Anti NFIB pAb (ATL-HPA003956)
Atlas Antibodies
- Catalog No.:
- ATL-HPA003956-25
- Shipping:
- Calculated at Checkout
$423.00
Gene Name: NFIB
Alternative Gene Name: NFI-RED, NFIB2, NFIB3
Isotype: IgG
Interspecies mouse/rat: ENSMUSG00000008575: 99%, ENSRNOG00000009795: 99%
Entrez Gene ID: 4781
Uniprot ID: O00712
Buffer: 40% glycerol and PBS (pH 7.2). 0.02% sodium azide is added as preservative.
Storage Temperature: Store at +4°C for short term storage. Long time storage is recommended at -20°C.
| Product Specifications | |
| Application | WB, ICC, IHC, ChIP-Exo-Seq |
| Reactivity | Human, Mouse, Rat |
| Clonality | Polyclonal |
| Host | Rabbit |
| Immunogen | VKSGVFNVSELVRVSRTPITQGTGVNFPIGEIPSQPYYHDMNSGVNLQRSLSSPPSSKRPKTISIDENMEPSPTGDFYPSPSSPAAGSRTWHERDQDMSSPTTMKKPEKPLFSSASPQDSSPRLSTFPQHHHPGIPGVAHSVISTRTP |
| Gene Sequence | VKSGVFNVSELVRVSRTPITQGTGVNFPIGEIPSQPYYHDMNSGVNLQRSLSSPPSSKRPKTISIDENMEPSPTGDFYPSPSSPAAGSRTWHERDQDMSSPTTMKKPEKPLFSSASPQDSSPRLSTFPQHHHPGIPGVAHSVISTRTP |
| Gene ID - Mouse | ENSMUSG00000008575 |
| Gene ID - Rat | ENSRNOG00000009795 |
| Buffer | 40% glycerol and PBS (pH 7.2). 0.02% sodium azide is added as preservative. |
| Documents & Links for Anti NFIB pAb (ATL-HPA003956) | |
| Datasheet | Anti NFIB pAb (ATL-HPA003956) Datasheet (External Link) |
| Vendor Page | Anti NFIB pAb (ATL-HPA003956) at Atlas Antibodies |
| Documents & Links for Anti NFIB pAb (ATL-HPA003956) | |
| Datasheet | Anti NFIB pAb (ATL-HPA003956) Datasheet (External Link) |
| Vendor Page | Anti NFIB pAb (ATL-HPA003956) |
| Citations for Anti NFIB pAb (ATL-HPA003956) – 17 Found |
| Mirabello, Lisa; Koster, Roelof; Moriarity, Branden S; Spector, Logan G; Meltzer, Paul S; Gary, Joy; Machiela, Mitchell J; Pankratz, Nathan; Panagiotou, Orestis A; Largaespada, David; Wang, Zhaoming; Gastier-Foster, Julie M; Gorlick, Richard; Khanna, Chand; de Toledo, Silvia Regina Caminada; Petrilli, Antonio S; Patiño-Garcia, Ana; Sierrasesúmaga, Luis; Lecanda, Fernando; Andrulis, Irene L; Wunder, Jay S; Gokgoz, Nalan; Serra, Massimo; Hattinger, Claudia; Picci, Piero; Scotlandi, Katia; Flanagan, Adrienne M; Tirabosco, Roberto; Amary, Maria Fernanda; Halai, Dina; Ballinger, Mandy L; Thomas, David M; Davis, Sean; Barkauskas, Donald A; Marina, Neyssa; Helman, Lee; Otto, George M; Becklin, Kelsie L; Wolf, Natalie K; Weg, Madison T; Tucker, Margaret; Wacholder, Sholom; Fraumeni, Joseph F Jr; Caporaso, Neil E; Boland, Joseph F; Hicks, Belynda D; Vogt, Aurelie; Burdett, Laurie; Yeager, Meredith; Hoover, Robert N; Chanock, Stephen J; Savage, Sharon A. A Genome-Wide Scan Identifies Variants in NFIB Associated with Metastasis in Patients with Osteosarcoma. Cancer Discovery. 2015;5(9):920-31. PubMed |
