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  3. Long-term live imaging reveals cytosolic immune responses of host hepatocytes against Plasmodium infection and parasite escape mechanisms
 

Long-term live imaging reveals cytosolic immune responses of host hepatocytes against Plasmodium infection and parasite escape mechanisms

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BORIS DOI
10.7892/boris.71017
Date of Publication
July 24, 2015
Publication Type
Article
Division/Institute

Institut für Zellbiol...

Author
Prado, Monica
Eickel, Nina
De Niz Hidalgo, Mariana Isabel
Institut für Zellbiologie (IZB)
Heitmann, Anna
Agop Nersesian, Carolina
Institut für Zellbiologie (IZB)
Wacker, Rahel Corina
Institut für Zellbiologie (IZB)
Schmuckli-Maurer, Jacqueline
Caldelari, Reto
Institut für Zellbiologie (IZB)
Janse, Chris J
Khan, Shahid M
May, Jürgen
Meyer, Christian G
Heussler, Volkerorcid-logo
Institut für Zellbiologie (IZB)
Subject(s)

500 - Science::570 - ...

600 - Technology::630...

500 - Science

Series
Autophagy
ISSN or ISBN (if monograph)
1554-8627
Publisher
Landes Bioscience
Language
English
Publisher DOI
10.1080/15548627.2015.1067361
PubMed ID
26208778
Uncontrolled Keywords

ATG

autophagy related Atg...

(yeast) autophagy-rel...

confocal line scannin...

circumsporozoite prot...

cathepsin D Cytosolic...

LC3 DAPI

4′

6-diamidino-2-phenyli...

Dulbecco modified Eag...

Earle balanced salt s...

European Collection o...

electron microscopy E...

exported protein 1 FA...

fluorescent-activated...

fetal calf serum GFP

green fluorescent pro...

hematoxylin and eosin...

human hepatoma cells ...

immunofluorescence as...

lysosomal-associated ...

LC3-associated phagoc...

galectins MAP1LC3/LC3...

microtubule-associate...

mouse embryonic fibro...

minimum essential med...

mechanistic target of...

phosphate-buffered sa...

phosphatidylethanolam...

parasite membrane PV

parasitophorous vacuo...

parasitophorous vacuo...

Plasmodium berghei Pb...

Plasmodium berghei ex...

phosphatidylinositol-...

red fluorescence prot...

standard deviation SQ...

sequestosome 1 STED

stimulated emission d...

upregulated in infect...

wild type atg5−/−

autophagy-related 5 k...

early schizont hpi

hours postinfection l...

late schizont long te...

sporozoite ubiquitin

Description
Plasmodium parasites are transmitted by Anopheles mosquitoes to the mammalian host and actively infect hepatocytes after passive transport in the bloodstream to the liver. In their target host hepatocyte, parasites reside within a parasitophorous vacuole (PV). In the present study it was shown that the parasitophorous vacuole membrane (PVM) can be targeted by autophagy marker proteins LC3, ubiquitin, and SQSTM1/p62 as well as by lysosomes in a process resembling selective autophagy. The dynamics of autophagy marker proteins in individual Plasmodium berghei-infected hepatocytes were followed by live imaging throughout the entire development of the parasite in the liver. Although the host cell very efficiently recognized the invading parasite in its vacuole, the majority of parasites survived this initial attack. Successful parasite development correlated with the gradual loss of all analyzed autophagy marker proteins and associated lysosomes from the PVM. However, other autophagic events like nonselective canonical autophagy in the host cell continued. This was indicated as LC3, although not labeling the PVM anymore, still localized to autophagosomes in the infected host cell. It appears that growing parasites even benefit from this form of nonselective host cell autophagy as an additional source of nutrients, as in host cells deficient for autophagy, parasite growth was retarded and could partly be rescued by the supply of additional amino acid in the medium. Importantly, mouse infections with P. berghei sporozoites confirmed LC3 dynamics, the positive effect of autophagy activation on parasite growth, and negative effects upon autophagy inhibition.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/134659
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File(s)
FileFile TypeFormatSizeLicensePublisher/Copright statementContent
4353_2_merged_1429091335_rs.pdftextAdobe PDF1.49 MBpublisheracceptedOpen
Prado 2015 Autophagy.pdftextAdobe PDF2.26 MBpublisherpublished restricted
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