Cargando…

Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein

Lipoprotein diacylglyceryl transferase (Lgt) catalyzes the first step in the biogenesis of Gram-negative bacterial lipoproteins which play crucial roles in bacterial growth and pathogenesis. We demonstrate that Lgt depletion in a clinical uropathogenic Escherichia coli strain leads to permeabilizati...

Descripción completa

Detalles Bibliográficos
Autores principales: Diao, Jingyu, Komura, Rie, Sano, Tatsuya, Pantua, Homer, Storek, Kelly M., Inaba, Hiroko, Ogawa, Haruhiko, Noland, Cameron L., Peng, Yutian, Gloor, Susan L., Yan, Donghong, Kang, Jing, Katakam, Anand Kumar, Volny, Michael, Liu, Peter, Nickerson, Nicholas N., Sandoval, Wendy, Austin, Cary D., Murray, Jeremy, Rutherford, Steven T., Reichelt, Mike, Xu, Yiming, Xu, Min, Yanagida, Hayato, Nishikawa, Junichi, Reid, Patrick C., Cunningham, Christian N., Kapadia, Sharookh B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8316002/
https://www.ncbi.nlm.nih.gov/pubmed/33875545
http://dx.doi.org/10.1128/JB.00149-21
_version_ 1783729803123228672
author Diao, Jingyu
Komura, Rie
Sano, Tatsuya
Pantua, Homer
Storek, Kelly M.
Inaba, Hiroko
Ogawa, Haruhiko
Noland, Cameron L.
Peng, Yutian
Gloor, Susan L.
Yan, Donghong
Kang, Jing
Katakam, Anand Kumar
Volny, Michael
Liu, Peter
Nickerson, Nicholas N.
Sandoval, Wendy
Austin, Cary D.
Murray, Jeremy
Rutherford, Steven T.
Reichelt, Mike
Xu, Yiming
Xu, Min
Yanagida, Hayato
Nishikawa, Junichi
Reid, Patrick C.
Cunningham, Christian N.
Kapadia, Sharookh B.
author_facet Diao, Jingyu
Komura, Rie
Sano, Tatsuya
Pantua, Homer
Storek, Kelly M.
Inaba, Hiroko
Ogawa, Haruhiko
Noland, Cameron L.
Peng, Yutian
Gloor, Susan L.
Yan, Donghong
Kang, Jing
Katakam, Anand Kumar
Volny, Michael
Liu, Peter
Nickerson, Nicholas N.
Sandoval, Wendy
Austin, Cary D.
Murray, Jeremy
Rutherford, Steven T.
Reichelt, Mike
Xu, Yiming
Xu, Min
Yanagida, Hayato
Nishikawa, Junichi
Reid, Patrick C.
Cunningham, Christian N.
Kapadia, Sharookh B.
author_sort Diao, Jingyu
collection PubMed
description Lipoprotein diacylglyceryl transferase (Lgt) catalyzes the first step in the biogenesis of Gram-negative bacterial lipoproteins which play crucial roles in bacterial growth and pathogenesis. We demonstrate that Lgt depletion in a clinical uropathogenic Escherichia coli strain leads to permeabilization of the outer membrane and increased sensitivity to serum killing and antibiotics. Importantly, we identify G2824 as the first-described Lgt inhibitor that potently inhibits Lgt biochemical activity in vitro and is bactericidal against wild-type Acinetobacter baumannii and E. coli strains. While deletion of a gene encoding a major outer membrane lipoprotein, lpp, leads to rescue of bacterial growth after genetic depletion or pharmacologic inhibition of the downstream type II signal peptidase, LspA, no such rescue of growth is detected after Lgt depletion or treatment with G2824. Inhibition of Lgt does not lead to significant accumulation of peptidoglycan-linked Lpp in the inner membrane. Our data validate Lgt as a novel antibacterial target and suggest that, unlike downstream steps in lipoprotein biosynthesis and transport, inhibition of Lgt may not be sensitive to one of the most common resistance mechanisms that invalidate inhibitors of bacterial lipoprotein biosynthesis and transport. IMPORTANCE As the emerging threat of multidrug-resistant (MDR) bacteria continues to increase, no new classes of antibiotics have been discovered in the last 50 years. While previous attempts to inhibit the lipoprotein biosynthetic (LspA) or transport (LolCDE) pathways have been made, most efforts have been hindered by the emergence of a common mechanism leading to resistance, namely, the deletion of the gene encoding a major Gram-negative outer membrane lipoprotein lpp. Our unexpected finding that inhibition of Lgt is not susceptible to lpp deletion-mediated resistance uncovers the complexity of bacterial lipoprotein biogenesis and the corresponding enzymes involved in this essential outer membrane biogenesis pathway and potentially points to new antibacterial targets in this pathway.
format Online
Article
Text
id pubmed-8316002
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-83160022021-12-08 Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein Diao, Jingyu Komura, Rie Sano, Tatsuya Pantua, Homer Storek, Kelly M. Inaba, Hiroko Ogawa, Haruhiko Noland, Cameron L. Peng, Yutian Gloor, Susan L. Yan, Donghong Kang, Jing Katakam, Anand Kumar Volny, Michael Liu, Peter Nickerson, Nicholas N. Sandoval, Wendy Austin, Cary D. Murray, Jeremy Rutherford, Steven T. Reichelt, Mike Xu, Yiming Xu, Min Yanagida, Hayato Nishikawa, Junichi Reid, Patrick C. Cunningham, Christian N. Kapadia, Sharookh B. J Bacteriol Research Article Lipoprotein diacylglyceryl transferase (Lgt) catalyzes the first step in the biogenesis of Gram-negative bacterial lipoproteins which play crucial roles in bacterial growth and pathogenesis. We demonstrate that Lgt depletion in a clinical uropathogenic Escherichia coli strain leads to permeabilization of the outer membrane and increased sensitivity to serum