NUDC monoclonal antibody (M01), clone 5G12
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Specification
Product Description
Mouse monoclonal antibody raised against a full length recombinant NUDC.
Immunogen
NUDC (AAH02399, 1 a.a. ~ 331 a.a) full-length recombinant protein with GST tag. MW of the GST tag alone is 26 KDa.
Sequence
MGGEQEEERFDGMLLAMAQQHEGGVQELVNTFFSFLRRKTDFFIGGEEGMAEKLITQTFSHHNQLAQKTRREKRARQEAERREKAERAARLAKEAKSETSGPQIKELTDEEAERLQLEIDQKKDAENHEAQLKNGSLDSPGKQDTEEDEGEDEKDKGKLKPNLGNGADLPNYRWTQTLSELDLAVPFCVNFRLKGKDMVVDIQRRHLRVGLKGQPAIIDGELYNEVKVEESSWLIEDGKVVTVHLEKINKMEWWSRLVSSDPEINTKKINPENSKLSDLDSETRSMVEKMMYDQRQKSMGLPTSDEQKKQEILKKFMDQHPEMDFSKAKFN
Host
Mouse
Reactivity
Human
Interspecies Antigen Sequence
Mouse (93); Rat (94)
Isotype
IgG1 Kappa
Quality Control Testing
Antibody Reactive Against Recombinant Protein.
Western Blot detection against Immunogen (62.15 KDa) .
Storage Buffer
In 1x PBS, pH 7.4
Storage Instruction
Store at -20°C or lower. Aliquot to avoid repeated freezing and thawing.
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Applications
Western Blot (Cell lysate)
NUDC monoclonal antibody (M01), clone 5G12 Western Blot analysis of NUDC expression in HeLa ( Cat # L013V1 ).Western Blot (Recombinant protein)
Sandwich ELISA (Recombinant protein)
Detection limit for recombinant GST tagged NUDC is approximately 0.03ng/ml as a capture antibody.ELISA
Immunofluorescence
Immunofluorescence of monoclonal antibody to NUDC on HeLa cell. [antibody concentration 10 ug/ml] -
Gene Info — NUDC
Entrez GeneID
10726GeneBank Accession#
BC002399Protein Accession#
AAH02399Gene Name
NUDC
Gene Alias
HNUDC, MNUDC, NPD011
Gene Description
nuclear distribution gene C homolog (A. nidulans)
Omim ID
610325Gene Ontology
HyperlinkGene Summary
NudC was first identified as a regulator of nuclear movement in the asexual reproductive cycle of the filamentous fungus Aspergillus nidulans. Human NUDC is a nuclear movement protein that associates with dynein (see DYNC1H1; MIM 600112) (Aumais et al., 2003 [PubMed 12679384]).[supplied by OMIM
Other Designations
OTTHUMP00000004405|nuclear distribution gene C homolog
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Interactome
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Publication Reference
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A quantitative chaperone interaction network reveals the architecture of cellular protein homeostasis pathways.
Mikko Taipale, George Tucker, Jian Peng, Irina Krykbaeva, Zhen-Yuan Lin, Brett Larsen, Hyungwon Choi, Bonnie Berger, Anne-Claude Gingras, Susan Lindquist.
Cell 2014 Jul; 158(2):434.
Application:WB, Human, HEK293T cells.
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A quantitative chaperone interaction network reveals the architecture of cellular protein homeostasis pathways.
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