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MINDY3 Polyclonal antibody, PBS Only

MINDY3 Polyclonal Antibody for IHC, IF/ICC, IP, ELISA

Cat No. 26478-1-PBS

Host / Isotype

Rabbit / IgG

Reactivity

human, mouse, rat

Applications

IHC, IF/ICC, IP, ELISA

C10orf97, CARP, Dermal papilla-derived protein 5, DERP5, Deubiquitinating enzyme MINDY-3

Formulation:  PBS Only
Conjugate:  Unconjugated
Size/Concentration: 

-/ -

Freight/Packing: -

Quantity

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Product Information

26478-1-PBS targets MINDY3 in IHC, IF/ICC, IP, ELISA applications and shows reactivity with human, mouse, rat samples.

Tested Reactivity human, mouse, rat
Host / Isotype Rabbit / IgG
Class Polyclonal
Type Antibody
Immunogen

CatNo: Ag23520

Product name: Recombinant human C10orf97 protein

Source: e coli.-derived, PGEX-4T

Tag: GST

Domain: 1-136 aa of BC067799

Sequence: MSELTKELMELVWGTKSSPGLSDTIFCRWTQGFVFSESEGSALEQFEGGPCAVIAPVQAFLLKKLLFSSEKSSWRDCSEEEQKELLCHTLCDILESACCDHSGSYCLVSWLRGKTTEETASISGSPAESSCQVEHS

Predict reactive species
Full Name chromosome 10 open reading frame 97
Observed Molecular Weight49 kDa
GenBank Accession NumberBC067799
Gene Symbol C10orf97
Gene ID (NCBI) 80013
RRIDAB_3742191
Conjugate Unconjugated
FormLiquid
Purification MethodAntigen affinity purification
UNIPROT IDQ9H8M7
Storage Buffer PBS only, pH 7.3.
Storage ConditionsStore at -80°C.

Background Information

MINDY3 (also known as FAM63B) is a deubiquitinating enzyme (DUB) localized to the endoplasmic reticulum and belongs to the MINDY family. This protein specifically recognizes and cleaves lysine 48 (K48)-linked ubiquitin chains, which serve as the primary signal targeting proteins for proteasomal degradation, thereby playing a critical role in regulating protein stability. Research indicates that MINDY3 influences various cellular processes through its deubiquitination activity, including endoplasmic reticulum-associated degradation (ERAD), cellular stress response, and cell cycle regulation. Dysregulation of its function is closely associated with pathological processes such as cancer and neurodegenerative diseases, making it a potential target for therapeutic research.

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