KC-6475

TMD8-FCRL5-KO Cell Line

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64111
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Background of TMD8-FCRL5-KO Cell Line

Fc receptor-like 5 (FCRL5), also known as IRTA2 or CD307e, is a single-pass type I transmembrane glycoprotein belonging to the immunoglobulin receptor superfamily. Encoded by a gene located on human chromosome 1q23.1, FCRL5 contains eight to nine immunoglobulin-like C2-type extracellular domains and cytoplasmic regions harboring both immunoreceptor tyrosine-based activating (ITAM) and inhibitory (ITIM) motifs, enabling its dual immunoregulatory functions. FCRL5 is predominantly expressed on B cells, with particularly high levels on naive B cells, memory B cells, and plasma cells. It functions as a bidirectional regulator of B-cell receptor (BCR) signaling: in the absence of co-stimulation, FCRL5 recruits SHP-1 phosphatase via its ITIMs to inhibit BCR signaling, whereas upon engagement with complement receptor 2 (CR2) and BCR, it enhances calcium flux and promotes B-cell activation. Notably, recent structural studies have elucidated that FCRL5 recognizes IgG in a unique avidity-dependent manner, simultaneously engaging two IgG-Fc molecules through its D1-D3 domains, thereby enabling B cells to sense the density of IgG within immune complexes. This distinctive recognition mode distinguishes FCRL5 from classical Fcγ receptors. FCRL5 overexpression has been implicated in the pathogenesis of systemic autoimmunity, as demonstrated by B-cell-specific Fcrl5 transgenic mice that develop age-related lupus-like disease associated with disrupted B-cell anergy. Furthermore, FCRL5 is highly expressed in various B-cell malignancies, including multiple myeloma, hairy cell leukemia, and chronic lymphocytic leukemia, making it an attractive therapeutic target. Antibody-drug conjugates and chimeric antigen receptor (CAR)-T cells targeting FCRL5 are currently under preclinical and clinical development. Thus, FCRL5 represents a promising biomarker and immunotherapeutic target for both autoimmune diseases and B-cell malignancies.

Specifications

Catalog NumberKC-6475
Cell Line NameTMD8-FCRL5-KO Cell Line
Clone Number1B4
Host Cell LineTMD8
DescriptionStable TMD8 clone with human FCRL5 gene knockout
QuantityOne vial of frozen cells (≥2-106/vial)
StabilityStable in culture over a minimum of 10 passages
ApplicationDrug screening and biological assays
Freezing MediumRPMI1640+20% FBS+10% DMSO
Propagation MediumRPMI1640+10% FBS
Selection MarkerN/A
MorphologyLymphoblast
SubcultureSplit saturated culture 1:3-1:6 every 2-3 days; seed out at about 1-3 × 105 cells/mL
Incubation37 °C with 5% CO2
StorageLiquid nitrogen immediately upon receiving
Doubling TimeApproximately 30 hours
Mycoplasma StatusNegative

Cell Line Generation

TMD8-FCRL5-KO cell line was generated using the CRISPR method.

Characterization

Figure 1: Characterization of TMD8-FCRL5-KO cell line stable clone using PCR sequencing.

Figure 2: Characterization of TMD8-FCRL5-KO cell line stable clone using RT-PCR sequencing.

Figure 3: Characterization of TMD8-FCRL5-KO cell Line stable clone using FACS.

Cell Resuscitation

  1. Prewarm culture medium (RPMI1640 + 10% FBS)in a 37°C water bath.
  2. Thaw the frozen vial in a 37°C water bath for 1-2 minutes.
  3. Transfer the vial into biosafety cabinet, and wipe the surface with 70% ethanol.
  4. Unscrew the top of the vial and transfer the cell suspension gently into a sterile centrifuge tube containing 9.0mL complete culture medium.
  5. Spin at ~ 125 × g for 5-7 minutes at room temperature, and discard the supernatant without disturbing the pellet.
  6. Resuspend cell pellet with the appropriate volume of complete medium and transfer the cell suspension into a T25 culture flask.
  7. Incubate the flask at 37°C, 5% CO2 incubator.
  8. Split saturated culture 1:3-1:6 every 2-3 days; seed out at about 1-3 × 105 cells/mL.

Cell Freezing

  1. Prepare the freezing medium (70% RPMI1640 + 20% FBS + 10% DMSO) fresh immediately before use.
  2. Keep the freezing medium on ice and label cryovials.
  3. Transfer cells to a sterile, conical centrifuge tube, and count the cells.
  4. Centrifuge the cells at 250×g for 5 minutes at room temperature and carefully aspirate off the medium.
  5. Resuspend the cells at a density of at least 3×106 cells/mL in chilled freezing medium.
  6. Aliquot 1 mL of the cell suspension into each cryovial.
  7. Freeze cells in the CoolCell freezing container overnight in a -80°C freezer.
  8. Transfer vials to liquid nitrogen for long-term storage

References

  1. Haga CL, Ehrhardt GR, Boohaker RJ, et al. (2007). "Fc receptor-like 5 inhibits B cell activation via SHP-1 tyrosine phosphatase recruitment." Proceedings of the National Academy of Sciences, 104(23), 9770-9775.
  2. Dement-Brown J, Newton CS, Ise T, et al. (2011). "Fc receptor-like 5 promotes B cell proliferation and drives the development of cells displaying switched isotypes." Journal of Leukocyte Biology, 91(1), 59-67.
  3. Rostamzadeh D, Kazemi T, Amirghofran Z, Shabani M. (2018). "Update on Fc receptor-like (FCRL) family: new immunoregulatory players in health and diseases." Expert Opinion on Therapeutic Targets, 22(6), 513-526.

Use License Agreement

Research Use Only.
Not for use in diagnostic procedures or therapeutic applications.
Redistribution of the cell line or its derivatives is prohibited without prior written permission from Kyinno Biotechnology.
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