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Anti-MYO1C, clone B7H8, Cat. No. MABT1522, is a mouse monoclonal antibody that detects myosin -1c (MYO1C) and is tested for use in Immunocytochemistry, Immunofluorescence, Immunohistochemistry, Immunoprecipitation, and Western Blotting.
More>>Anti-MYO1C, clone B7H8, Cat. No. MABT1522, is a mouse monoclonal antibody that detects myosin -1c (MYO1C) and is tested for use in Immunocytochemistry, Immunofluorescence, Immunohistochemistry, Immunoprecipitation, and Western Blotting. Less<<
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Übersicht
Replacement Information
Description
Catalogue Number
MABT1522-25UG
Description
Anti-MYO1C Antibody, clone B7H8
Alternate Names
Unconventional myosin-Ic
Myosin I beta
MMI-beta
MMIb
Background Information
Unconventional myosin-Ic (UniProt: O00159; also known as Myosin I beta, MMI-beta, MMIb) is encoded by the MYO1C gene (Gene ID:4641) in human. Myosins are actin-based motor molecules with ATPase activity essential for muscle contraction. Unconventional myosins serve in intracellular movements. Their highly divergent tails are presumed to bind to membranous compartments, which would be moved relative to actin filaments. Myosin Ic is a member of the single headed class I myosins that is found both, in cytoplasm and in the nucleus. In the cytoplasm, it participates in the formation of lipid rafts, transport of vesicles containing membrane proteins, and ion channel regulation. In the nucleus, it plays a role in transcription and chromatin remodeling. In mammalian cells MYO1C gene is reported to encode three different isoforms of Myosin Ic (A, B, and C). Clone B7H8 recognizes isoform A of MYO1C that is detected both, in cytoplasm and the nucleus. In the nucleus it co-localizes with RNA polymerase II, but not RNA polymerase I, and interacts with components of the transcription machinery. Isoforms A and B differ from isoform C only by the presence of an additional short peptide at their N-terminal regions. Isoform A has additional 36 amino acids while the isoform B has 16 additional amino acids at its N-terminal. In murine and human prostate cancer cell lines level of Isoform A is reported to be higher than normal cells and has been linked to cell invasion. (Ref.: Ihnatovych, I., et al. (2012). Cytoskeleton. 69(8); 555 565; Ihnatovych, I., et al. (2014).PLoS ONE 9(9): e108609; Maly, IV., et al. (2017). Sci. Rep.7; 8476.
References
Product Information
Format
Purified
Presentation
Purified mouse monoclonal antibody IgG1 in PBS without azide.
Applications
Application
Anti-MYO1C, clone B7H8, Cat. No. MABT1522, is a mouse monoclonal antibody that detects myosin -1c (MYO1C) and is tested for use in Immunocytochemistry, Immunofluorescence, Immunohistochemistry, Immunoprecipitation, and Western Blotting.
Key Applications
Immunocytochemistry
Immunofluorescence
Immunohistochemistry
Immunoprecipitation
Western Blotting
Application Notes
Western Blotting Analysis: 1 µg/mL from a representative lot detected MYO1C in PC-3 cell lysate.
Immunofluorescence Analysis: A representative lot detected MYO1C in Immunofluorescence applications (Maly, I.V., et. al. (2017). Sci Rep. 7(1):8476).
Immunoprecipitation Analysis: A representative lot immunoprecipitated MYO1C in Immunoprecipitation applications (Ihnatovych, I., et. al. (2012). Cytoskeleton. 69(8):555-65).
Western Blotting Analysis: A representative lot detected MYO1C in Western Blotting applications (Maly, I.V., et. al. (2017). Sci Rep. 7(1):8476; Ihnatovych, I., et. al. (2012). Cytoskeleton. 69(8):555-65; Ihnatovych, I., et. al. (2014). PLoS One. 9(9):e108609).
Immunocytochemistry Analysis: A representative lot detected MYO1C in Immunocytochemistry applications (Ihnatovych, I., et. al. (2012). Cytoskeleton. 69(8):555-65).
Immunohistochemistry Analysis: A representative lot detected MYO1C in immunohistochemistry applications (Ihnatovych, I., et. al. (2014). PLoS One. 9(9):e108609).
Note: Actual optimal working dilutions must be determined by end user as specimens, and experimental conditions may vary with the end user
Biological Information
Immunogen
KLH-conjugated linear peptide corresponding to 18 amino acids from the N-terminal region of human Unconventional myosin-Ic (MYO1C).
Epitope
N-terminal
Clone
B7H8
Concentration
1 mg/mL. Please refer to guidance on suggested starting dilutions and/or titers per application and sample type.