| Grabowska, Magdalena M; Kelly, Stephen M; Reese, Amy L; Cates, Justin M; Case, Tom C; Zhang, Jianghong; DeGraff, David J; Strand, Douglas W; Miller, Nicole L; Clark, Peter E; Hayward, Simon W; Gronostajski, Richard M; Anderson, Philip D; Matusik, Robert J. Nfib Regulates Transcriptional Networks That Control the Development of Prostatic Hyperplasia. Endocrinology. 2016;157(3):1094-109. PubMed |
| Fane, Mitchell E; Chhabra, Yash; Hollingsworth, David E J; Simmons, Jacinta L; Spoerri, Loredana; Oh, Tae Gyu; Chauhan, Jagat; Chin, Toby; Harris, Lachlan; Harvey, Tracey J; Muscat, George E O; Goding, Colin R; Sturm, Richard A; Haass, Nikolas K; Boyle, Glen M; Piper, Michael; Smith, Aaron G. NFIB Mediates BRN2 Driven Melanoma Cell Migration and Invasion Through Regulation of EZH2 and MITF. Ebiomedicine. 2017;16( 28119061):63-75. PubMed |
| Pajtler, Kristian W; Wei, Yiju; Okonechnikov, Konstantin; Silva, Patricia B G; Vouri, Mikaella; Zhang, Lei; Brabetz, Sebastian; Sieber, Laura; Gulley, Melissa; Mauermann, Monika; Wedig, Tatjana; Mack, Norman; Imamura Kawasawa, Yuka; Sharma, Tanvi; Zuckermann, Marc; Andreiuolo, Felipe; Holland, Eric; Maass, Kendra; Körkel-Qu, Huiqin; Liu, Hai-Kun; Sahm, Felix; Capper, David; Bunt, Jens; Richards, Linda J; Jones, David T W; Korshunov, Andrey; Chavez, Lukas; Lichter, Peter; Hoshino, Mikio; Pfister, Stefan M; Kool, Marcel; Li, Wei; Kawauchi, Daisuke. YAP1 subgroup supratentorial ependymoma requires TEAD and nuclear factor I-mediated transcriptional programmes for tumorigenesis. Nature Communications. 2019;10(1):3914. PubMed |
| Nanda, Jagpreet S; Awadallah, Wisam N; Kohrt, Sarah E; Popovics, Petra; Cates, Justin M M; Mirosevich, Janni; Clark, Peter E; Giannico, Giovanna A; Grabowska, Magdalena M. Increased nuclear factor I/B expression in prostate cancer correlates with AR expression. The Prostate. 2020;80(13):1058-1070. PubMed |
| Olsen, Rachelle R; Ireland, Abbie S; Kastner, David W; Groves, Sarah M; Spainhower, Kyle B; Pozo, Karine; Kelenis, Demetra P; Whitney, Christopher P; Guthrie, Matthew R; Wait, Sarah J; Soltero, Danny; Witt, Benjamin L; Quaranta, Vito; Johnson, Jane E; Oliver, Trudy G. ASCL1 represses a SOX9(+) neural crest stem-like state in small cell lung cancer. Genes & Development. 2021;35(11-12):847-869. PubMed |
| Piper, Michael; Barry, Guy; Harvey, Tracey J; McLeay, Robert; Smith, Aaron G; Harris, Lachlan; Mason, Sharon; Stringer, Brett W; Day, Bryan W; Wray, Naomi R; Gronostajski, Richard M; Bailey, Timothy L; Boyd, Andrew W; Richards, Linda J. NFIB-mediated repression of the epigenetic factor Ezh2 regulates cortical development. The Journal Of Neuroscience : The Official Journal Of The Society For Neuroscience. 2014;34(8):2921-30. PubMed |
| Grabowska, Magdalena M; Elliott, Amicia D; DeGraff, David J; Anderson, Philip D; Anumanthan, Govindaraj; Yamashita, Hironobu; Sun, Qian; Friedman, David B; Hachey, David L; Yu, Xiuping; Sheehan, Jonathan H; Ahn, Jung-Mo; Raj, Ganesh V; Piston, David W; Gronostajski, Richard M; Matusik, Robert J. NFI transcription factors interact with FOXA1 to regulate prostate-specific gene expression. Molecular Endocrinology (Baltimore, Md.). 2014;28(6):949-64. PubMed |
