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- 详细信息
- 文献和实验
- 技术资料
- 保存条件:
-20℃
- 保质期:
12个月
- 英文名:
Recombinant Fibronectin Type III Domain Containing Protein 5 (FNDC5)
- 库存:
100
- 供应商:
上海沪震
FOR IN VITRO AND RESEARCH USE ONLY, NOT FOR USE IN CLINICAL DIAGNOSTIC PROCEDURES!
Organism species Homo sapiens (Human)
Product No. RPN576Hu01
Source Prokaryotic expression
Host E.coli
Purity > 95%
UOM 50ug
Predicted Molecular Mass 16.9kDa
Predicted isoelectric point n/a
Applications SDS-PAGE; WB; ELISA; IP.
Endotoxin Level <1.0EU per 1µg (determined by the LAL method)
Subcellular Location n/a
Residues Leu2~Ile137 (Accession # Q8NAU1) with N-terminal His-Tag
Formulation Supplied as lyophilized form in PBS, pH7.4, containing 5% trehalose, 0.01% sarcosyl.
SEQUENCES
The target protein is fused with N-terminal His-Tag, its sequence is listed below.
MGHHHHHHSGSEF- LRFIQEVNT TTRSCALWDL EEDTEYIVHV QAISIQGQSP ASEPVLFKTP REAEKMASKN KDEVTMKEMG 含Ⅲ型纤连蛋白域蛋白5(FNDC5)重组蛋白RNQQLRTGEV LIIVVVLFMW AGVIALFCRQ YDIIKDNEPN NNKEKTKSAS ETSTPEHQGG GLLRSKI
USAGE
Reconstitute in sterile PBS, pH7.2-pH7.4.
STORAGE AND STABILITY
Storage: Avoid repeated freeze/thaw cycles. Store at 2-8oC for one month. Aliquot and store at -80oC for 12 months.
Stability Test: The thermal stability is described by the loss rate of the target protein. The loss rate was determined by accelerated thermal degradation test, that is, incubate the protein at 37oC for 48h, and no obvious degradation and precipitation were observed. (Referring from China Biological Products Standard, which was calculated by the Arrhenius equation.) The loss of this protein is less than 5% within the expiration date under appropriate storage condition.
About the MARKER (complimentary)
Effective Size Range: 10kDa to 70kDa.
含Ⅲ型纤连蛋白域蛋白5(FNDC5)重组蛋白Protein bands: 10kDa, 14kDa, 18kDa, 22kDa, 26kDa, 33kDa, 44kDa and 70kDa.
Double intensity bands: The 26kDa, 18kDa, 10kDa bands are at double intensity to make location and size approximation of proteins of interest quick and easy.
Ready-to-use: No need to heat, dilute or add reducing agents before use.
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文献和实验近年来,重组蛋白的应用有了显著增长,与此同时,用于重组蛋白表达和纯化的技术和产品也得以增长。自从亲和标签融合技术出现以来,多种多样的短肽或蛋白亲和标签极大地方便了外源表达重组蛋白的分离与蛋白质复合体的纯化,已成为蛋白质研究领域不可或缺的工具。多聚组氨酸标签(His-tag)是目前高通量蛋白纯化最普遍使用的亲和标签,His 标签融合蛋白的固定化金属离子亲和层析(immobilized metal-ion affinity chromatography, IMAC)被作为主要的蛋白纯化方法。从重组蛋白
以达到纯化抗体IgG的目的。一般管中收集的IgG抗体用蛋白胶(SDS-PAGE电泳)进行检测,并判断IgG的纯度和浓度。图4 精达公司重组蛋白A纯化柱产品 图5为广州精达公司蛋白A层析柱纯化后所制备的蛋白胶(SDS-PAGE电泳胶)。图5中,经精达公司层析柱洗脱后,从第1管至第8管均有抗体的重链和轻链的带型。将上述有蛋白带型的管进行合并后测量抗体的浓度,广州精达公司蛋白A平均抗体IgG的载率为52mg/ml。 上述IgG载率在诊断试剂及成本中有着十分重要的意义,众所周知,目前
了崭新的途径,然而人们在分离纯化时却遇到了意想不到的困难,即这些蛋白质在E.coli中绝大多数是以包涵体形式存在,重组蛋白不仅不能分泌到细胞外,反而在细胞内聚集成没有生物活性的直径约0.1~3.0μm的固体颗粒[1]。自从应用大肠杆菌体系表达基因工程产品以来,人们就一直期望得到高活性、高产量的重组蛋白。不可溶、无生物活性的包涵体必须经过变性、复性才能获得天然结构以及生物活性,因此应该选择一个合适的复性过程来实现蛋白质的正确折叠,获得生物活性,近年来的研究可以使复杂的疏水蛋白、多结构域蛋白、寡聚蛋白
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