| 2010 |
CRACR2A (EFCAB4B) directly interacts with both Orai1 and STIM1, forming a ternary complex that dissociates at elevated Ca2+ concentrations. CRACR2A is required for co-clustering of Orai1 and STIM1 upon store depletion, and an EF-hand mutant of CRACR2A that cannot sense Ca2+ constitutively enhanced STIM1 clustering, elevated cytoplasmic Ca2+, and induced cell death. |
Affinity protein purification, siRNA knockdown, EF-hand mutagenesis, co-immunoprecipitation, confocal imaging of Orai1/STIM1 clusters |
Nature cell biology |
High |
20418871
|
| 2016 |
The CRACR2A locus encodes a lymphocyte-specific large Rab GTPase isoform containing EF-hand motifs, a proline-rich domain (PRD), and a Rab GTPase domain with an unconventional prenylation site. This isoform localizes to vesicles near the Golgi (dependent on GTP binding and prenylation), which translocate to the immunological synapse upon TCR stimulation to activate Ca2+/NFAT and JNK signaling pathways. The interaction between the PRD of CRACR2A and the GEF Vav1 is required for accumulation of these vesicles at the immunological synapse. |
Gene silencing, knockout mice, domain mutagenesis (GTP-binding and prenylation mutants), co-immunoprecipitation of CRACR2A-PRD with Vav1, live-cell imaging of vesicle translocation, Ca2+ and JNK signaling assays |
Science signaling |
High |
27016526
|
| 2019 |
CRACR2A acts as a calcium-activated dynein adaptor: its coiled-coil domain joins dynein and dynactin into a motile complex, and its EF-hand domain activates this motility in a calcium-dependent manner in vitro. In Jurkat T cells, elevation of intracellular calcium activates CRACR2A-mediated dynein transport, and TCR activation induces formation of CRACR2A puncta at the plasma membrane that associate with the actin cortex and then travel along microtubules in an endocytic process. |
In vitro dynein motility reconstitution assay, intracellular Ca2+ manipulation in Jurkat T cells, live-cell imaging of CRACR2A puncta, microtubule and actin co-localization |
The Journal of cell biology |
High |
30814157
|
| 2019 |
Rab46 (CRACR2A long isoform) in endothelial cells integrates histamine (H1 receptor/G protein) and Ca2+ signals to regulate selective Weibel-Palade body (WPB) trafficking: GTP-bound Rab46 on a P-selectin-negative WPB subset mediates dynein-dependent retrograde transport to the microtubule organizing center (MTOC) upon histamine stimulation, and subsequently Ca2+ binding to Rab46's EF-hand triggers dispersal of MTOC-clustered WPBs, thereby diverting non-inflammatory cargo away from the plasma membrane. |
Rab46 localization by imaging, GTP/GDP-locked Rab46 mutants, dynein inhibition, intracellular Ca2+ measurement, selective cargo release assay (P-selectin vs. non-inflammatory cargo) |
The Journal of cell biology |
High |
31092558
|
| 2014 |
Endothelial cells express a long variant of CRACR2A (CRACR2A-L / Rab46) that is approximately twice the molecular mass of the short form and contains an additional C-terminal Rab GTPase domain; siRNA against CRACR2A in endothelial cells depletes this long form but has no effect on CRAC channel function, and CRACR2A-L makes a positive contribution to endothelial tube formation. |
siRNA knockdown, Western blot, full-length cDNA cloning, sequence analysis, endothelial tube formation assay |
Biochemical and biophysical research communications |
Medium |
25475730
|
| 2018 |
CRACR2A promotes Th1 differentiation and effector function of Th17 cells downstream of TCR signaling: conditional T cell-specific deletion of CRACR2A in mice reduced Th1 responses to LCMV infection and conferred resistance to EAE, with impaired Ca2+/NFAT and JNK/AP1 pathway activation due to deficient TCR signal transmission. |
Conditional knockout mice (T cell-specific Cre), viral infection model, EAE model, transcript analysis, Ca2+ and JNK signaling assays |
Journal of immunology |
High |
29987160
|
| 2021 |
Biallelic loss-of-function mutations in CRACR2A cause late-onset combined immunodeficiency in humans. Patient T cells show reduced CRACR2A protein, dampened SOCE (Ca2+ entry), and reduced JNK phosphorylation. Reconstitution experiments in CRACR2A-deleted T cells showed that the E278D allele specifically impairs SOCE/cytokine production (not JNK), while the R144G/E300* truncation impairs both JNK phosphorylation and SOCE, establishing allele-specific separation of CRACR2A's two signaling functions. |
Patient allele characterization, CRACR2A KO T cell reconstitution with individual mutant alleles, SOCE measurement (Ca2+ imaging), JNK phosphorylation assay, cytokine production assay |
eLife |
High |
34908525
|
| 2021 |
Affinity purification coupled to LC-MS/MS identified dynein and Na+/K+ ATPase subunit alpha 1 (ATP1α1) as validated binding partners (effectors) of GTP-bound Rab46 (CRACR2A) in endothelial cells, confirmed by biochemical and imaging approaches. |
Affinity purification with constitutively active vs. inactive GFP-Rab46, LC-MS/MS, biochemical validation, imaging |
Scientific reports |
Medium |
33603063
|
| 2024 |
In neutrophils, CRACR2A rapidly associates with STIM1 after agonist stimulation and facilitates Ca2+ mobilization, which increases the ligand-binding function of β2 integrin and promotes neutrophil adhesion, crawling, and transmigration. A palmitoylated 20-mer peptide from the coiled-coil region of CRACR2A blocks STIM1-CRACR2A interaction, inhibiting Ca2+ mobilization and β2 integrin activation. |
Myeloid-specific Cracr2a conditional KO mice, CRISPR/Cas9 KO in dHL-60 cells, CRACR2A rescue overexpression, immunoprecipitation of CRACR2A-STIM1 complex, cytosolic Ca2+ mobilization assay, flow cytometry for integrin activation, intravital microscopy, blocking peptide experiments |
Circulation |
High |
39601147
|
| 2025 |
Ca2+ released specifically from TPC2 (two-pore channel 2) endolysosomal channels is required for the EF-hand-dependent detachment of Rab46 (CRACR2A) from the MTOC, thereby enabling secretion of Ang2-positive Weibel-Palade bodies in endothelial cells. Pharmacological TPC2 inhibition increased Rab46 clustering at the MTOC and decreased Ang2 secretion, while a TPC2 agonist had the opposite effect. |
Ca2+ imaging, high-resolution light microscopy, pharmacological inhibition/activation of TPC2 (Ned19, tetrandrine, TPC2-A1-N), Rab46 localization at MTOC, Ang2 secretion assay |
bioRxivpreprint |
Medium |
bio_10.1101_2025.03.03.641167
|