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EDEM2 (N-14) 抗体: sc-87706

 |  说明书
  • rabbit polyclonal IgG, 100µg/ml
  • epitope mapping near the N-terminus of EDEM2 of human origin
  • recommended for detection of EDEM2 of mouse, rat and human origin by WB, IP, IF and ELISA; non cross-reactive with family member EDEM; also reactive with additional species, including equine, canine, bovine and porcine
  • blocking peptide, sc-87706 P
 
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WB   IP   IF   siRNA  
 
种属 基因名称 基因ID 染色质位置 亚型(mRNA)即位号码 蛋白质即位号码 OMIM™ 号码
人类 EDEM2 55741 20q11.22 Q9BV94
610302
 
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 订购信息
产品名称产品编号规格价格数量添加我的最爱
EDEM2 (N-14) sc-87706 100 µg/ml $279
EDEM2 (N-14) P sc-87706 P
(peptide)
100 µg/0.5 ml $61
 siRNA 基因沉默子 (点击产品名称查看详细信息‭ ‬)
产品名称产品编号规格价格数量添加我的最爱
EDEM2 siRNA (h) sc-77226 10 µM $258
EDEM2 siRNA (m) sc-143294 10 µM $258
EDEM2 (h)-PR sc-77226-PR 10 µM $23
EDEM2 (m)-PR sc-143294-PR 10 µM $23
 shRNA 质粒 (点击产品名称查看详细信息‭ ‬)
产品名称产品编号规格价格数量添加我的最爱
EDEM2 shRNA Plasmid (h) sc-77226-SH 20 µg $520
EDEM2 shRNA Plasmid (m) sc-143294-SH 20 µg $520
 shRNA 慢病毒颗粒 (点击产品名称查看详细信息‭ ‬)
产品名称产品编号规格价格数量添加我的最爱
EDEM2 shRNA (h) Lentiviral Particles sc-77226-V 200 µl $625
EDEM2 shRNA (m) Lentiviral Particles sc-143294-V 200 µl $625

EDEM2 Background Information
Proteins expressed in the endoplasmic reticulum (ER) are tightly regulated by a variety of quality control mechanisms. Terminally misfolded proteins in the ER are retrotranslocated to the cytoplasm and degraded by proteasomes through a mechanism known as ER-associated degradation (ERAD). EDEM2 (ER degradation-enhancing alpha-mannosidase-like 2) is a 578 amino acid secreted protein that, in conjunction with other EDEM proteins (namely EDEM and EDEM3), is involved in the ERAD pathway of protein degradation. EDEM2, a member of the glycosyl hydrolase 47 family, contains a mannosidase homology domain, an N-terminal cleavable signal sequence and a C-terminal extension that is required for both ER retention and the proper function of EDEM2. Human EDEM2 shares 93% sequence identity with its mouse homolog, suggesting a conserved role between species. Two isoforms of EDEM2 exist due to alternative splicing events.