Jieqiong Lou
Overview
Explore the profile of Jieqiong Lou including associated specialties, affiliations and a list of published articles.
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Snapshot
Articles
26
Citations
250
Followers
0
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Recent Articles
1.
Bezawork-Geleta A, Devereux C, Keenan S, Lou J, Cho E, Nie S, et al.
Nat Commun
. 2025 Mar;
16(1):2135.
PMID: 40032835
Membrane contact sites between organelles are critical for the transfer of biomolecules. Lipid droplets store fatty acids and form contacts with mitochondria, which regulate fatty acid oxidation and adenosine triphosphate...
2.
Lou J, Deng Q, Zhang X, Bell C, Das A, Bediaga N, et al.
Nucleic Acids Res
. 2024 Aug;
52(18):10918-10933.
PMID: 39193905
Our understanding of heterochromatin nanostructure and its capacity to mediate gene silencing in a living cell has been prevented by the diffraction limit of optical microscopy. Thus, here to overcome...
3.
Liang Z, Solano A, Lou J, Hinde E
Chromosoma
. 2024 Jan;
133(1):5-14.
PMID: 38265456
Genome sequencing has identified hundreds of histone post-translational modifications (PTMs) that define an open or compact chromatin nanostructure at the level of nucleosome proximity, and therefore serve as activators or...
4.
Huang L, Thiex N, Lou J, Ahmad G, An W, Low-Nam S, et al.
Mol Biol Cell
. 2024 Jan;
35(3):ar38.
PMID: 38170572
The ubiquitination of transmembrane receptors regulates endocytosis, intracellular traffic, and signal transduction. Bone marrow-derived macrophages from myeloid Cbl and Cbl-b double knockout (DKO) mice display sustained proliferation mirroring the myeloproliferative...
5.
Sulejman S, Priscilla N, Wesemann L, Lee W, Lou J, Hinde E, et al.
Sci Rep
. 2023 Mar;
13(1):4494.
PMID: 36934126
Many image processing operations involve the modification of the spatial frequency content of images. Here we demonstrate object-plane spatial frequency filtering utilizing the angular sensitivity of a commercial spectral bandstop...
6.
Solano A, Lou J, Scipioni L, Gratton E, Hinde E
Biophys J
. 2022 May;
121(11):2152-2167.
PMID: 35490296
Nuclear proteins can modulate their DNA binding activity and the exploration volume available during DNA target search by self-associating into higher-order oligomers. Directly tracking this process in the nucleoplasm of...
7.
Mitrentsi I, Lou J, Kerjouan A, Verigos J, Reina-San-Martin B, Hinde E, et al.
Mol Cell
. 2022 Apr;
82(11):2132-2147.e6.
PMID: 35447083
Mouse pericentromeric DNA is composed of tandem major satellite repeats, which are heterochromatinized and cluster together to form chromocenters. These clusters are refractory to DNA repair through homologous recombination (HR)....
8.
Lou J, Solano A, Liang Z, Hinde E
Front Genet
. 2021 Dec;
12:770081.
PMID: 34956323
A DNA double-strand break (DSB) takes place in the context of chromatin, and there is increasing evidence for chromatin structure to play a functional role in DSB signaling and repair....
9.
McCann A, Lou J, Moustaqil M, Graus M, Blum A, Fontaine F, et al.
Nucleic Acids Res
. 2021 Sep;
49(19):10931-10955.
PMID: 34570228
Few genetically dominant mutations involved in human disease have been fully explained at the molecular level. In cases where the mutant gene encodes a transcription factor, the dominant-negative mode of...
10.
Palmer C, Lou J, Kouskousis B, Pandzic E, Anderson A, Kang Y, et al.
J Cell Sci
. 2021 Jul;
134(13).
PMID: 34313317
The mitochondrial inner membrane is a protein-rich environment containing large multimeric complexes, including complexes of the mitochondrial electron transport chain, mitochondrial translocases and quality control machineries. Although the inner membrane...