Host
Mouse
Specificity
Clone B7H8 is a mouse monoclonal antibody that detects unconventioinal myosin-1c (MYO1C) in human and other primates. It targets an epitope within 18 amino acids from the N-terminal region of isoform A.
~ 120 kDa observed; 121.68 kDa calculated. Uncharacterized bands may be observed in some lysate(s).
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
Evaluated by Western Blotting in COS-7 cell lysate.
Western Blotting Analysis: 1 µg/mL of this antibody detected MYO1C in COS-7 cell lysate.
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage Conditions
Stable for 1 year at -20°C from date of receipt. Handling Recommendations: Upon receipt and prior to removing the cap, centrifuge the vial and gently mix the solution. Aliquot into microcentrifuge tubes and store at -20°C. Avoid repeated freeze/thaw cycles, which may damage IgG and affect product performance.
During metastasis, tumor cells migrate out of their original tissue to invade other organs. Secretion of exosomes and metalloproteases is essential for extracellular matrix remodeling, enabling migration through tissue barriers. Metastatic prostate cancer is differentiated by expression of the rare isoform A of the molecular motor myosin IC, however the function of this isoform remained unknown. Here we show that it contributes causatively to the invasive motility of prostate cancer cells. We found that the isoform associates with metalloprotease-containing exosomes and stimulates their secretion. While the data show that myosin IC is involved in prostate cancer cell migration, migration outside extracellular matrix in vitro proves little affected specifically by isoform A. Nevertheless, this isoform stimulates invasion through extracellular matrix, pointing to a critical role in secretion. Both the secretion and invasion depend on the integrity of the motor and lipid-binding domains of the protein. Our results demonstrate how myosin IC isoform A is likely to function in metastasis, driving secretion of exosomes that enable invasion of prostate cancer cells across extracellular matrix barriers. The new data identify a molecule suitable for a mechanistically grounded development into a marker and target for prognosis, detection, and treatment of invasive prostate cancer.
Selective expression of myosin IC Isoform A in mouse and human cell lines and mouse prostate cancer tissues. Ihnatovych I, Sielski NL, Hofmann WA. PLoS One
9(9)
e108609
2014
Myosin IC is a single headed member of the myosin superfamily. We recently identified a novel isoform and showed that the MYOIC gene in mammalian cells encodes three isoforms (isoforms A, B, and C). Furthermore, we demonstrated that myosin IC isoform A but not isoform B exhibits a tissue specific expression pattern. In this study, we extended our analysis of myosin IC isoform expression patterns by analyzing the protein and mRNA expression in various mammalian cell lines and in various prostate specimens and tumor tissues from the transgenic mouse prostate (TRAMP) model by immunoblotting, qRT-PCR, and by indirect immunohistochemical staining of paraffin embedded prostate specimen. Analysis of a panel of mammalian cell lines showed an increased mRNA and protein expression of specifically myosin IC isoform A in a panel of human and mouse prostate cancer cell lines but not in non-cancer prostate or other (non-prostate-) cancer cell lines. Furthermore, we demonstrate that myosin IC isoform A expression is significantly increased in TRAMP mouse prostate samples with prostatic intraepithelial neoplasia (PIN) lesions and in distant site metastases in lung and liver when compared to matched normal tissues. Our observations demonstrate specific changes in the expression of myosin IC isoform A that are concurrent with the occurrence of prostate cancer in the TRAMP mouse prostate cancer model that closely mimics clinical prostate cancer. These data suggest that elevated levels of myosin IC isoform A may be a potential marker for the detection of prostate cancer.
Identification and characterization of a novel myosin Ic isoform that localizes to the nucleus. Ihnatovych I, Migocka-Patrzalek M, Dukh M, Hofmann WA. Cytoskeleton (Hoboken)
69(8)
555-65
2011
In vertebrates, two myosin Ic isoforms that localize to the cytoplasm and to the nucleus have been characterized. The isoform that predominantly localizes to the nucleus is called nuclear myosin I (NMI). NMI has been identified as a key factor involved in nuclear processes such as transcription by RNA polymerases I and II and intranuclear transport processes. We report here the identification of a previously uncharacterized third MYOIC gene product that is called isoform A. Similar to NMI, this isoform contains a unique N-terminal peptide sequence, localizes to the nucleus and colocalizes with RNA polymerase II. However, unlike NMI, upon exposure to inhibitors of RNA polymerase II transcription the newly identified isoform translocates to nuclear speckles. Furthermore, in contrast to NMI, this new isoform is absent from nucleoli and does not colocalize with RNA polymerase I. Our results suggest an unexpected diversity among nuclear myosin Ic isoforms in respect to their intranuclear localization and interaction with nuclear binding partners that could provide new insights into the regulation of myosin-dependent nuclear processes.