killing and antibiotics. Importantly, we identify G2824 as the first-described Lgt inhibitor that potently inhibits Lgt biochemical activity in vitro and is bactericidal against wild-type Acinetobacter baumannii and E. coli strains. While deletion of a gene encoding a major outer membrane lipoprotein, lpp, leads to rescue of bacterial growth after genetic depletion or pharmacologic inhibition of the downstream type II signal peptidase, LspA, no such rescue of growth is detected after Lgt depletion or treatment with G2824. Inhibition of Lgt does not lead to significant accumulation of peptidoglycan-linked Lpp in the inner membrane. Our data validate Lgt as a novel antibacterial target and suggest that, unlike downstream steps in lipoprotein biosynthesis and transport, inhibition of Lgt may not be sensitive to one of the most common resistance mechanisms that invalidate inhibitors of bacterial lipoprotein biosynthesis and transport. IMPORTANCE As the emerging threat of multidrug-resistant (MDR) bacteria continues to increase, no new classes of antibiotics have been discovered in the last 50 years. While previous attempts to inhibit the lipoprotein biosynthetic (LspA) or transport (LolCDE) pathways have been made, most efforts have been hindered by the emergence of a common mechanism leading to resistance, namely, the deletion of the gene encoding a major Gram-negative outer membrane lipoprotein lpp. Our unexpected finding that inhibition of Lgt is not susceptible to lpp deletion-mediated resistance uncovers the complexity of bacterial lipoprotein biogenesis and the corresponding enzymes involved in this essential outer membrane biogenesis pathway and potentially points to new antibacterial targets in this pathway. American Society for Microbiology 2021-06-08 /pmc/articles/PMC8316002/ /pubmed/33875545 http://dx.doi.org/10.1128/JB.00149-21 Text en Copyright © 2021 Diao et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Diao, Jingyu
Komura, Rie
Sano, Tatsuya
Pantua, Homer
Storek, Kelly M.
Inaba, Hiroko
Ogawa, Haruhiko
Noland, Cameron L.
Peng, Yutian
Gloor, Susan L.
Yan, Donghong
Kang, Jing
Katakam, Anand Kumar
Volny, Michael
Liu, Peter
Nickerson, Nicholas N.
Sandoval, Wendy
Austin, Cary D.
Murray, Jeremy
Rutherford, Steven T.
Reichelt, Mike
Xu, Yiming
Xu, Min
Yanagida, Hayato
Nishikawa, Junichi
Reid, Patrick C.
Cunningham, Christian N.
Kapadia, Sharookh B.
Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title_full Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title_fullStr Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title_full_unstemmed Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title_short Inhibition of Escherichia coli Lipoprotein Diacylglyceryl Transferase Is Insensitive to Resistance Caused by Deletion of Braun’s Lipoprotein
title_sort inhibition of escherichia coli lipoprotein diacylglyceryl transferase is insensitive to resistance caused by deletion of braun’s lipoprotein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8316002/
https://www.ncbi.nlm.nih.gov/pubmed/33875545
http://dx.doi.org/10.1128/JB.00149-21
work_keys_str_mv AT diaojingyu inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT komurarie inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT sanotatsuya inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT pantuahomer inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT storekkellym inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT inabahiroko inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT ogawaharuhiko inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT nolandcameronl inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT pengyutian inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT gloorsusanl inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT yandonghong inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT kangjing inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT katakamanandkumar inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT volnymichael inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT liupeter inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT nickersonnicholasn inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT sandovalwendy inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT austincaryd inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT murrayjeremy inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT rutherfordstevent inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT reicheltmike inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT xuyiming inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT xumin inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT yanagidahayato inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT nishikawajunichi inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT reidpatrickc inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT cunninghamchristiann inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein
AT kapadiasharookhb inhibitionofescherichiacolilipoproteindiacylglyceryltransferaseisinsensitivetoresistancecausedbydeletionofbraunslipoprotein