Product: MYCBP2 Antibody
Catalog: DF13658
Description: Rabbit polyclonal antibody to MYCBP2
Application: WB
Reactivity: Human, Mouse, Rat
Prediction: Pig, Zebrafish, Bovine, Horse, Sheep, Rabbit, Dog, Chicken
Mol.Wt.: 510kDa; 514kD(Calculated).
Uniprot: O75592
RRID: AB_2846677

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Product Info

Source:
Rabbit
Application:
WB 1:500-1:2000
*The optimal dilutions should be determined by the end user.
*Tips:

WB: For western blot detection of denatured protein samples. IHC: For immunohistochemical detection of paraffin sections (IHC-p) or frozen sections (IHC-f) of tissue samples. IF/ICC: For immunofluorescence detection of cell samples. ELISA(peptide): For ELISA detection of antigenic peptide.

Reactivity:
Human,Mouse,Rat
Prediction:
Pig(100%), Zebrafish(88%), Bovine(100%), Horse(100%), Sheep(100%), Rabbit(100%), Dog(100%), Chicken(100%)
Clonality:
Polyclonal
Specificity:
MYCBP2 Antibody detects endogenous levels of total MYCBP2.
RRID:
AB_2846677
Cite Format: Affinity Biosciences Cat# DF13658, RRID:AB_2846677.
Conjugate:
Unconjugated.
Purification:
The antiserum was purified by peptide affinity chromatography using SulfoLink™ Coupling Resin (Thermo Fisher Scientific).
Storage:
Rabbit IgG in phosphate buffered saline , pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol. Store at -20 °C. Stable for 12 months from date of receipt.
Alias:

Fold/Unfold

AU023734; AW107953; AW546647; C130061D10Rik; DKFZp686M08244; FLJ10106; FLJ13826; FLJ21597; FLJ21646; KIAA0916; MYC binding protein 2; PAM; Pam, highwire, rpm 1; Pam/highwire/rpm-1 protein; Phr1; Protein associated with Myc; R75243;

Immunogens

Immunogen:
Uniprot:
Gene(ID):
Expression:
O75592 MYCB2_HUMAN:

Expressed in all tissues examined, expression is exceptionally abundant in brain and thymus. Colocalizes with TSC1 and TSC2 along the neurites and in the growth cones. Highly expressed in peripheral and central neurons. Colocalized with TSC1 in one of the filopodial extensions at the tip of a growth cone.

