Anne-Marie Haeberle
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Explore the profile of Anne-Marie Haeberle including associated specialties, affiliations and a list of published articles.
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21
Citations
367
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Recent Articles
1.
Caputo M, Ivanova D, Chasserot-Golaz S, Doussau F, Haeberle A, Royer C, et al.
J Neurosci
. 2024 Jun;
44(27).
PMID: 38839301
Phospholipids (PLs) are asymmetrically distributed at the plasma membrane. This asymmetric lipid distribution is transiently altered during calcium-regulated exocytosis, but the impact of this transient remodeling on presynaptic function is...
2.
Groysbeck N, Donzeau M, Stoessel A, Haeberle A, Ory S, Spehner D, et al.
Nanoscale Adv
. 2022 Sep;
3(24):6940-6948.
PMID: 36132366
Advances in microscopy technology have prompted efforts to improve the reagents required to recognize specific molecules within the intracellular environment. For high-resolution electron microscopy, conjugation of selective binders originating from...
3.
Ribeiro L, Pietri M, Ardila-Osorio H, Baudry A, Boudet-Devaud F, Bizingre C, et al.
Part Fibre Toxicol
. 2022 Jul;
19(1):48.
PMID: 35840975
Background: Epidemiological emerging evidence shows that human exposure to some nanosized materials present in the environment would contribute to the onset and/or progression of Alzheimer's disease (AD). The cellular and...
4.
Ghoroghi S, Mary B, Larnicol A, Asokan N, Klein A, Osmani N, et al.
Elife
. 2021 Jan;
10.
PMID: 33404012
Cancer extracellular vesicles (EVs) shuttle at distance and fertilize pre-metastatic niches facilitating subsequent seeding by tumor cells. However, the link between EV secretion mechanisms and their capacity to form pre-metastatic...
5.
Tanguy E, Coste de Bagneaux P, Kassas N, Ammar M, Wang Q, Haeberle A, et al.
Cell Rep
. 2020 Aug;
32(7):108026.
PMID: 32814056
Specific forms of fatty acids are well known to have beneficial health effects, but their precise mechanism of action remains elusive. Phosphatidic acid (PA) produced by phospholipase D1 (PLD1) regulates...
6.
Carmon O, Laguerre F, Riachy L, Delestre-Delacour C, Wang Q, Tanguy E, et al.
FASEB J
. 2020 Apr;
34(5):6769-6790.
PMID: 32227388
Chromogranin A (CgA) is a key luminal actor of secretory granule biogenesis at the trans-Golgi network (TGN) level but the molecular mechanisms involved remain obscure. Here, we investigated the possibility...
7.
Ezpeleta J, Baudouin V, Arellano-Anaya Z, Boudet-Devaud F, Pietri M, Baudry A, et al.
Nat Commun
. 2019 Aug;
10(1):3442.
PMID: 31371707
The presence of amyloid beta (Aβ) plaques in the brain of some individuals with Creutzfeldt-Jakob or Gertsmann-Straussler-Scheinker diseases suggests that pathogenic prions (PrP) would have stimulated the production and deposition...
8.
Ragagnin A, Ezpeleta J, Guillemain A, Boudet-Devaud F, Haeberle A, Demais V, et al.
Brain Pathol
. 2017 Mar;
28(2):240-263.
PMID: 28268246
In prion diseases, the brain lesion profile is influenced by the prion "strain" properties, the invasion route to the brain, and still unknown host cell-specific parameters. To gain insight into...
9.
Houy S, Estay-Ahumada C, Croise P, Calco V, Haeberle A, Bailly Y, et al.
J Neurosci
. 2015 Aug;
35(31):11045-55.
PMID: 26245966
Oligophrenin-1 (OPHN1) is a protein with multiple domains including a Rho family GTPase-activating (Rho-GAP) domain, and a Bin-Amphiphysin-Rvs (BAR) domain. Involved in X-linked intellectual disability, OPHN1 has been reported to...
10.
Alleaume-Butaux A, Nicot S, Pietri M, Baudry A, Dakowski C, Tixador P, et al.
PLoS Pathog
. 2015 Aug;
11(8):e1005073.
PMID: 26241960
In prion diseases, synapse dysfunction, axon retraction and loss of neuronal polarity precede neuronal death. The mechanisms driving such polarization defects, however, remain unclear. Here, we examined the contribution of...