Human NLRP1/NALP1 Antibody Summary
Met1-Asp323 (Leu155His)
Accession # Q9C000
Applications
Please Note: Optimal dilutions should be determined by each laboratory for each application. General Protocols are available in the Technical Information section on our website.
Scientific Data
Detection of Human NLRP1/NALP1 by Western Blot. Western blot shows lysates of HEK293 human embryonic kidney cell line either mock transfected, transfected with human NLRP1/NALP1 or transfected with NALP3, THP-1 human acute monocytic leukemia cell line, and Ramos human Burkitt's lymphoma cell line. PVDF Membrane was probed with 0.5 µg/mL of Sheep Anti-Human NLRP1/NALP1 Antigen Affinity-purified Polyclonal Antibody (Catalog # AF6788) followed by HRP-conjugated Anti-Sheep IgG Secondary Antibody (Catalog # HAF016). Specific bands were detected for NLRP1/NALP1 at approximately 160 kDa (as indicated). This experiment was conducted under reducing conditions and using Immunoblot Buffer Group 2.
Reconstitution Calculator
Preparation and Storage
- 12 months from date of receipt, -20 to -70 °C as supplied.
- 1 month, 2 to 8 °C under sterile conditions after reconstitution.
- 6 months, -20 to -70 °C under sterile conditions after reconstitution.
Background: NLRP1/NALP1
NALP1 (NAcht, Leucine-rich repeat and PYD domain containing protein 1; also NAC, CARD7, DEFCAP and CLR17.1) is a 160-170 kDa member of the NLRP family of molecules. It is expressed in dendritic cells, neutrophils, T and B cells, alveolar macrophages, permatogonia, neurons, plus intestinal columnar epithelium, and is found in both cytoplasm and nucleus. NALP1 promotes apoptosis plus IL-1 beta and IL-18 maturation by activating caspase-1 and -5. It does so by forming a 700 kDa inflammasome comprised of NALP1, ASC plus caspase-1 and -5. Bacterial wall peptidoglycan binds to NALP1, promoting ATP binding, NALP1 oligomerization, and caspase activation. Human NALP1 is 1473 amino acids (aa) in length. It contains an N-terminal DAPIN domain (aa 1-92), a NACHT domain (aa 328-637), seven consecutive LRRs (aa 704-1236) and one CARD region (aa 1374-1463). Alternate splice forms exist that range in size from 70 kDa-150 kDa. Either individually, or in combination, there can be a 19 aa substitution for either aa 1353-1473 or aa 1368-1472, a deletion of aa 91-260, 958-987 or 1262-1305, and a 43 aa insert after Leu785. Over aa 1-323, human NALP1 shares less that 20% aa identity with mouse NALP1.
Product Datasheets
Citations for Human NLRP1/NALP1 Antibody
R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
12
Citations: Showing 1 - 10
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Human NLRP1 is a sensor of pathogenic coronavirus 3CL proteases in lung epithelial cells
Authors: Planes R, Pinilla M, Santoni K et al.
Molecular cell
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Caspase-1 interdomain linker cleavage is required for pyroptosis
Authors: Ball DP, Taabazuing CY, Griswold AR et al.
Life Sci Alliance
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EEF2-inactivating toxins engage the NLRP1 inflammasome and promote epithelial barrier disruption
Authors: Pinilla M, Mazars R, Verg� R et al.
Journal of Experimental Medicine
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ZAK?/P38 kinase signaling pathway regulates hematopoiesis by activating the NLRP1 inflammasome
Authors: Rodríguez-Ruiz, L;Lozano-Gil, JM;Naranjo-Sánchez, E;Martínez-Balsalobre, E;Martínez-López, A;Lachaud, C;Blanquer, M;Phung, TK;García-Moreno, D;Cayuela, ML;Tyrkalska, SD;Pérez-Oliva, AB;Mulero, V;
EMBO molecular medicine
Species: Human
Sample Types: Cell Lysates
Applications: Immunoprecipitation -
Protein folding stress potentiates NLRP1 and CARD8 inflammasome activation
Authors: EL Orth-He, HC Huang, SD Rao, Q Wang, Q Chen, CM O'Mara, AJ Chui, M Saoi, AR Griswold, A Bhattachar, DP Ball, JR Cross, DA Bachovchin
Cell Reports, 2023-01-16;0(0):111965.
Species: Human
Sample Types: Cell Lysates
Applications: Western Blot -
M24B aminopeptidase inhibitors selectively activate the CARD8 inflammasome
Authors: SD Rao, Q Chen, Q Wang, EL Orth-He, M Saoi, AR Griswold, A Bhattachar, DP Ball, HC Huang, AJ Chui, DJ Covelli, S You, JR Cross, DA Bachovchin
Nature Chemical Biology, 2022-02-14;0(0):.
Species: Human
Sample Types: Cell Lysates
Applications: Western Blot -
DPP8/9 inhibitors activate the CARD8 inflammasome in resting lymphocytes
Authors: DC Johnson, MC Okondo, EL Orth, SD Rao, HC Huang, DP Ball, DA Bachovchin
Cell Death Dis, 2020-08-14;11(8):628.
Species: Human
Sample Types: Cell Lysates
Applications: Western Blot -
Synergistic activation of p53 by actinomycin D and nutlin-3a is associated with the upregulation of crucial regulators and effectors of innate immunity
Authors: M Krze?niak, A Zajkowicz, A Gdowicz-K?, M G?owala-Ko, B ?asut-Szys, M Rusin
Cell. Signal., 2020-02-04;69(0):109552.
Species: Human
Sample Types: Cell Culture Lysates
Applications: Western Blot -
Homozygous NLRP1 gain-of-function mutation in siblings with a syndromic form of recurrent respiratory papillomatosis
Authors: SB Drutman, F Haerynck, FL Zhong, D Hum, NJ Hernandez, S Belkaya, F Rapaport, SJ de Jong, D Creytens, SJ Tavernier, K Bonte, S De Scheppe, J van der We, L Lorenzo-Di, A Wullaert, X Bossuyt, G Orth, VR Bonagura, V Béziat, L Abel, E Jouanguy, B Reversade, J Laurent-Ca
Proc. Natl. Acad. Sci. U.S.A., 2019-09-04;0(0):.
Species: Human
Sample Types: Cell Lysates
Applications: Western Blot -
DPP8/DPP9 inhibitor-induced pyroptosis for treatment of acute myeloid leukemia
Authors: DC Johnson, CY Taabazuing, MC Okondo, AJ Chui, SD Rao, FC Brown, C Reed, E Peguero, E de Stanchi, A Kentsis, DA Bachovchin
Nat. Med., 2018-07-02;0(0):.
Species: Human
Sample Types: Cell Lysates
Applications: Western Blot -
Transcription Factor ATF4 Induces NLRP1 Inflammasome Expression during Endoplasmic Reticulum Stress.
Authors: D'Osualdo A, Anania V, Yu K, Lill J, Kaufman R, Matsuzawa S, Reed J
PLoS ONE, 2015-06-18;10(6):e0130635.
Species: Human
Sample Types: Cell Lysates
Applications: Immunoprecipitation -
EEF2-inactivating toxins engage the NLRP1 inflammasome and promote epithelial barrier disruption
Authors: Pinilla M, Mazars R, Verg� R et al.
Journal of Experimental Medicine
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