Sequence:
MMMCAATASPAAASSGLGGDGFYPAATFSSSPAPGALFMPVPDGSVAAAGLGLGLPAADSRGHYQLLLSGRALADRYRRIYTAALNDRDQGGGSAGHPASRNKKILNKKKLKRKQKSKSKVKTRSKSENLENTVIIPDIKLHSNPSAFNIYCNVRHCVLEWQKKEISLAAASKNSVQSGESDSDEEEESKEPPIKLPKIIEVGLCEVFELIKETRFSHPSLCLRSLQALLNVLQGQQPEGLQSEPPEVLESLFQLLLEITVRSTGMNDSTGQSLTALSCACLFSLVASWGETGRTLQAISAILTNNGSHACQTIQVPTILNSLQRSVQAVLVGKIQIQDWFSNGIKKAALMHKWPLKEISVDEDDQCLLQNDGFFLYLLCKDGLYKIGSGYSGTVRGHIYNSTSRIRNRKEKKSWLGYAQGYLLYRDVNNHSMTAIRISPETLEQDGTVMLPDCHTEGQNILFTDGEYINQIAASRDDGFVVRIFATSTEPVLQQELQLKLARKCLHACGISLFDLEKDLHIISTGFDEESAILGAGREFALMKTANGKIYYTGKYQSLGIKQGGPSAGKWVELPITKSPKIVHFSVGHDGSHALLVAEDGSIFFTGSASKGEDGESTKSRRQSKPYKPKKIIKMEGKIVVYTACNNGSSSVISKDGELYMFGKDAIYSDSSSLVTDLKGHFVTQVAMGKAHTCVLMKNGEVWTFGVNNKGQCGRDTGAMNQGGKGFGVENMATAMDEDLEEELDEKDEKSMMCPPGMHKWKLEQCMVCTVCGDCTGYGASCVSSGRPDRVPGGICGCGSGESGCAVCGCCKACARELDGQEARQRGILDAVKEMIPLDLLLAVPVPGVNIEEHLQLRQEEKRQRVIRRHRLEEGRGPLVFAGPIFMNHREQALARLRSHPAQLKHKRDKHKDGSGERGEKDASKITTYPPGSVRFDCELRAVQVSCGFHHSVVLMENGDVYTFGYGQHGQLGHGDVNSRGCPTLVQALPGPSTQVTAGSNHTAVLLMDGQVFTFGSFSKGQLGRPILDVPYWNAKPAPMPNIGSKYGRKATWIGASGDQTFLRIDEALINSHVLATSEIFASKHIIGLVPASISEPPPFKCLLINKVDGSCKTFNDSEQEDLQGFGVCLDPVYDVIWRFRPNTRELWCYNAVVADARLPSAADMQSRCSILSPELALPTGSRALTTRSHAALHILGCLDTLAAMQDLKMGVASTEEETQAVMKVYSKEDYSVVNRFESHGGGWGYSAHSVEAIRFSADTDILLGGLGLFGGRGEYTAKIKLFELGPDGGDHETDGDLLAETDVLAYDCAAREKYAMMFDEPVLLQAGWWYVAWARVSGPSSDCGSHGQASITTDDGVVFQFKSSKKSNNGTDVNAGQIPQLLYRLPTSDGSASKGKQQTSEPVHILKRSFARTVSVECFESLLSILHWSWTTLVLGVEELRGLKGFQFTATLLDLERLRFVGTCCLRLLRVYTCEIYPVSATGKAVVEETSKLAECIGKTRTLLRKILSEGVDHCMVKLDNDPQGYLSQPLSLLEAVLQECHNTFTACFHSFYPTPALQWACLCDLLNCLDQDIQEANFKTSSSRLLAAVMSALCHTSVKLTSIFPIAYDGEVLLRSIVKQVSTENDSTLVHRFPLLVAHMEKLSQSEENISGMTSFREVLEKMLVIVVLPVRNSLRRENELFSSHLVSNTCGLLASIVSELTASALGSEVDGLNSLHSVKASANRFTKTSQGRSWNTGNGSPDAICFSVDKPGIVVVGFSVYGGGGIHEYELEVLVDDSEHAGDSTHSHRWTSLELVKGTYTTDDSPSDIAEIRLDKVVPLKENVKYAVRLRNYGSRTANGDGGMTTVQCPDGVTFTFSTCSLSSNGTNQTRGQIPQILYYRSEFDGDLQSQLLSKANEEDKNCSRALSVVSTVVRASKDLLHRALAVDADDIPELLSSSSLFSMLLPLIIAYIGPVAAAIPKVAVEVFGLVQQLLPSVAILNQKYAPPAFNPNQSTDSTTGNQPEQGLSACTTSSHYAVIESEHPYKPACVMHYKVTFPECVRWMTIEFDPQCGTAQSEDVLRLLIPVRTVQNSGYGPKLTSVHENLNSWIELKKFSGSSGWPTMVLVLPGNEALFSLETASDYVKDDKASFYGFKCFAIGYEFSPGPDEGVIQLEKELANLGGVCAAALMKKDLALPIGNELEEDLEILEEAALQVCKTHSGILGKGLALSHSPTILEALEGNLPLQIQSNEQSFLDDFIACVPGSSGGRLARWLQPDSYADPQKTSLILNKDDIRCGWPTTITVQTKDQYGDVVHVPNMKVEVKAVPVSQKKMSLQQDQAKKPQRIPGSPAVTAASSNTDMTYGGLASPKLDVSYEPMIVKEARYIAITMMKVYENYSFEELRFASPTPKRPSENMLIRVNNDGTYCANWTPGAIGLYTLHVTIDGIEIDAGLEVKVKDPPKGMIPPGTQLVKPKSEPQPNKVRKFVAKDSAGLRIRSHPSLQSEQIGIVKVNGTITFIDEIHNDDGVWLRLNDETIKKYVPNMNGYTEAWCLSFNQHLGKSLLVPVDESKTNTDDFFKDINSCCPQEATMQEQDMPFLRGGPGMYKVVKTGPSGHNIRSCPNLRGIPIGMLVLGNKVKAVGEVTNSEGTWVQLDQNSMVEFCESDEGEAWSLARDRGGNQYLRHEDEQALLDQNSQTPPPSPFSVQAFNKGASCSAQGFDYGLGNSKGDRGNISTSSKPASTSGKSELSSKHSRSLKPDGRMSRTTADQKKPRGTESLSASESLILKSDAAKLRSDSHSRSLSPNHNTLQTLKSDGRMPSSSRAESPGPGSRLSSPKPKTLPANRSSPSGASSPRSSSPHDKNLPQKSTAPVKTKLDPPRERSKSDSYTLDPDTLRKKKMPLTEPLRGRSTSPKPKSVPKDSTDSPGSENRAPSPHVVQENLHSEVVEVCTSSTLKTNSLTDSTCDDSSEFKSVDEGSNKVHFSIGKAPLKDEQEMRASPKISRKCANRHTRPKKEKSSFLFKGDGSKPLEPAKQAMSPSVAECARAVFASFLWHEGIVHDAMACSSFLKFHPELSKEHAPIRSSLNSQQPTEEKETKLKNRHSLEISSALNMFNIAPHGPDISKMGSINKNKVLSMLKEPPLHEKCEDGKTETTFEMSMHNTMKSKSPLPLTLQHLVAFWEDISLATIKAASQNMIFPSPGSCAVLKKKECEKENKKSKKEKKKKEKAEVRPRGNLFGEMAQLAVGGPEKDTICELCGESHPYPVTYHMRQAHPGCGRYAGGQGYNSIGHFCGGWAGNCGDGGIGGSTWYLVCDRCREKYLREKQAAAREKVKQSRRKPMQVKTPRALPTMEAHQVIKANALFLLSLSSAAEPSILCYHPAKPFQSQLPSVKEGISEDLPVKMPCLYLQTLARHHHENFVGYQDDNLFQDEMRYLRSTSVPAPYISVTPDASPNVFEEPESNMKSMPPSLETSPITDTDLAKRTVFQRSYSVVASEYDKQHSILPARVKAIPRRRVNSGDTEVGSSLLRHPSPELSRLISAHSSLSKGERNFQWPVLAFVIQHHDLEGLEIAMKQALRKSACRVFAMEAFNWLLCNVIQTTSLHDILWHFVASLTPAPVEPEEEEDEENKTSKENSEQEKDTRVCEHPLSDIVIAGEAAHPLPHTFHRLLQTISDLMMSLPSGSSLQQMALRCWSLKFKQSDHQFLHQSNVFHHINNILSKSDDGDSEESFSISIQSGFEAMSQELCIVMCLKDLTSIVDIKTSSRPAMIGSLTDGSTETFWESGDEDKNKTKNITINCVKGINARYVSVHVDNSRDLGNKVTSMTFLTGKAVEDLCRIKQVDLDSRHIGWVTSELPGGDNHIIKIELKGPENTLRVRQVKVLGWKDGESTKIAGQISASVAQQRNCEAETLRVFRLITSQVFGKLISGDAEPTPEQEEKALLSSPEGEEKVYNATSDADLKEHMVGIIFSRSKLTNLQKQVCAHIVQAIRMEATRVREEWEHAISSKENANSQPNDEDASSDAYCFELLSMVLALSGSNVGRQYLAQQLTLLQDLFSLLHTASPRVQRQVTSLLRRVLPEVTPSRLASIIGVKSLPPADISDIIHSTEKGDWNKLGILDMFLGCIAKALTVQLKAKGTTITGTAGTTVGKGVTTVTLPMIFNSSYLRRGESHWWMKGSTPTQISEIIIKLIKDMAAGHLSEAWSRVTKNAIAETIIALTKMEEEFRSPVRCIATTRLWLALASLCVLDQDHVDRLSSGRWMGKDGQQKQMPMCDNHDDGETAAIILCNVCGNLCTDCDRFLHLHRRTKTHQRQVFKEEEEAIKVDLHEGCGRTKLFWLMALADSKTMKAMVEFREHTGKPTTSSSEACRFCGSRSGTELSAVGSVCSDADCQEYAKIACSKTHPCGHPCGGVKNEEHCLPCLHGCDKSATSLKQDADDMCMICFTEALSAAPAIQLDCSHIFHLQCCRRVLENRWLGPRITFGFISCPICKNKINHIVLKDLLDPIKELYEDVRRKALMRLEYEGLHKSEAITTPGVRFYNDPAGYAMNRYAYYVCYKCRKAYFGGEARCDAEAGRGDDYDPRELICGACSDVSRAQMCPKHGTDFLEYKCRYCCSVAVFFCFGTTHFCNACHDDFQRMTSIPKEELPHCPAGPKGKQLEGTECPLHVVHPPTGEEFALGCGVCRNAHTF

