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CD4 Human, Active

CD4 Human Recombinant, Active

 
Catalog #
CDA0074
Uniprot Id
P01730
 
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 Catalog #AvailabilitySizeQuantityUnit Price Save For Later Wish List
CDA0074-2 7 days 2 µg $120.00
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CDA0074-10 7 days 10 µg $290.00
CDA0074-1 7 days 1 mg $8,320.00
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Product Overview

NameCD4 Human, Active
Description
CD4 Human Recombinant, Active
Accession (Primary)P01730
Immunogen
Activated Human B cells.
Synonyms
p50, Bp50, CDW40, MGC9013, TNFRSF5, CD40.
Introduction
CD40 is part of the TNF-receptor superfamily. CD40 is a necessary mediator for vast range of immune and inflammatory responses together with T cell-dependent immunoglobulin class switching, memory B cell growth, and germinal center formation. The transcription factor AKNA regulates the expression of CD40 and its ligand, which is vital for homotypic cell interactions. Adaptor protein TNFR2 interacts with CD40 and serves as a mediator of the signal transduction. The interaction of CD40 and its ligand is crucial for amyloid-beta-induced microglial activation, and thus is thought to be an early event in Alzheimer disease pathogenesis. CD40 is the receptor for TNFSF5/CD40L.
Formulation
1mg/ml in PBS (after reconstitution).
Solubility
Reconstitute with of H20. Mix gently, wash the sides of the vial and wait 30-60 seconds before use.
Applications
Staining antibody. For staining, use 10 µl/1,000,000 cells.
Type
Mouse Anti Human Monoclonal.
Clone
hCD40.
Ig Subclass
Mouse IgG1.
Purification Method
Protein-A.
Storage Procedures
Lyophilized: store at 4°C. After reconstitution, if not intended for use within a month, aliquot and store at -20°C.
Available Conjugates
This antibody is also available conjugated to biotin and FITC. For staining with biotin or FITC-conjugated antibody use 5-10 µl/10 6 cells.
Precautions
CD4 Human, Active is for research use only and not for use in diagnostic or therapeutic procedures.

Target Information: ( P01730 )

Background

CD4 protein, also known as Cluster of Differentiation 4, is a cell surface glycoprotein primarily expressed on helper T cells. It plays a crucial role in immune system regulation by mediating interactions between T cells and antigen-presenting cells (APCs). This research aims to explore the function, signaling pathways, and significance of CD4 protein in T cell biology and disease pathogenesis. Function of CD4 Protein: CD4 protein serves as a co-receptor for the T cell receptor (TCR) and interacts with major histocompatibility complex class II (MHC-II) molecules on APCs. This interaction enables CD4+ T cells to recognize and respond to antigenic peptides presented by MHC-II. CD4 protein enhances TCR signaling and facilitates the formation of immunological synapses between T cells and APCs, thereby promoting efficient T cell activation, proliferation, and differentiation. Role of CD4 Protein in T Cell Differentiation: CD4 protein is involved in determining the differentiation fate of CD4+ T cells. By interacting with specific cytokines secreted by APCs, CD4 protein directs the differentiation of naive T cells into distinct effector T cell subsets, including Th1, Th2, Th17, and regulatory T cells (Tregs). Each subset exhibits unique functions and cytokine profiles, contributing to immune responses, inflammation, and immune tolerance. Signaling Pathways Activated by CD4 Protein: Upon engagement with MHC-II, CD4 protein initiates signaling cascades that regulate T cell activation and differentiation. The cytoplasmic tail of CD4 contains conserved motifs, such as immunoreceptor tyrosine-based activation motifs (ITAMs) and proline-rich regions, which recruit and activate various signaling molecules, including protein kinases and adaptor proteins. These signaling events culminate in the activation of transcription factors, such as NF-κB and AP-1, which control gene expression required for T cell function. Implications of CD4 Protein in Disease Pathogenesis: Dysregulation of CD4 protein expression or function can lead to immune dysfunctions and contribute to the development of various diseases. CD4 protein is a primary receptor for human immunodeficiency virus (HIV) entry into CD4+ T cells, resulting in the destruction of these crucial immune cells and the progression of acquired immunodeficiency syndrome (AIDS). Moreover, altered CD4+ T cell responses and imbalances in T cell subsets have been associated with autoimmune diseases, allergic reactions, and chronic inflammatory conditions. Conclusion: The investigation of CD4 protein in T cell biology provides valuable insights into its role in immune system regulation and disease pathogenesis. Understanding the function and signaling pathways of CD4 protein enhances our knowledge of T cell activation, differentiation, and immune responses. Further research on CD4 protein may lead to the development of targeted therapies for immune-related disorders and provide novel strategies for immune modulation.

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