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- 详细信息
- 文献和实验
- 技术资料
- 形态:
液态/粉状
- 保存条件:
-20℃保存
- 克隆性:
多克隆
- 标记物:
见说明书
- 适应物种:
人,大鼠,小鼠,兔
- 宿主:
Goat,Rabbit,Mouse
- 应用范围:
科研使用
- 浓度:
1mg/1ml
- 靶点:
来电咨询
- Beta Amyloid Scrambled Recombinant Peptide (1-42)保存于运输说明:
- Store at -20°C or below
- 详细信息:
-
Description 
Beta-Amyloid (1-42) Scrambled Recombinant Peptide, TFA Intended Use 
**Research Use Only (RUO)**
This product is sold for laboratory research use only, not for human or in-vivo use.Form 
Beta Amyloid Scrambled Recombinant Peptide (1-42)Lyophilized Powder Specificity 
beta-Amyloid Peptide Purity: >97%
Sequence: H-Lys-Val-Lys-Gly-Leu-Ile-Asp-Gly-Asp-His-Ile-Gly-Asp-Leu-Val-Tyr-Glu-Phe-Met-Asp-Ser-Asn-Ser-Ala-Ile-Phe-Arg-Glu-Gly-Val-Gly-Ala-Gly-His-Val-His-Val-Ala-Gln-Val-Glu-Phe-OH
Molecular Weight: 4523.5 Da by Mass Spec Analysis (theoretical 4514.1)Suggested Working Dilution 
Beta Amyloid Scrambled Recombinant Peptide (1-42)Resuspend in 1 % NH4OH, at a concentration of 1 mg/mL. Sonicate for 30 seconds to 1 minute after it has gone into solution. To bring it into your buffer: After resuspension, add 5x or 10x buffer stock (PBS, TBS) and water, to bring to 1x buffer. Storage 
Store at -20°C or below. Upon initial thawing, apportion into working aliquots and store at -20°C or below. Avoid repeated freeze-thaw cycles to prevent denaturing the antibody. Do not store in frost-free freezers. Warranty/Conditions 
Covance products may not be resold or modified for resale without prior written approval. - Beta Amyloid Scrambled Recombinant Peptide (1-42)
- xy-1464xy GnRHR peptide促性腺激素释放激素受体抗原
xy-2501xy KiSS-1R/GPR54/GPCR54(KiSS-1 receptor/G-Protein Coupled Receptor 54)G蛋白偶联受体54抗原
xy-1209xy GRK2/BARK1 (G-protein coupled receptor kinase 2)G蛋白偶合受体激酶2抗原
xy-1161xy GRM2/GLUR2 (Glutamate Receptor Metabotropic 2)促代谢型谷氨酸受体2抗原
xy-0863xy GRO Alpha/GRO/MGSA/CXCL1 protein (growthregulated oncogene Alpha)生长调节致癌基因α/黑素瘤生长刺激因子α 抗原
xy-1219xy GRP78(glucose regulated protein 78)葡萄糖调节蛋白78抗原(热休克蛋白70蛋白5)
xy-0837xy GSR/GRase(glutathione reductase)谷胱甘肽还原酶抗原
xy-1430xy A/H1N1-M2 Human(Avian influenza Matrix Protein-2 Human)A型人流感病毒H1N1-M2蛋白多肽
xy-0422xy A/H1N1-M2 Swine(Avian influenza Matrix Protein-2 Swine)A型猪流感病毒H1N1-M2蛋白
xy-2001xy H1N1(Influenza A virus ,hemagglutinin)流感病毒A抗原
xy-2002xy H1N1(Influenza A virus ,hemagglutinin)流感病毒A抗原
xy-2560xy H2AX peptide组蛋白H2AX多肽抗原
xy-2003xy H1N1(Influenza A virus ,hemagglutinin)流感病毒A抗原
xy-2004xy H1N1(Influenza A virus ,hemagglutinin)流感病毒A抗原
xy-1235xy Haase(hyaluronidase)透明质酸酶/玻璃酸酶抗原
xy-0843xy HA tagHA tag标签多肽
xy-0966xy HA tag(map)HA tag标签(分支多肽)
xy-0540xy HAI-1(Hepatocyte Growth Factor Activator Inhibitor 1)肝细胞生长因子激活物抑制因子抗原
xy-0847xy HBA1(hemoglobin alpha 1)人类血红蛋白α1抗原
xy-2169xy VWCE/URG11(von Willebrand factor C and EGF domain-containing)乙型肝炎病毒X蛋白(HBxAg)抗原
xy-2171xy URGCP/URG4(Up-regulator of cell proliferation)乙型肝炎病毒X蛋白(HBxAg)抗原
xy-2172xy URGCP/URG4(Up-regulator of cell proliferation)C terminal肝炎病毒X蛋白(HBxAg)C端抗原
xy-1912xy Alpha-HCG(Human chorionic gonadotropin Alpha )人α亚基人绒毛膜促性腺激素多肽抗原
xy-1745xy HCFHrp/BTA(Bladdertumor antigen)human膀胱肿瘤抗原
xy-2155xy HER2 receptor(NT)(erbB-2 isoform 2 receptor N-Terminus)c-erbB-2受体抗体(N端)
xy-2156xy HER2 receptor(NT)(erbB-2 isoform 2 receptor N-Terminus)c-erbB-2受体抗原(N端)
xy-1025xy HGF(hepatocyte growth factor)肝细胞生长因子抗原
xy-0860xy HHV8/ORF50(Human herpesvirus 8 type P)人类疱疹病毒8抗原
xy-0859xy HHV8/ORF50(Human herpesvirus 8 type P)人类疱疹病毒8抗原
xy-0870xy HHV8/ORF K2(Human herpesvirus 8 type P)人类疱疹病毒8抗原
xy-1407xy HIF-1 Beta/ARNT1(Hypoxia-inducible factor-1 Beta)缺氧诱导因子1β 抗原
xy-1447xy HIF-2 Alpha (Hypoxia-inducible factor-2 Alpha)缺氧诱导因子2α 抗原
xy-0931xy Histone H1b(Histone H1.4)组蛋白H1b抗原
xy-1414xy HDAC1/HD1(histone deacetylase 1)组织蛋白去乙酰化酶1抗原
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文献和实验Evaluating Amyloid Beta (A) 1-40 Degradation by Capillary Electrophoresis
Here, we describe a capillary electrophoresis method for evaluating proteolysis of the amyloid beta peptide (Aβ) 1–40. This method is suitable for kinetic studies, demands little specialized equipment, and consumes only small
Interaction of the Presenilins with the Amyloid Precursor Protein (APP)
the deposition of amyloid Aβ peptide. The latter is released from its cognate amyloid precursor protein (APP) by a two-step proteolytic conversion: first, proteolysis of APP by β-secretase, which releases the N-terminus of Aβ, and second, conversion
Production and Functional Assays of Recombinant Secreted Amyloid Precursor Protein (APP) (sAPPα)
. The accumulation of amyloid β-peptide (Aβ) in these plaques was the first evidence that APP might be processed abnormally in Alzheimer’s, and this idea was strengthened by the discovery of mutations in APP that segregate with the disease with high penetrance
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