Category: Proteins & Peptides

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Reference: HY-W008800

Boc-D-Thr-OH is a threonine derivative.

Reference: GTX57350-pro

This gene encodes a protein that is involved in the regulation of myofibril organization. This protein is likely the adaptor component of the E3 ubiquitin ligase complex in striated muscle, and it regulates the ubiquitin-mediated degradation of beta-catenin during myogenesis. Alternative splicing of this gene results in multiple transcript variants. [provided by RefSeq, Jun 213]

Reference: HY-P3320A

Phytochelatin 3 (PC 3) TFA is the small metal chelating peptide that can be used for chelating heavy metals.

Reference: HY-P1238A

Neuromedin U, rat TFA is a 23-amino acid brain-gut peptide. Neuromedin U (NMU), through its cognate receptor NMUR2 in the central nervous system, regulates several important physiological functions, including energy balance, stress response, and nociception.

Reference: HY-P1880

β-Amyloid (12-20) is a peptide fragment of β-Amyloid.

Reference: HY-P0151

SN50 is a cell permeable inhibitor of NF-κB translocation.

Reference: GTX57354-pro

This gene encodes an RNA methyltransferase which belongs to the rossmann fold methyltransferase family, and serves as a 5-methylphosphate capping enzyme that is specific for cytoplasmic histidyl tRNA. The encoded protein contains an S-adenosylmethionine binding domain and uses the methyl group donor, S-adenosylmethionine. This gene is overexpressed in breast cancer cells, and is related to the tumorigenic phenotype and poor prognosis of breast cancer. The encoded protein is thought to promote the cellular invasion of breast cancer cells, by downregulating the expression of tumor suppressor miRNAs through the dimethylation of the 5-monophosphate of the corresponding precursor miRNAs. [provided by RefSeq, Apr 217]

Reference: HY-P1846A

Jagged-1 (188-204) TFA is a fragment of the Jagged-1 (JAG-1) protein with Notch agonist activity. JAG-1 is a Notch ligand highly expressed in cultured and primary multiple myeloma (MM) cells. JAG-1 induces maturation of monocyte-derived human dendritic cells.