Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Liposome (VS-1024-FY213)

CAT#: VS-1024-FY213

Anti-BRCA1 antibody-conjugated liposomes show great potential in ovarian cancer research. Firstly, they can specifically target BRCA1-expressing cells, enhancing drug targeting and reducing systemic side effects. Secondly, this liposome carrier can effectively deliver anticancer drugs or gene therapy molecules, thereby improving therapeutic efficacy. Finally, by combining with BRCA1-targeting antibodies, these liposomes are expected to overcome drug resistance and enhance the treatment response rate in ovarian cancer patients.

Gene Expression
Figure 1 IF staining of human cell line RH-30 Figure 2 IHC staining of human testis Figure 3 Cerebral cortex Figure 4 Colon Figure 5 Testis Figure 6 Skin Figure 7 Lymph node Figure 8 RNA cell line category: Low cell line specificity
Sub Cat Product Name Liposome Name Datasheet  
VS-1124-FY3605 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Cationic Liposome (VS-1124-FY3605) Cationic liposome
VS-1124-FY3606 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Adriamycin-encapsulated Liposome (VS-1124-FY3606) Adriamycin-encapsulated liposome
VS-1124-FY3607 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Gd-SLs Liposome (VS-1124-FY3607) Gd-SLs liposome
VS-1124-FY3608 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Triptolide-loaded Liposome (VS-1124-FY3608) Triptolide-loaded liposome
VS-1124-FY3609 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled PEGylated Liposome (VS-1124-FY3609) PEGylated liposome
VS-1124-FY3610 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Phospholipid Liposome (VS-1124-FY3610) Phospholipid liposome
VS-1124-FY3611 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Magnetofluorescent Liposome (VS-1124-FY3611) Magnetofluorescent liposome
VS-1124-FY3612 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled pH-sensitive Liposome (VS-1124-FY3612) pH-sensitive liposome
VS-1124-FY3613 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Phototoxic Liposome (VS-1124-FY3613) Phototoxic liposome
VS-1124-FY3614 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Targeted Liposome (VS-1124-FY3614) Targeted Liposome
VS-1124-FY3615 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Apt1-Liposome (VS-1124-FY3615) Apt1-liposome
VS-1124-FY3616 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Thermosensitive Liposome (VS-1124-FY3616) Thermosensitive liposome
VS-1124-FY3617 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Clodronate Liposome (VS-1124-FY3617) Clodronate liposome
VS-1124-FY3618 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Galcer Liposome (VS-1124-FY3618) Galcer liposome
VS-1124-FY3619 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled HBsAg-loaded Liposome (VS-1124-FY3619) HBsAg-loaded liposome
VS-1124-FY3620 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled Phospholipid Liposome and Cationic Liposome (VS-1124-FY3620) Phospholipid liposome and Cationic liposome
VS-1124-FY3621 Anti-BRCA1 (clone W24V216) Recombinant Antibody Coupled ISMN Liposome (VS-1124-FY3621) ISMN liposome
More Infomation

Specifications

  • Potential Clinical Applications
  • Ovarian cancer

Product Composition

  • Clone
  • W24V216
  • Antibody Type
  • IgG1
  • Antibody Host
  • Mouse
  • Antibody Reactivity
  • Human
  • Antibody Description
  • This recombinant mouse monoclonal antibody has been meticulously developed to interact with the BRCA1 protein. BRCA1 is vital for DNA repair and maintaining genomic stability; mutations in this gene are commonly associated with increased risks of breast and ovarian cancers. The antibody's ability to recognize and bind to BRCA1 may facilitate advancements in understanding cancer biology and developing targeted therapies for patients with BRCA1-related tumors.

Product Property

  • Storage
  • See in the COA
  • Storage Shelf Time
  • See in the COA

Target Information

  • Target
  • BRCA1
  • Introduction
  • This gene encodes a 190 kD nuclear phosphoprotein that plays a role in maintaining genomic stability, and it also acts as a tumor suppressor. The BRCA1 gene contains 22 exons spanning about 110 kb of DNA. The encoded protein combines with other tumor suppressors, DNA damage sensors, and signal transducers to form a large multi-subunit protein complex known as the BRCA1-associated genome surveillance complex (BASC). This gene product associates with RNA polymerase II, and through the C-terminal domain, also interacts with histone deacetylase complexes. This protein thus plays a role in transcription, DNA repair of double-stranded breaks, and recombination. Mutations in this gene are responsible for approximately 40% of inherited breast cancers and more than 80% of inherited breast and ovarian cancers. Alternative splicing plays a role in modulating the subcellular localization and physiological function of this gene. Many alternatively spliced transcript variants, some of which are disease-associated mutations, have been described for this gene, but the full-length natures of only some of these variants has been described. A related pseudogene, which is also located on chromosome 17, has been identified.
  • Alternative Names
  • IRIS; PSCP; BRCAI; BRCC1; FANCS; PNCA4; RNF53; BROVCA1; PPP1R53
  • Full Name
  • BRCA1, DNA Repair Associated
  • Cellular Localization
  • Nucleus, Chromosome, Cytoplasm
  • Post Translation Modifications
  • Glycosylation at Asn247 ( NX_P38398 [NX_P38398-1] )
    Ubiquitination at Lys987 ( NX_P38398 [NX_P38398-1] )
    Modification sites at PhosphoSitePlus ( P38398 )
    Glycosylation from GlyConnect BRCA1_HUMAN (2024)
    Glycosylation from GlyGen (P38398) 3 sites, 3 N-linked glycans (2 sites), 1 O-linked glycan (1 site)
  • Function
  • E3 ubiquitin-protein ligase that specifically mediates the formation of 'Lys-6'-linked polyubiquitin chains and plays a central role in DNA repair by facilitating cellular responses to DNA damage (PubMed:10500182, 12887909, 12890688, 14976165, 16818604, 17525340, 19261748).
    It is unclear whether it also mediates the formation of other types of polyubiquitin chains (PubMed:12890688).
    The BRCA1-BARD1 heterodimer coordinates a diverse range of cellular pathways such as DNA damage repair, ubiquitination and transcriptional regulation to maintain genomic stability (PubMed:12890688, 14976165, 20351172).
    Regulates centrosomal microtubule nucleation.
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COA

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