| Tsai, Pai-Chi; Bake, Shameena; Balaraman, Sridevi; Rawlings, Jeremy; Holgate, Rhonda R; Dubois, Dustin; Miranda, Rajesh C. MiR-153 targets the nuclear factor-1 family and protects against teratogenic effects of ethanol exposure in fetal neural stem cells. Biology Open. 2014;3(8):741-58. PubMed |
| Bunt, Jens; Lim, Jonathan W C; Zhao, Lu; Mason, Sharon; Richards, Linda J. PAX6 does not regulate Nfia and Nfib expression during neocortical development. Scientific Reports. 2015;5( 26021864):10668. PubMed |
| Hickey, Stephanie L; Berto, Stefano; Konopka, Genevieve. Chromatin Decondensation by FOXP2 Promotes Human Neuron Maturation and Expression of Neurodevelopmental Disease Genes. Cell Reports. 2019;27(6):1699-1711.e9. PubMed |
| Lozzi, Brittney; Huang, Teng-Wei; Sardar, Debosmita; Huang, Anna Yu-Szu; Deneen, Benjamin. Regionally Distinct Astrocytes Display Unique Transcription Factor Profiles in the Adult Brain. Frontiers In Neuroscience. 14( 32153350):61. PubMed |
| Bunt, Jens; Osinski, Jason M; Lim, Jonathan Wc; Vidovic, Diana; Ye, Yunan; Zalucki, Oressia; O'Connor, Timothy R; Harris, Lachlan; Gronostajski, Richard M; Richards, Linda J; Piper, Michael. Combined allelic dosage of Nfia and Nfib regulates cortical development. Brain And Neuroscience Advances. 2017;1( 32166136):2398212817739433. PubMed |
| Morcom, Laura; Gobius, Ilan; Marsh, Ashley Pl; Suárez, Rodrigo; Lim, Jonathan Wc; Bridges, Caitlin; Ye, Yunan; Fenlon, Laura R; Zagar, Yvrick; Douglass, Amelia M; Donahoo, Amber-Lee S; Fothergill, Thomas; Shaikh, Samreen; Kozulin, Peter; Edwards, Timothy J; Cooper, Helen M; Sherr, Elliott H; Chédotal, Alain; Leventer, Richard J; Lockhart, Paul J; Richards, Linda J. DCC regulates astroglial development essential for telencephalic morphogenesis and corpus callosum formation. Elife. 2021;10( 33871356) PubMed |
| Huang, Anna Yu-Szu; Woo, Junsung; Sardar, Debosmita; Lozzi, Brittney; Bosquez Huerta, Navish A; Lin, Chia-Ching John; Felice, Daniela; Jain, Antrix; Paulucci-Holthauzen, Adriana; Deneen, Benjamin. Region-Specific Transcriptional Control of Astrocyte Function Oversees Local Circuit Activities. Neuron. 2020;106(6):992-1008.e9. PubMed |
| Lee, Hye Kyung; Willi, Michaela; Kuhns, Tyler; Liu, Chengyu; Hennighausen, Lothar. Redundant and non-redundant cytokine-activated enhancers control Csn1s2b expression in the lactating mouse mammary gland. Nature Communications. 2021;12(1):2239. PubMed |
| Grinman, Diego Y; Boras-Granic, Kata; Takyar, Farzin M; Dann, Pamela; Hens, Julie R; Marmol, Christina; Lee, Jongwon; Choi, Jungmin; Chodosh, Lewis A; Sola, Martin E Garcia; Wysolmerski, John J. PTHrP induces STAT5 activation, secretory differentiation and accelerates mammary tumor development. Breast Cancer Research : Bcr. 2022;24(1):30. PubMed |