Predictions

Predictions:

Score>80(red) has high confidence and is suggested to be used for WB detection. *The prediction model is mainly based on the alignment of immunogen sequences, the results are for reference only, not as the basis of quality assurance.

Species
Results
Score
Pig
100
Horse
100
Bovine
100
Sheep
100
Dog
100
Chicken
100
Rabbit
100
Zebrafish
88
Xenopus
0
Model Confidence:
High(score>80) Medium(80>score>50) Low(score<50) No confidence

PTMs - O75592 As Substrate

Site PTM Type Enzyme
S69 Phosphorylation
K126 Ubiquitination
S127 Phosphorylation
S143 Phosphorylation
S167 Phosphorylation
S175 Phosphorylation
S178 Phosphorylation
S181 Phosphorylation
S183 Phosphorylation
T295 Phosphorylation
S300 Phosphorylation
R405 Methylation
S414 Phosphorylation
Y422 Phosphorylation
T434 Phosphorylation
K562 Ubiquitination
K578 Ubiquitination
T606 Phosphorylation
S608 Phosphorylation
S610 Phosphorylation
S617 Phosphorylation
T618 Phosphorylation
S620 Phosphorylation
K760 Ubiquitination
S924 Phosphorylation
K1046 Ubiquitination
S1161 Phosphorylation
Y1276 Phosphorylation
Y1315 Phosphorylation
Y1331 Phosphorylation
S1368 Phosphorylation
T1372 Phosphorylation
K1395 Ubiquitination
T1433 Phosphorylation
S1481 Phosphorylation
T1483 Phosphorylation
S1510 Phosphorylation
S1624 Phosphorylation
S1710 Phosphorylation
K1819 Ubiquitination
K1824 Ubiquitination
K1828 Acetylation
Y1829 Phosphorylation
K1898 Ubiquitination
S1914 Phosphorylation
T1915 Phosphorylation
K2132 Ubiquitination
K2175 Ubiquitination
K2276 Ubiquitination
K2309 Ubiquitination
S2319 Phosphorylation
S2334 Phosphorylation
T2338 Phosphorylation
S2342 Phosphorylation
T2344 Phosphorylation
Y2348 Phosphorylation
S2353 Phosphorylation
S2359 Phosphorylation
K2443 Acetylation
K2447 Acetylation
K2458 Acetylation
K2460 Acetylation
S2555 Phosphorylation
K2556 Ubiquitination
S2643 Phosphorylation
T2683 Phosphorylation
S2687 Phosphorylation
S2690 Phosphorylation
S2699 Phosphorylation
S2701 Phosphorylation
S2712 Phosphorylation
S2720 Phosphorylation
T2728 Phosphorylation
S2732 Phosphorylation
S2736 Phosphorylation
S2749 Phosphorylation
S2769 Phosphorylation
S2774 Phosphorylation
S2787 Phosphorylation
S2789 Phosphorylation
T2794 Phosphorylation
S2808 Phosphorylation
S2812 Phosphorylation
S2817 Phosphorylation
S2821 Phosphorylation
K2823 Acetylation
K2825 Acetylation
T2826 Phosphorylation
S2833 Phosphorylation
S2835 Phosphorylation
S2839 Phosphorylation
S2843 Phosphorylation
S2844 Phosphorylation
K2848 Acetylation
T2860 Phosphorylation
S2869 Phosphorylation
S2871 Phosphorylation
S2873 Phosphorylation
Y2874 Phosphorylation
T2875 Phosphorylation
T2880 Phosphorylation
S2896 Phosphorylation
T2897 Phosphorylation
S2903 Phosphorylation
S2920 Phosphorylation
S2945 Phosphorylation
S2970 Phosphorylation
S2985 Phosphorylation
K3003 Ubiquitination
K3009 Ubiquitination
K3063 Ubiquitination
T3078 Phosphorylation
K3081 Ubiquitination
S3090 Phosphorylation
S3122 Phosphorylation
S3186 Phosphorylation
S3189 Phosphorylation
K3214 Methylation
Y3266 Phosphorylation
Y3272 Phosphorylation
S3274 Phosphorylation
S3294 Phosphorylation
S3377 Phosphorylation
Y3394 Phosphorylation
R3420 Methylation
Y3421 Phosphorylation
S3424 Phosphorylation
S3426 Phosphorylation
S3456 Phosphorylation
T3459 Phosphorylation
S3460 Phosphorylation
S3476 Phosphorylation
S3478 Phosphorylation
S3505 Phosphorylation
T3508 Phosphorylation
S3519 Phosphorylation
S3523 Phosphorylation
S3527 Phosphorylation
K3534 Ubiquitination
K3749 Ubiquitination
K3788 Ubiquitination
Y3794 Phosphorylation
S3796 Phosphorylation
S3811 Phosphorylation
T3813 Phosphorylation
K3827 Ubiquitination
K3873 Ubiquitination
T3921 Phosphorylation
K3927 Ubiquitination
S3931 Phosphorylation
S3932 Phosphorylation
K3938 Ubiquitination
T4070 Phosphorylation
K4124 Ubiquitination
T4126 Phosphorylation
T4131 Phosphorylation
T4135 Phosphorylation
T4141 Phosphorylation
S4151 Phosphorylation
S4152 Phosphorylation
Y4153 Phosphorylation
T4195 Phosphorylation
T4207 Phosphorylation
S4215 Phosphorylation
K4304 Ubiquitination
T4321 Phosphorylation
S4332 Phosphorylation
T4334 Phosphorylation
K4336 Acetylation
K4347 Acetylation
K4347 Ubiquitination
S4372 Phosphorylation
Y4382 Phosphorylation
Y4511 Phosphorylation
T4522 Phosphorylation
K4589 Ubiquitination
K4598 Ubiquitination
K4645 Ubiquitination

