SV40 large T antigen NLS
目录号: PL08363 纯度: ≥99%
SV40 large T antigen NLS 是一种多肽,来源于 SV40 大 T 抗原 47-55 的氨基酸序列,能够将蛋白运输到细胞核。
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中文名称
SV40 large T antigen NLS
英文名称
SV40 large T antigen NLS
包装储存
Sealed storage, away from moisturePowder -80°C 2 years;-20°C 1 year
产品详情
SV40 large T antigen NLS 是一种多肽,来源于 SV40 大 T 抗原 47-55 的氨基酸序列,能够将蛋白运输到细胞核。
生物活性
SV40 large T antigen NLS is from Large T antigen residue 47 to 55, enables protein import into cell nucleus.
性状
Solid
体外研究(In Vitro)
SV40 large tumor-antigen (T-ag) nuclear import is enhanced by the protein kinase CK2 (CK2) site (Ser111Ser112) flanking the nuclear localization sequence (NLS). T-ag NLS can enhance nuclear import, despite the fact that PK-C has been shown to inhibit nuclear import of proteins such as lamin B2. has not independently confirmed the accuracy of these methods. They are for reference only.
运输条件
Room temperature in continental US; may vary elsewhere.
储存方式
Sealed storage, away from moisturePowder -80°C 2 years;-20°C 1 year
SequenceShortening
CGGGPKKKRKVED
Sequence
Cys-Gly-Gly-Gly-Pro-Lys-Lys-Lys-Arg-Lys-Val-Glu-Asp
Solvent&Solubility
In Vitro:

H2O


Peptide Solubility and Storage Guidelines:1.  Calculate the length of the peptide.2.  Calculate the overall charge of the entire peptide according to the following table:
参考文献
[1]. Xiao CY, et al. Negative charge at the protein kinase CK2 site enhances recognition of the SV40 large T-antigen NLS by importin: effect of conformation. FEBS Lett. 1998 Dec 4;440(3):297-301.
[2]. Xiao CY, et al. An engineered site for protein kinase C flanking the SV40 large T-antigen NLS confers phorbol ester-inducible nuclear import. FEBS Lett. 1998 Oct 9;436(3):313-7.
搜索质检报告(COA)

1:一般建议:溶解度为Medlife测试数据,可能与文献描述存在差异。这是由于生产工艺和批次不同产生的正常现象。为了使其更好的溶解,请用37℃加热试管并在超声波水浴中震动片刻。不同批次产品溶解度各有差异,仅做参考,具体以实验方案为准。

2:储存条件:粉末-20°C一般情况可以保存3年,溶于溶剂-80°C一般情况可以保存1年。不同产品及不同批次产品可能存在差异,请细致阅读产品信息,并辅助参考相关文献描述。

The molarity calculator equation
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
The dilution calculator equation
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2