD, 34), homospermidine (HSPD, 44) and aminopropylcadaverine (APCAD, 35)] on cell growth were studied using Escherichia coli polyamine-requiring mutant MA261. Cell growth was compared at 32°C, 37°C, and 42°C. All four analog...

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Autores principales: Yoshida, Taketo, Sakamoto, Akihiko, Terui, Yusuke, Takao, Koichi, Sugita, Yoshiaki, Yamamoto, Kaneyoshi, Ishihama, Akira, Igarashi, Kazuei, Kashiwagi, Keiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951125/
https://www.ncbi.nlm.nih.gov/pubmed/27434546
http://dx.doi.org/10.1371/journal.pone.0159494
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author Yoshida, Taketo
Sakamoto, Akihiko
Terui, Yusuke
Takao, Koichi
Sugita, Yoshiaki
Yamamoto, Kaneyoshi
Ishihama, Akira
Igarashi, Kazuei
Kashiwagi, Keiko
author_facet Yoshida, Taketo
Sakamoto, Akihiko
Terui, Yusuke
Takao, Koichi
Sugita, Yoshiaki
Yamamoto, Kaneyoshi
Ishihama, Akira
Igarashi, Kazuei
Kashiwagi, Keiko
author_sort Yoshida, Taketo
collection PubMed
description The effects of spermidine analogues [norspermidine (NSPD, 33), spermidine (SPD, 34), homospermidine (HSPD, 44) and aminopropylcadaverine (APCAD, 35)] on cell growth were studied using Escherichia coli polyamine-requiring mutant MA261. Cell growth was compared at 32°C, 37°C, and 42°C. All four analogues were taken up mainly by the PotABCD spermidine-preferential uptake system. The degree of stimulation of cell growth at 32°C and 37°C was NSPD ≥ SPD ≥ HSPD > APCAD, and SPD ≥ HSPD ≥ NSPD > APCAD, respectively. However, at 42°C, it was HSPD » SPD > NSPD > APCAD. One reason for this is HSPD was taken up effectively compared with other triamines. In addition, since natural polyamines (triamines and teteraamines) interact mainly with RNA, and the structure of RNA is more flexible at higher temperatures, HSPD probably stabilized RNA more tightly at 42°C. We have thus far found that 20 kinds of protein syntheses are stimulated by polyamines at the translational level. Among them, synthesis of OppA, RpoE and StpA was more strongly stimulated by HSPD at 42°C than at 37°C. Stabilization of the initiation region of oppA and rpoE mRNA was tighter by HSPD at 42°C than 37°C determined by circular dichroism (CD). The degree of polyamine stimulation of OppA, RpoE and StpA synthesis by NSPD, SPD and APCAD was smaller than that by HSPD at 42°C. Thus, the degree of stimulation of cell growth by spermidine analogues at the different temperatures is dependent on the stimulation of protein synthesis by some components of the polyamine modulon.
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spelling pubmed-49511252016-08-08 Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261 Yoshida, Taketo Sakamoto, Akihiko Terui, Yusuke Takao, Koichi Sugita, Yoshiaki Yamamoto, Kaneyoshi Ishihama, Akira Igarashi, Kazuei Kashiwagi, Keiko PLoS One Research Article The effects of spermidine analogues [norspermidine (NSPD, 33), spermidine (SPD, 34), homospermidine (HSPD, 44) and aminopropylcadaverine (APCAD, 35)] on cell growth were studied using Escherichia coli polyamine-requiring mutant MA261. Cell growth was compared at 32°C, 37°C, and 42°C. All four analogues were taken up mainly by the PotABCD spermidine-preferential uptake system. The degree of stimulation of cell growth at 32°C and 37°C was NSPD ≥ SPD ≥ HSPD > APCAD, and SPD ≥ HSPD ≥ NSPD > APCAD, respectively. However, at 42°C, it was HSPD » SPD > NSPD > APCAD. One reason for this is HSPD was taken up effectively compared with other triamines. In addition, since natural polyamines (triamines and teteraamines) interact mainly with RNA, and the structure of RNA is more flexible at higher temperatures, HSPD probably stabilized RNA more tightly at 42°C. We have thus far found that 20 kinds of protein syntheses are stimulated by polyamines at the translational level. Among them, synthesis of OppA, RpoE and StpA was more strongly stimulated by HSPD at 42°C than at 37°C. Stabilization of the initiation region of oppA and rpoE mRNA was tighter by HSPD at 42°C than 37°C determined by circular dichroism (CD). The degree of polyamine stimulation of OppA, RpoE and StpA synthesis by NSPD, SPD and APCAD was smaller than that by HSPD at 42°C. Thus, the degree of stimulation of cell growth by spermidine analogues at the different temperatures is dependent on the stimulation of protein synthesis by some components of the polyamine modulon. Public Library of Science 2016-07-19 /pmc/articles/PMC4951125/ /pubmed/27434546 http://dx.doi.org/10.1371/journal.pone.0159494 Text en © 2016 Yoshida et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yoshida, Taketo
Sakamoto, Akihiko
Terui, Yusuke
Takao, Koichi
Sugita, Yoshiaki
Yamamoto, Kaneyoshi
Ishihama, Akira
Igarashi, Kazuei
Kashiwagi, Keiko
Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title_full Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title_fullStr Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title_full_unstemmed Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title_short Effect of Spermidine Analogues on Cell Growth of Escherichia coli Polyamine Requiring Mutant MA261
title_sort effect of spermidine analogues on cell growth of escherichia coli polyamine requiring mutant ma261
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951125/
https://www.ncbi.nlm.nih.gov/pubmed/27434546
http://dx.doi.org/10.1371/journal.pone.0159494
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