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MYADM

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All listed services and products are For Research Use Only. Do Not use in any diagnostic or therapeutic applications.

Background

The MYADM gene is located in the region of human chromosome 19q13.42 and encodes the MYADM protein, a myeloid-related differentiation marker. This protein belongs to the transmembrane protein family with MARVEL domains. The MYADM protein consists of approximately 180 amino acids and has a molecular weight of about 20 kDa. It is mainly expressed in hematopoietic stem cells, myeloid cells, and various epithelial tissues, and is located on the cell membrane and participates in processes such as cell adhesion, membrane microdomain organization, and tight junction regulation. As an important regulator of cell membrane structure, MYADM plays a potential role in myeloid differentiation and inflammatory-related signal transduction. This gene has multiple single nucleotide polymorphism loci. Some missense variations may affect the membrane localization or oligomerization ability of the protein, thereby altering cell-cell interactions and immune response efficiency. In addition, abnormal expression levels of MYADM are associated with certain hematological diseases and the progression of solid tumors. Therefore, MYADM is regarded as a candidate gene in the study of cell differentiation regulation and disease biomarkers, and its variant analysis provides valuable molecular tools for exploring the functional mechanism of membrane proteins and pathological processes related to individual differences.

Fig.1 Human MYADM structure schematic. (OA Literature)Fig. 1 Schematic representation of the human MYADM protein structure.1

MYADM Protein Function: A Key Regulator of Membrane Microdomain Organization and Myeloid Differentiation

The functional spectrum of MYADM protein is quite extensive, and the related understanding is still continuously deepening:

  • The organization and stability of the cell membrane microdomains: The MYADM protein participates in regulating the assembly of lipid rafts and tight junction regions on the cell membrane through its MARVEL domain, influencing the integrity and fluidity of the membrane skeleton.
  • Myeloid differentiation and immune cell maturation: This protein is upregulated during the myeloid differentiation process of hematopoietic stem cells, participates in regulating the maturation process of granulocytes and monocytes, and mediates cell morphological changes under inflammatory stimulation conditions.
  • Genetic variation and functional differences: The natural polymorphisms in the gene coding region may lead to amino acid substitutions, which in turn affect the membrane localization ability or oligomerization state of the protein, providing a molecular basis for the differences in cell adhesion and migration abilities among different individuals.
  • Study on the relationship between protein structure and function: The structural analysis of the transmembrane region and extracellular domain of MYADM is of great significance for elucidating the molecular mechanism by which it mediates intercellular interactions and signal transduction.

MYADM Membrane Protein Product

Creative Biolabs offers a series of high-quality MYADM membrane protein products, which are suitable for structural analysis and functional research. Relying on the independently developed MemDX™ recombinant membrane protein technology platform, MYADM proteins can be produced in various expression systems, including virus-like particles (VLP) form and in vitro prokaryotic expression systems. These rigorously validated protein products, such as MemDX™ recombinant human MYADM membrane protein (in VLP form) and different tag-selected full-length MYADM membrane proteins, can be used in applications such as ELISA, antibody development and identification, binding experiments, and functional analysis. These products provide reliable tool support for researchers to analyze the interaction network and membrane-related activity mechanisms of MYADM.

MYADM Protein Product

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MYADM Stable Cell Line Product

Constructing reliable cell models is an important foundation for conducting functional studies on MYADM membrane proteins. As a molecule involved in myeloid differentiation and membrane microdomain regulation, the biological function of MYADM is closely related to its localization and organization within cellular membranes. Its cellular behavior may vary depending on the expression context and experimental conditions. Creative Biolabs offers customized MYADM stable expression cell models for studies of MYADM expression and localization. These models can stably express the target protein and are suitable for applications such as protein-protein interaction analysis, membrane localization detection, membrane microdomain organization studies, and related functional investigations, providing a reliable and reproducible experimental platform for exploring the molecular function, structure-function relationship, and role of MYADM in membrane organization. Our technology supports stable target expression and appropriate cellular localization, facilitating further research on MYADM biology.

