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An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection

Infection with obligatory intracellular bacteria is difficult to treat, as intracellular targets and delivery methods of therapeutics are not well known. Ehrlichia translocated factor-1 (Etf-1), a type IV secretion system (T4SS) effector, is a primary virulence factor for an obligatory intracellular...

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Autores principales: Zhang, Wenqing, Lin, Mingqun, Yan, Qi, Budachetri, Khemraj, Hou, Libo, Sahni, Ashweta, Liu, Hongyan, Han, Nien-Ching, Lakritz, Jeffrey, Pei, Dehua, Rikihisa, Yasuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8106314/
https://www.ncbi.nlm.nih.gov/pubmed/33903242
http://dx.doi.org/10.1073/pnas.2024102118
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author Zhang, Wenqing
Lin, Mingqun
Yan, Qi
Budachetri, Khemraj
Hou, Libo
Sahni, Ashweta
Liu, Hongyan
Han, Nien-Ching
Lakritz, Jeffrey
Pei, Dehua
Rikihisa, Yasuko
author_facet Zhang, Wenqing
Lin, Mingqun
Yan, Qi
Budachetri, Khemraj
Hou, Libo
Sahni, Ashweta
Liu, Hongyan
Han, Nien-Ching
Lakritz, Jeffrey
Pei, Dehua
Rikihisa, Yasuko
author_sort Zhang, Wenqing
collection PubMed
description Infection with obligatory intracellular bacteria is difficult to treat, as intracellular targets and delivery methods of therapeutics are not well known. Ehrlichia translocated factor-1 (Etf-1), a type IV secretion system (T4SS) effector, is a primary virulence factor for an obligatory intracellular bacterium, Ehrlichia chaffeensis. In this study, we developed Etf-1–specific nanobodies (Nbs) by immunizing a llama to determine if intracellular Nbs block Etf-1 functions and Ehrlichia infection. Of 24 distinct anti–Etf-1 Nbs, NbD7 blocked mitochondrial localization of Etf-1–GFP in cotransfected cells. NbD7 and control Nb (NbD3) bound to different regions of Etf-1. Size-exclusion chromatography showed that the NbD7 and Etf-1 complex was more stable than the NbD3 and Etf-1 complex. Intracellular expression of NbD7 inhibited three activities of Etf-1 and E. chaffeensis: up-regulation of mitochondrial manganese superoxide dismutase, reduction of intracellular reactive oxygen species, and inhibition of cellular apoptosis. Consequently, intracellular NbD7 inhibited Ehrlichia infection, whereas NbD3 did not. To safely and effectively deliver Nbs into the host cell cytoplasm, NbD7 was conjugated to cyclized cell-permeable peptide 12 (CPP12-NbD7). CPP12-NbD7 effectively entered mammalian cells and abrogated the blockade of cellular apoptosis caused by E. chaffeensis and inhibited infection by E. chaffeensis in cell culture and in a severe combined-immunodeficiency mouse model. Our results demonstrate the development of an Nb that interferes with T4SS effector functions and intracellular pathogen infection, along with an intracellular delivery method for this Nb. This strategy should overcome current barriers to advance mechanistic research and develop therapies complementary or alternative to the current broad-spectrum antibiotic.
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spelling pubmed-81063142021-05-12 An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection Zhang, Wenqing Lin, Mingqun Yan, Qi Budachetri, Khemraj Hou, Libo Sahni, Ashweta Liu, Hongyan Han, Nien-Ching Lakritz, Jeffrey Pei, Dehua Rikihisa, Yasuko Proc Natl Acad Sci U S A Biological Sciences Infection with obligatory intracellular bacteria is difficult to treat, as intracellular targets and delivery methods of therapeutics are not well known. Ehrlichia translocated factor-1 (Etf-1), a type IV secretion system (T4SS) effector, is a primary virulence factor for an obligatory intracellular bacterium, Ehrlichia chaffeensis. In this study, we developed Etf-1–specific nanobodies (Nbs) by immunizing a llama to determine if intracellular Nbs block Etf-1 functions and Ehrlichia infection. Of 24 distinct anti–Etf-1 Nbs, NbD7 blocked mitochondrial localization of Etf-1–GFP in cotransfected cells. NbD7 and control Nb (NbD3) bound to different regions of Etf-1. Size-exclusion chromatography showed that the NbD7 and Etf-1 complex was more stable than the NbD3 and Etf-1 complex. Intracellular expression of NbD7 inhibited three activities of Etf-1 and E. chaffeensis: up-regulation of mitochondrial manganese superoxide dismutase, reduction of intracellular reactive oxygen species, and inhibition of cellular apoptosis. Consequently, intracellular NbD7 inhibited Ehrlichia infection, whereas NbD3 did not. To safely and effectively deliver Nbs into the host cell cytoplasm, NbD7 was conjugated to cyclized cell-permeable peptide 12 (CPP12-NbD7). CPP12-NbD7 effectively entered mammalian cells and abrogated the blockade of cellular apoptosis caused by E. chaffeensis and inhibited infection by E. chaffeensis in cell culture and in a severe combined-immunodeficiency mouse model. Our results demonstrate the development of an Nb that interferes with T4SS effector functions and intracellular pathogen infection, along with an intracellular delivery method for this Nb. This strategy should overcome current barriers to advance mechanistic research and develop therapies complementary or alternative to the current broad-spectrum antibiotic. National Academy of Sciences 2021-05-04 2021-04-26 /pmc/articles/PMC8106314/ /pubmed/33903242 http://dx.doi.org/10.1073/pnas.2024102118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Zhang, Wenqing
Lin, Mingqun
Yan, Qi
Budachetri, Khemraj
Hou, Libo
Sahni, Ashweta
Liu, Hongyan
Han, Nien-Ching
Lakritz, Jeffrey
Pei, Dehua
Rikihisa, Yasuko
An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title_full An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title_fullStr An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title_full_unstemmed An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title_short An intracellular nanobody targeting T4SS effector inhibits Ehrlichia infection
title_sort intracellular nanobody targeting t4ss effector inhibits ehrlichia infection
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8106314/
https://www.ncbi.nlm.nih.gov/pubmed/33903242
http://dx.doi.org/10.1073/pnas.2024102118
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