In Vivo Star Anti-Mouse CD79b Antibody

Cat # Size Price Quantity
5121011 mg$160
5121025 mg$400
51210325 mg$1100

Product Details


CloneHM79b-m2a
ApplicationELISA, WB, Flow cytometry, IHC, ICC, animal model study
Host SpeciesCHO cells
ReactivityMouse
FormatLiquid
Target NameCD76b, Igb, Ig-beta, B29
Product DescriptionIn vivo Grade Recombinant Anti-mouse CD79b Monoclonal Antibody
IsotypeMouse IgG2a Kappa
Antibody TypeRecombinant
Regulatory StatusRUO
Purity>95% by reducing SDS-PAGE
Endotoxin< 1 EU per 1 mg of the protein by the LAL method.
Storage Conditions4ºC
GradeIn vivo
Recommended UsageThis product is suitable for in vivo animal use. Optimal amounts need to be determined empirically for each experiment.
RRIDAB_3739395
Research AreasB cells, Cancer Marker
See All FormatsClone HM79b-m2a

Background Information


CD79b, also known as Igβ or B29, is an essential component of the B cell antigen receptor (BCR) complex and plays a critical role in B cell development, activation, and signaling. CD79b is expressed almost exclusively on B lineage cells, from the pre-B cell stage through mature peripheral B cells, and remains associated with surface immunoglobulin throughout the B cell lifespan. By transducing signals from antigen-bound immunoglobulin, CD79b enables B cells to respond appropriately to antigenic stimulation.

Structurally, CD79b is a type I transmembrane glycoprotein belonging to the immunoglobulin superfamily. Its extracellular region contains a single Ig-like domain that associates noncovalently with membrane-bound immunoglobulin. CD79b forms a heterodimer with CD79a (Igα), and together these two signaling subunits pair with antigen-specific immunoglobulin heavy and light chains to form the complete BCR complex. The cytoplasmic tail of CD79b contains an immunoreceptor tyrosine-based activation motif (ITAM), which is essential for downstream signaling.

Unlike many immune receptors, CD79b does not bind a ligand directly. Instead, it functions as a signal-transducing subunit for the BCR, which recognizes a wide range of antigens through its associated immunoglobulin component. Upon antigen binding and BCR clustering, the ITAMs within the cytoplasmic tails of CD79a and CD79b become phosphorylated by Src family kinases. This triggers recruitment of Syk and activation of multiple signaling pathways, including PI3K, MAPK, and NF-κB, leading to B cell activation, proliferation, differentiation, or tolerance depending on context.

Alterations in CD79b expression or signaling are implicated in several diseases. Mutations affecting CD79b can impair BCR signaling and result in immunodeficiency due to defective B cell development or activation. Conversely, chronic or dysregulated BCR signaling involving CD79b contributes to the pathogenesis of B cell malignancies, including diffuse large B cell lymphoma and other non-Hodgkin lymphomas. In these cancers, sustained signaling through the BCR promotes malignant cell survival and proliferation.

Therapeutically, CD79b has emerged as an important target in B cell–directed therapies. Antibody–drug conjugates targeting CD79b exploit its restricted expression on B cells to deliver cytotoxic agents selectively to malignant cells, minimizing off-target effects. In addition, modulation of BCR signaling pathways downstream of CD79b has become a cornerstone of therapy for B cell cancers. These strategies underscore CD79b’s central role in B cell biology and its clinical relevance in immune-mediated disease and oncology.

Data Sheets


In Vivo Star Anti-Mouse CD79b Antibody TDS

Related Protocols


Direct ELISA Protocol

Western Blot Protocol

Flow Cytometry Protocol

Related Products


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In Vivo Star Anti-Mouse CD79b Antibody, Clone HM79b

Frequently Asked Questions


What are In Vivo Star Biofunctional Antibodies?
In Vivo Star antibodies are premium-grade monoclonal antibodies purified and formulated specifically for use in animal studies. Each lot is manufactured under stringent quality controls to ensure the low endotoxin levels, high purity, and functional activity required for reliable in vivo results.

How are these antibodies different from standard research antibodies (e.g., for Western blot or flow cytometry)?
Standard research antibodies are optimized for in vitro detection assays and may contain preservatives, carrier proteins (like BSA), or higher endotoxin levels unsuitable for injection. In Vivo Star antibodies are formulated in injectable-grade, azide-free, low-endotoxin buffers and validated for functional bioactivity in living systems rather than just antigen binding.

What endotoxin and purity specifications do these antibodies meet?
All In Vivo Star antibodies are tested and certified to meet low-endotoxin thresholds (typically <1 EU/mg, lot-dependent) using the LAL (Limulus Amebocyte Lysate) assay, and are purified to ≥95% purity by SEC-HPLC or SDS-PAGE. Exact specifications are provided on the Certificate of Analysis (CoA) for each lot.

Are these antibodies azide-free and carrier-free?
All In Vivo Star antibodies are formulated without sodium azide and without carrier proteins such as BSA or gelatin, since both can interfere with animal physiology or immune readouts during in vivo studies.

Do you provide isotype controls?
Matched isotype control antibodies (same host species, isotype, and formulation) are available upon request for most clones to support proper experimental controls.

How should In Vivo Star antibodies be stored and handled?
Store at 4°C for short-term use and avoid repeated freeze-thaw cycles, which can reduce bioactivity; aliquoting is recommended for long-term storage per the product-specific storage instructions on the Certificate of Analysis. Always confirm storage conditions and expiration on the CoA that accompanies each lot, as these can vary slightly by antibody.

Have a product or application question? Consult our FAQs or contact us.