Ubiquitin Carboxyl-Terminal Hydrolase Isozyme L3 (UCHL3) Antibody

Este producto es parte de UCHL - Ubiquitin C-Terminal Hydrolase L
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195€ (20 µl)

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935106861
info@markelab.com
name
Ubiquitin Carboxyl-Terminal Hydrolase Isozyme L3 (UCHL3) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx006082
tested applications
ELISA, WB

Description

UCHL3 Antibody is a Rabbit Polyclonal Antibody against UCHL3.

Documents del producto

Instrucciones
Data sheet
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Product specifications

CategoryPrimary Antibodies
Immunogen TargetUbiquitin Carboxyl-Terminal Hydrolase Isozyme L3 (UCHL3)
HostRabbit
ReactivityHuman, Mouse, Rat
Recommended DilutionELISA: 1 µg/ml, WB: 1/500 - 1/2000. Optimal dilutions/concentrations should be determined by the end user.
ClonalityPolyclonal
ConjugationUnconjugated
IsotypeIgG
PurificationPurified by affinity chromatography.
Size 120 µl
Size 2100 µl
Size 32 × 100 µl
FormLiquid
Tested ApplicationsELISA, WB
BufferPBS, pH 7.3, containing 0.02% sodium azide, 50% glycerol.
AvailabilityShipped within 5-10 working days.
StorageAliquot and store at -20°C. Avoid repeated freeze/thaw cycles.
Dry IceNo
UniProt IDP15374
Gene ID7347
NCBI AccessionNP_005993.1
AliasUCH-L3,Ubiquitin thioesterase L3
BackgroundAntibody anti-UCHL3
StatusRUO
NoteConcentration: > 0.2 mg/ml -

Descripción

UCHL3 is a deubiquitinating enzyme involved in ubiquitin recycling and protein turnover, ensuring cellular protein quality control and homeostasis. It cleaves ubiquitin precursors and removes ubiquitin chains from target proteins, preventing their premature degradation by the proteasome. UCHL3 is ubiquitously expressed and plays roles in DNA repair, apoptosis, and embryonic development. It is particularly essential for spermatogenesis, where it regulates chromatin remodeling and germ cell differentiation. Loss of UCHL3 function is associated with impaired cellular proteostasis, genomic instability, and reproductive defects. Studies show its involvement in tumor progression, where dysregulation of UCHL3 alters protein degradation pathways, contributing to cancer cell survival. Knockout models exhibit defects in germ cell development, growth retardation, and increased sensitivity to cellular stress, underscoring its importance in ubiquitin regulation, cellular stability, and reproductive biology.

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