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This proof-of-principle experiment was designed to demonstrate the feasibility of proximity labeling for RNAM-bM-^@M-^Sprotein interactions IPL-seq on 293T-Rex expressing MSA-SNRPN70 (sample) or NFH-SNRPN70 (control)
ORGANISM(S): Homo sapiens 
Bioluminescence-activated proximity labeling for spatial multi-omics
Off-the-shelf proximity labeling
RNA proximity labeling in log phase Caulobacter crescentus NA1000
Diatoms are ecologically and industrially significant microalgae, crucial for global carbon fixation and biotechnological applications. Their complex plastid membrane structures, resulting from secondary endosymbiosis, remain poorly characterized, particularly the periplastidial compartment (PPC). P...
ORGANISM(S): Homo Sapiens Oryza Sativa Nicotiana Benthamiana Nannochloropsis Oceanica Thalassiosira Pseudonana Arabidopsis Thaliana Phaeodactylum Tricornutum 
2025-03-14 | PXD061818 |
Multi-omic proximity labeling in vivo with PRADA
Analysis of LAP1 interactome in HEK293T cells using proximity labeling or proximity labeling combined with crosslinking methods.
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2019-11-20 | MSV000084606 | MassIVE
Photocatalytic Proximity Labeling Maps RNA and Protein Subcellular Landscapes
In situ profiling of subcellular proteomic networks in primary and living systems, such as primary cells from native tissues or clinic samples, is crucial for the understanding of life processes and diseases, yet challenging for the current proximity labeling methods (e.g., BioID, APEX) due to their...
ORGANISM(S): Homo sapiens (Human) Mus musculus (Mouse) 
2024-05-24 | PXD045791 | Pride
Analysis of subcellular transcriptomes by RNA proximity labeling with Halo-seq
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