Recombinant Human ARL6IP5 lysate
Cat.No. : | ARL6IP5-36HCL |
Product Overview : | Over-expression cells lysed in RIPA buffer and lysate supplied in SDS loading buffer |
- Specification
- Gene Information
- Related Products
Source : | HEK 293 cells |
Species : | Human |
Molecular Mass : | 21614.54Da |
Recommended Usage : | WB |
Storage Instruction : | Maintain refrigerated at 2-8°C for up to 6 months. For long term storage store at -20°C. |
Gene Name : | ARL6IP5 ADP-ribosylation-like factor 6 interacting protein 5 [ Homo sapiens ] |
Official Symbol : | ARL6IP5 |
Synonyms : | ARL6IP5; ADP-ribosylation-like factor 6 interacting protein 5; PRA1 family protein 3; DERP11; GTRAP3 18; HSPC127; JWA; PRA1 domain family 3; PRAF3; JM5; aip-5; protein JWa; ARL-6-interacting protein 5; dermal papilla derived protein 11; dermal papilla-derived protein 11; prenylated Rab acceptor protein 2; putative MAPK activating protein PM27; putative MAPK-activating protein PM27; glutamate transporter EEAC1-associated protein; glutamate transporter EAAC1-interacting protein; cytoskeleton related vitamin A responsive protein; cytoskeleton-related vitamin A-responsive protein; ADP-ribosylation factor-like protein 6-interacting protein 5; jmx; hp22; addicsin; GTRAP3-18; |
Gene ID : | 10550 |
mRNA Refseq : | NM_006407 |
Protein Refseq : | NP_006398 |
MIM : | 605709 |
UniProt ID : | O75915 |
Chromosome Location : | 3p14 |
Function : | protein C-terminus binding; |
Products Types
◆ Recombinant Protein | ||
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ARL6IP5-62C | Recombinant Cynomolgus Monkey ARL6IP5 Protein, His (Fc)-Avi-tagged | +Inquiry |
ARL6IP5-728M | Recombinant Mouse ARL6IP5 Protein, His (Fc)-Avi-tagged | +Inquiry |
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Related Gene
For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.
Inquiry
- Q&As
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Q&As (4)
Ask a questionARL6IP5 mutations have been associated with Bardet-Biedl syndrome (BBS), a rare genetic disorder characterized by vision impairment, obesity, kidney dysfunction, and other symptoms. These findings suggest a role for ARL6IP5 in ciliopathies.
Investigating ARL6IP5 can enhance our understanding of the molecular mechanisms underlying Bardet-Biedl syndrome and other ciliopathies. It may also provide insights into intracellular trafficking pathways and potential therapeutic targets for related disorders.
Limited information is available on post-translational modifications of ARL6IP5. However, it is speculated that phosphorylation events may modulate its function and protein-protein interactions.
ARL6IP5 is involved in vesicular traffic between the Golgi apparatus and the plasma membrane. It interacts with other proteins, such as the small GTPase Arl6, to regulate processes like protein trafficking and secretion.
Customer Reviews (8)
Write a reviewthe ARL6IP5 protein's high quality and its compatibility with my experimental needs, coupled with the manufacturer's excellent technical support, create a valuable alliance that contributes to successful research endeavors.
The manufacturer's commitment to providing high-quality proteins is evident in their meticulous production process, ensuring the purity and reliability of the ARL6IP5 protein.
ARL6IP5 protein is highly recommended for researchers due to its excellent performance in WB experiments and its utility in protein electron microscopy structure analysis.
Its reliability and versatility make it an essential tool for investigating ARL6IP5 protein's expression, function, and structural characteristics.
This partnership enhances research productivity while ensuring accurate and meaningful outcomes.
By visualizing the structural features, interactions, and conformational changes of ARL6IP5, researchers gain valuable insights into its function and potential for therapeutic interventions.
The ARL6IP5 protein is characterized by its exceptional quality, making it an ideal choice to fulfill my experimental requirements.
The use of ARL6IP5 protein in such analyses provides valuable structural insights that contribute to the elucidation of ANO2's functional mechanisms and potential drug targeting sites.
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