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Order NO. C520863
重组人PSD95, N-6His, E.coli
英文名 Recombinant Human Postsynaptic Density Protein 95 , N-6His, E.coli
相关类别 其他重组蛋白 储存 冷冻(-20℃)
   
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C520863-0050 50 UG 预计10日内发货
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产品描述

概述

Recombinant Human Postsynaptic Density Protein 95 is produced by our E.coli expression system and the target gene encoding Met1-Leu724 is expressed with a 6His tag at the N-terminus.

使用说明

This material is offered by Sangon Biotech for research, laboratory or further evaluation purposes. NOT FOR HUMAN USE.

属性

Tag N-6His
种属 Human
表达系统 E.coli
Accession# P78352
Source E.coli
Formulation_Description Lyophilized from a 0.2 μm filtered solution of PBS, pH 7.4.
Storage Lyophilized protein should be stored at < -20°C, though stable at room temperature for 3 weeks.Reconstituted protein solution can be stored at 4-7°C for 2-7 days.Aliquots of reconstituted samples are stable at < -20°C for 3 months.
Reconstitution Dissolve the lyophilized protein in distilled water.
Purity Greater than 90% as determined by reducing SDS-PAGE.
Endotoxin Less than 0.1 ng/μg (1 EU/μg) as determined by LAL test.
Background Disks large homolog 4(DLG4) is a cell membrane protein and it is a member of the membrane-associated guanylate kinase (MAGUK) family. The protein contains 1 guanylate kinase-like domain,3 PDZ (DHR) domains and 1 SH3 domain. With PSD-93 it is recruited into the same NMDA receptor and potassium channel clusters. These two MAGUK proteins may interact at postsynaptic sites to form a multimeric scaffold for the clustering of receptors, ion channels, and associated signaling proteins. DLG4 is the best studied member of the MAGUK-family of PDZ domain-containing proteins. Like all MAGUK-family proteins, its basic structure includes three PDZ domains, an SH3 domain, and a guanylate kinase-like domain (GK) connected by disordered linker regions. It is almost exclusively located in the post synaptic density of neurons, and is involved in anchoring synaptic proteins. Its direct and indirect binding partners include neuroligin, NMDA receptors, AMPA receptors, and potassium channels.
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