Recombinant human HDAC6 protein (Active) (GST tag N-Terminus)
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(4 제품이 사용된 논문 )
- FuncS
Supplier Data
Functional Studies - Recombinant human HDAC6 protein (Active) (GST tag N-Terminus) (AB42632)
Specific Activity : ≥350 pmol/min/μg.
Assay Conditions : 25 mM Tris/HCl, pH 8.0, 137 mM NaCl, 2.7 mM KCl, 1 mM MgCl2, and 0.1 mg/ml BSA, 20 μM BPS HDAC substrate 3, and HDAC6 (3.1 – 200 ng). Incubation condition : 30 min at 37°C followed by developing for 15 min at room temperature.
- SDS-PAGE
Supplier Data
SDS-PAGE - Recombinant human HDAC6 protein (Active) (GST tag N-Terminus) (AB42632)
4-20% SDS-PAGE - Recombinant human HDAC6 protein (Active) (ab42632).
Lane 1 : 2μg HDAC6.
Lane 2 : MW marker.
Reactivity 정보
서열 정보
특성 및 보관 정보
제형
Purification 테크닉
배송 시 보관 조건
적절한 단기 보관 조건
적절한 장기 보관 조건
분주 정보
보관 정보
추가 정보
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
HDAC6 plays a significant role in processes like protein degradation and cell signaling. It is an important component of the protein quality control system involving itself in the aggresome pathway where it facilitates the removal of misfolded proteins through interaction with dynein motor proteins. In addition to its presence in the cytoplasm HDAC6 influences cell migration and immune response regulation by de-phosphorylating cortactin and affecting actin filament dynamics. Its integral role in the aggresome-autophagy pathway positions it as important for cellular homeostasis maintenance.
Pathways
HDAC6 participates prominently in both autophagy and stress response pathways. In the autophagic process HDAC6 operates alongside ubiquitinated proteins to manage protein quality control. Moreover HDAC6 engages in stress response pathways like the heat shock response interacting directly with Hsp90 to regulate client protein activation. These pathways highlight HDAC6’s relationships with key proteins such as Hsp70 and tau linking it to cellular stress and neurodegeneration responses.
일반 정보
기능
Deacetylates a wide range of non-histone substrates (PubMed : 12024216, PubMed : 18606987, PubMed : 20308065, PubMed : 24882211, PubMed : 26246421, PubMed : 30538141, PubMed : 31857589, PubMed : 30770470, PubMed : 38534334, PubMed : 39567688). Plays a central role in microtubule-dependent cell motility by mediating deacetylation of tubulin (PubMed : 12024216, PubMed : 20308065, PubMed : 26246421). Required for cilia disassembly via deacetylation of alpha-tubulin (PubMed : 17604723, PubMed : 26246421). Alpha-tubulin deacetylation results in destabilization of dynamic microtubules (By similarity). Promotes deacetylation of CTTN, leading to actin polymerization, promotion of autophagosome-lysosome fusion and completion of autophagy (PubMed : 30538141). Deacetylates SQSTM1 (PubMed : 31857589). Deacetylates peroxiredoxins PRDX1 and PRDX2, decreasing their reducing activity (PubMed : 18606987). Deacetylates antiviral protein RIGI in the presence of viral mRNAs which is required for viral RNA detection by RIGI (By similarity). Sequentially deacetylates and polyubiquitinates DNA mismatch repair protein MSH2 which leads to MSH2 degradation, reducing cellular sensitivity to DNA-damaging agents and decreasing cellular DNA mismatch repair activities (PubMed : 24882211). Deacetylates DNA mismatch repair protein MLH1 which prevents recruitment of the MutL alpha complex (formed by the MLH1-PMS2 heterodimer) to the MutS alpha complex (formed by the MSH2-MSH6 heterodimer), leading to tolerance of DNA damage (PubMed : 30770470). Deacetylates RHOT1/MIRO1 which blocks mitochondrial transport and mediates axon growth inhibition (By similarity). Deacetylates transcription factor SP1 which leads to increased expression of ENG, positively regulating angiogenesis (PubMed : 38534334). Deacetylates KHDRBS1/SAM68 which regulates alternative splicing by inhibiting the inclusion of CD44 alternate exons (PubMed : 26080397). Deacetylates PRDM16 (By similarity). Acts as a valine sensor by binding to valine through the primate-specific SE14 repeat region (PubMed : 39567688). In valine deprivation conditions, translocates from the cytoplasm to the nucleus where it deacetylates TET2 which promotes TET2-dependent DNA demethylation, leading to DNA damage (PubMed : 39567688). Promotes odontoblast differentiation following IPO7-mediated nuclear import and subsequent repression of RUNX2 expression (By similarity). In addition to its protein deacetylase activity, plays a key role in the degradation of misfolded proteins : when misfolded proteins are too abundant to be degraded by the chaperone refolding system and the ubiquitin-proteasome, mediates the transport of misfolded proteins to a cytoplasmic juxtanuclear structure called aggresome (PubMed : 17846173). Probably acts as an adapter that recognizes polyubiquitinated misfolded proteins and targets them to the aggresome, facilitating their clearance by autophagy (PubMed : 17846173). Involved in the MTA1-mediated epigenetic regulation of ESR1 expression in breast cancer (PubMed : 24413532).. (Microbial infection) Deacetylates the SARS-CoV-2 N protein which promotes association of the viral N protein with human G3BP1, leading to disruption of cellular stress granule formation and facilitating viral replication.
서열 유사성
Belongs to the histone deacetylase family. HD type 2 subfamily.
Post-translational modifications
Phosphorylated by AURKA; phosphorylation increases HDAC6-mediated deacetylation of alpha-tubulin and subsequent disassembly of cilia.. Ubiquitinated. Its polyubiquitination however does not lead to its degradation.. Sumoylated in vitro.
타겟 정보
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제품이 사용된 논문 (4)
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Journal of enzyme inhibition and medicinal chemistry 38:2201408 PubMed37096557
2023
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Journal of medicinal chemistry 61:6056-6074 PubMed29940115
2018
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European journal of medicinal chemistry 141:596-602 PubMed29102179
2017
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Journal of medicinal chemistry 58:4325-38 PubMed25906087
2015
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