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06-1020
Sigma-AldrichAnti-NET31 Antibody
Anti-NET31 Antibody is a Rabbit Polyclonal Antibody for detection of NET31 also known as transmembrane protein 209 & has been validated in WB, IHC(P), ICC.
More>>Anti-NET31 Antibody is a Rabbit Polyclonal Antibody for detection of NET31 also known as transmembrane protein 209 & has been validated in WB, IHC(P), ICC. Less<<
Anti-NET31 Antibody: SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
NET31, also known as Transmembrane Protein 209, is a recently identified protein belonging to a group of nuclear envelope transmembrane proteins (NETs). Consisting of 561 amino acids, this is a multi-pass membrane protein. There are four known isoforms produced by alternative splicing. The specific function of NET31 has yet to be determined.
References
Product Information
Format
Affinity Purified
Control
A431 cell lysate
Presentation
Purified rabbit polyclonal in buffer containing 0.1 M Tris-Glycine (pH 7.4), 150 mM NaCl with 0.05% sodium azide.
Applications
Application
Anti-NET31 Antibody is a Rabbit Polyclonal Antibody for detection of NET31 also known as transmembrane protein 209 & has been validated in WB, IHC(P), ICC.
Key Applications
Western Blotting
Immunohistochemistry (Paraffin)
Immunocytochemistry
Application Notes
Western Blot (SNAP ID) Analysis: 2 µg/mL from a representative lot detected NET31 on 10 µg of A431 cell lysate.
Immunohistochemistry Analysis: 1:300 dilution from a representative lot detected NET31 in rat liver tissue.
Immunocytochemistry Analysis: 1:500 dilution from a representative lot detected NET31 in HeLa and A431 cells.
Immunofluorescence Analysis: A representative lot was used by an independent laboratory in IF. (Malik, P., et al. (2010). Cell. Mol. Life Sci. DOI 10.1007/s00018-010-0257-2)
Biological Information
Immunogen
KLH-conjugated linear peptide corresponding to the internal domain of human NET31.
Epitope
Internal domain
Concentration
Please refer to the Certificate of Analysis for the lot-specific concentration.
Host
Rabbit
Specificity
This antibody recognizes NET31.
Species Reactivity
Human
Rat
Mouse
Chicken
Horse
Species Reactivity Note
Demonstrated to react with human and rat. Predicted to react with mouse, chicken, equine based on 100% sequence homology.
Subcellular location Membrane; Multi-pass membrane protein (Potential).
Molecular Weight
59, 62, and 65 kDa observed. There are multiple splice variants associated with this target.
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
Evaluated by Western Blot in A431 cell lysate.
Western Blot Analysis: 1 µg/mL of this antibody detected NET31 on 10 µg of A431 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.
Critical function for nuclear envelope protein TMEM209 in human pulmonary carcinogenesis. Fujitomo, T; Daigo, Y; Matsuda, K; Ueda, K; Nakamura, Y Cancer research
72
4110-8
2011
Therapeutic targets for more effective and less toxic treatments of lung cancer remain important. Here we report the identification of the integral nuclear envelope protein TMEM209 as a critical driver of human lung cancer growth and survival. TMEM209 expression was normally limited to testis, but we found that it was widely expressed in lung cancer, in which it localized to the nuclear envelope, Golgi apparatus, and the cytoplasm of lung cancer cells. Ectopic overexpression of TMEM209 promoted cell growth, whereas TMEM209 attenuation was sufficient to block growth. Mass spectrometric analysis identified the nucleoporin protein NUP205 as a TMEM209-interacting protein, stabilizing NUP205 and increasing the level of c-Myc in the nucleus. Taken together, our findings indicate that TMEM209 overexpression and TMEM209-NUP205 interaction are critical drivers of lung cancer proliferation, suggesting a promising new target for lung cancer therapy.
A favored hypothesis to explain the pathology underlying nuclear envelopathies is that mutations in nuclear envelope proteins alter genome/chromatin organization and thus gene expression. To identify nuclear envelope proteins that play roles in genome organization, we analyzed nuclear envelopes from resting and phytohemagglutinin-activated leukocytes because leukocytes have a particularly high density of peripheral chromatin that undergoes significant reorganization upon such activation. Thus, nuclear envelopes were isolated from leukocytes in the two states and analyzed by multidimensional protein identification technology using an approach that used expected contaminating membranes as subtractive fractions. A total of 3351 proteins were identified between both nuclear envelope data sets among which were 87 putative nuclear envelope transmembrane proteins (NETs) that were not identified in a previous proteomics analysis of liver nuclear envelopes. Nuclear envelope localization was confirmed for 11 new NETs using tagged fusion proteins and antibodies on spleen cryosections. 27% of the new proteins identified were unique to one or the other of the two leukocyte states. Differences in expression between activated and resting leukocytes were confirmed for some NETs by RT-PCR, and most of these proteins appear to only be expressed in certain types of blood cells. Several known proteins identified in both data sets have functions in chromatin organization and gene regulation. To test whether the novel NETs identified might include those that also regulate chromatin, nine were run through two screens for different chromatin effects. One screen found two NETs that can recruit a specific gene locus to the nuclear periphery, and the second found a different NET that promotes chromatin condensation. The variation in the protein milieu with pharmacological activation of the same cell population and consequences for gene regulation suggest that the nuclear envelope is a complex regulatory system with significant influences on genome organization.