Research Backgrounds

Function:

Atypical E3 ubiquitin-protein ligase which specifically mediates ubiquitination of threonine and serine residues on target proteins, instead of ubiquitinating lysine residues. Shows esterification activity towards both threonine and serine, with a preference for threonine, and acts via two essential catalytic cysteine residues that relay ubiquitin to its substrate via thioester intermediates. Interacts with the E2 enzymes UBE2D1, UBE2D3, UBE2E1 and UBE2L3. Plays a key role in neural development, probably by mediating ubiquitination of threonine residues on target proteins (Probable). Involved in different processes such as regulation of neurite outgrowth, synaptic growth, synaptogenesis and axon degeneration (By similarity). Required for the formation of major central nervous system axon tracts (By similarity). Required for proper axon growth by regulating axon navigation and axon branching: acts by regulating the subcellular location and stability of MAP3K12/DLK (By similarity). Required for proper localization of retinogeniculate projections but not for eye-specific segregation (By similarity). Regulates axon guidance in the olfactory system (By similarity). Involved in Wallerian axon degeneration, an evolutionarily conserved process that drives the loss of damaged axons: acts by promoting destabilization of NMNAT2, probably via ubiquitination of NMNAT2 (By similarity). Catalyzes ubiquitination of threonine and/or serine residues on NMNAT2, consequences of threonine and/or serine ubiquitination are however unknown. Regulates the internalization of TRPV1 in peripheral sensory neurons (By similarity). Mediates ubiquitination and subsequent proteasomal degradation of TSC2/tuberin. Independently of the E3 ubiquitin-protein ligase activity, also acts as a guanosine exchange factor (GEF) for RAN in neurons of dorsal root ganglia. May function as a facilitator or regulator of transcriptional activation by MYC. Acts in concert with HUWE1 to regulate the circadian clock gene expression by promoting the lithium-induced ubiquination and degradation of NR1D1.

PTMs:

Autoubiquitinated.

Subcellular Location:

Nucleus. Cell projection>Axon. Cytoplasm>Cytoskeleton.
Note: Localizes to axon shafts and associates with microtubule cytoskeleton (By similarity). Translocates to the nucleus following interaction with sumoylated RANGAP1 (PubMed:26304119).

Extracellular region or secreted Cytosol Plasma membrane Cytoskeleton Lysosome Endosome Peroxisome ER Golgi apparatus Nucleus Mitochondrion Manual annotation Automatic computational assertionSubcellular location
Tissue Specificity:

Expressed in all tissues examined, expression is exceptionally abundant in brain and thymus. Colocalizes with TSC1 and TSC2 along the neurites and in the growth cones. Highly expressed in peripheral and central neurons. Colocalized with TSC1 in one of the filopodial extensions at the tip of a growth cone.

Subunit Structure:

Interacts with MYC. Interacts with TSC2 (tuberin) when TSC2 is in complex with TSC1 (hamartin). Interacts with FBXO45. Interacts with RAE1. Interacts with CPNE1 (via VWFA domain) and CPNE4 (via VWFA domain) (By similarity). Interacts with (sumoylated) RANGAP1; interaction with sumoylated RANGAP1 inhibits E3 ubiquitin-protein ligase activity and promotes MYCBP2 translocation to the nucleus. Interacts with RAN. Interacts with RAN. Interacts with ATP13A2; the interaction inhibits the ubiquitination of TSC2 by MYCBP2.

Family&Domains:

The PHR domains are compact beta-sandwich folds composed of 11 antiparallel strands and decorated with conserved apical loops. They are likely to play a structural role and mediate interactions with substrates or partners (By similarity).

The tandem cysteine domain region confers threonine specificity and contains the two essential catalytic cysteine residues that relay ubiquitin. It binds four zinc ions in a C5HC7HC2 configuration.

Belongs to the RING-Cys relay (RCR) family.

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