MYADM Stable Cell Line Product

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MYADM Recombinant Antibody Product

Creative Biolabs offers highly specific recombinant antibodies targeting the MYADM protein, produced using advanced genetic engineering recombinant antibody technology. Compared to traditional polyclonal antibodies, these recombinant antibodies demonstrate significant advantages in terms of specificity, sensitivity, and batch-to-batch consistency. Our MYADM recombinant antibodies support various application scenarios, including Western Blot (WB), Enzyme-Linked Immunosorbent Assay (ELISA), Flow Cytometry (FCM), Immunofluorescence (IF), Immunocytochemistry (ICC), Immunohistochemistry (IHC), and Immunoprecipitation (IP), and can be used to detect differences in the expression levels of different MYADM variants, analyze their localization and distribution in tissues or cells, and study the interaction relationships between proteins. These antibodies provide reliable detection tools for the structural analysis, functional exploration, and polymorphism analysis of MYADM.

MYADM Recombinant Antibody Product

Not finding the recombinant antibody product you need? Contact us to start your one-stop custom service!

Product Features

  • Diversified expression system: Offers multiple recombination expression platforms, including virus-like particles (VLP), prokaryotic expression systems, and eukaryotic transient expression systems, to meet the needs of various research scenarios.
  • Extensive application verification: Applicable to various detection techniques such as ELISA, antibody screening, binding experiments, protein interaction analysis, Western blotting (WB), immunofluorescence (IF), and immunohistochemistry (IHC).
  • Batch-to-batch consistency: Through a strict quality control process, we ensure the stability of product performance across different batches, thereby guaranteeing the reliability and reproducibility of experimental results.
  • Customized services: Provide flexible customization options for specific natural variants, different label types, or expression forms, facilitating the design and implementation of personalized research plans.

Custom MYADM Membrane Protein and Antibody Discovery Services

In addition to the listed products, Creative Biolabs also offers customized special services for MYADM. The MYADM protein has multiple naturally occurring variants with significantly different functions, and it poses specific requirements for protein expression strategies, antigen design, and functional validation. Leveraging our technology platform, we can assist you in the following tasks:

  • Customized production of membrane proteins: Personalized expression (including multiple recombinant expression systems), purification, and quality characterization for different variants.
  • Customized antibody development: From antigen design to antibody engineering modification (monoclonal, polyclonal, recombinant antibodies), supporting selective recognition of variants or binding to common epitopes.
  • Stable cell model construction: Construct stable cell models expressing specific variants for the functional comparison study among different variants.
  • Development of the functional testing system: Design and execute experimental protocols for activity detection, combined analysis, and assessment of variant functional differences.

Frequently Asked Questions (FAQ)

  1. What is the main function of the MYADM gene?

    MYADM mainly participates in the organization and stability of the cell membrane microdomain, and plays a regulatory role in myeloid differentiation and inflammatory-related signal transduction. The function of this protein is influenced by its natural genetic variations. Different variants may have differences in membrane localization ability or oligomerization state, and it is an important model for studying the relationship between the structure and function of membrane proteins.

  2. Why is MYADM an important research target?

    MYADM has multiple natural genetic variations, which may lead to changes in protein membrane localization or alterations in the ability of cells to interact with each other. Studying the polymorphisms of MYADM is helpful for understanding the relationship between the structure and function of membrane proteins, the molecular mechanisms of cell differentiation regulation, and the influencing factors of membrane organization stability.

  3. Is Creative Biolabs'MYADM product suitable for clinical use?

    No. All MYADM products and services provided by Creative Biolabs are strictly for research purposes only and cannot be used for clinical diagnosis, prevention, treatment or cure of any disease.

  4. What types of MYADM products does Creative Biolabs offer?

    We provide a variety of product types, including recombinant MYADM membrane proteins, stable cell models expressing MYADM, high-quality recombinant MYADM antibodies, and comprehensive customized services.

Reference
  1. Qiao, Wenjie, et al. "MYADM binds human parechovirus 1 and is essential for viral entry." Nature communications 15.1 (2024): 3469. Under Open Access license CC BY 4.0, cropped from the original figure. https://doi.org/10.1038/s41467-024-47825-0
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