pcDNA™3.1/V5-His TOPO™ TA Expression Kit
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Invitrogen™

pcDNA™3.1/V5-His TOPO™ TA Expression Kit

pcDNA™3.1 V5/V5-His TOPO™ TA Expression Kitでは、Taq増幅PCR産物のワンステップクローニングを高レベルの発現ベクターに提供します。pcDNA3.1/V5-His-TOPO™ベクターのトポイソメラーゼ活性化により、PCR産物を ベンチトップで5分間でライゲーションし詳細を見る
製品番号(カタログ番号)ベクター数量
K480040TOPO-TAベクター、pcDNA40反応
K480001TOPO-TAベクター、pcDNA20反応
製品番号(カタログ番号) K480040
価格(JPY)
185,600
Online offer
Ends: 27-Mar-2026
265,200
割引額 79,600 (30%)
Each
お問い合わせください ›
ベクター:
TOPO-TAベクター、pcDNA
数量:
40反応
pcDNA™3.1 V5/V5-His TOPO™ TA Expression Kitでは、Taq増幅PCR産物のワンステップクローニングを高レベルの発現ベクターに提供します。pcDNA3.1/V5-His-TOPO™ベクターのトポイソメラーゼ活性化により、PCR産物を ベンチトップで5分間でライゲーションし、90 %の組換えが実現します。

さらに、ベクターには以下の機能があります。

•高レベルで構成的な発現のための強力なCMVプロモーター。
•抗V5抗体による組換えタンパク質を効率的に検出するためのC末端V5エピトープタグ。
• ニッケルキレート樹脂を使用した浄化と抗His(C-term)抗体による検出のためのC末端ポリヒスチジン(6xHis)配列。
研究用にのみ使用できます。診断用には使用いただけません。
仕様
構成または誘導システム構造的
供給タイプTransfection
使用対象(アプリケーション)構成的発現
製品タイプTOPO TA Expression Kit
数量40反応
選択剤(真核生物)Geneticin™(G-418)
ベクターTOPO-TAベクター、pcDNA
クローニング法TOPO™-TA
製品ラインTOPO、pcDNA, pcDNA
プロモーターCMV
タンパク質タグHisタグ(6x)、V5エピトープタグ, V5 Epitope Tag
Unit SizeEach
組成および保存条件
2 × ボックス1(-20℃で保存)
• 20 µLのpcDNA™3.1/V5-His-TOPO™(10 ng/µL)
• 100 µLの10X PCRバッファー
• 10 µLのdNTPミックス(50 mM)
• 50 µLの塩溶液
• 1 mLの滅菌水
• 10 µLのコントロールPCRテンプレート(50 ng/µL)
• 10 µLのコントロールPCRプライマー(それぞれ100 ng/µL)
• 20 µLのT7シーケンシングプライマー(100 ng/µL)
• 20 µLのBGH逆シーケンシングプライマー(100 ng/µL)
• 10 µLの発現コントロールプラスミド(500 ng/µL)

2×ボックス2(-80℃で保存)
• 21 × 50 µLのTOP10大腸菌細胞
• 50 µLのpUC19コントロールDNA(10 pg/µL)
• 6 mLのS.O.C.培地

よくあるご質問(FAQ)

Can I store my competent E. coli in liquid nitrogen?

We do not recommend storing competent E. coli strains in liquid nitrogen as the extreme temperature can be harmful to the cells. Also, the plastic storage vials are not intended to withstand the extreme temperature and may crack or break.

How should I store my competent E. coli?

We recommend storing our competent E. coli strains at -80°C. Storage at warmer temperatures, even for a brief period of time, will significantly decrease transformation efficiency.

I performed stable selection but my antibiotic-resistant clones do not express my gene of interest. What could have gone wrong?

Here are possible causes and solutions:

Detection method may not be appropriate or sensitive enough:
- We recommend optimizing the detection protocol or finding more sensitive methods. If the protein is being detected by Coomassie/silver staining, we recommend doing a western blot for increased sensitivity. The presence of endogenous proteins in the lysate may obscure the protein of interest in a Coomassie/silver stain. If available, we recommend using a positive control for the western blot.
- Insufficient number of clones screened: Screen at least 20 clones.
- Inappropriate antibiotic concentration used for stable selection: Make sure the antibiotic kill curve was performed correctly. Since the potency of a given antibiotic depends upon cell type, serum, medium, and culture technique, the dose must be determined each time a stable selection is performed. Even the stable cell lines we offer may be more or less sensitive to the dose we recommend if the medium or serum is significantly different.
- Expression of gene product (even low level) may not be compatible with growth of the cell line: Use an inducible expression system.
- Negative clones may result from preferential linearization at a vector site critical for expression of the gene of interest: Linearize the vector at a site that is not critical for expression, such as within the bacterial resistance marker.

I used a mammalian expression vector but do not get any expression of my protein. Can you help me troubleshoot?

Here are possible causes and solutions:

- Try the control expression that is included in the kit
Possible detection problem:

- Detection of expressed protein may not be possible in a transient transfection, since the transfection efficiency may be too low for detection by methods that assess the entire transfected population. We recommend optimizing the transfection efficiency, doing stable selection, or using methods that permit examination of individual cells. You can also increase the level of expression by changing the promoter or cell type.
- Expression within the cell may be too low for the chosen detection method. We recommend optimizing the detection protocol or finding more sensitive methods. If the protein is being detected by Coomassie/silver staining, we recommend doing a western blot for increased sensitivity. The presence of endogenous proteins in the lysate may obscure the protein of interest in a Coomassie/silver stain. If available, we recommend using a positive control for the western blot. Protein might be degraded or truncated: Check on a Northern. Possible time-course issue: Since the expression of a protein over time will depend upon the nature of the protein, we always recommend doing a time course for expression. A pilot time-course assay will help to determine the optimal window for expression. Possible cloning issues: Verify clones by restriction digestion and/or sequencing.

Find additional tips, troubleshooting help, and resources within our Protein Expression Support Center.

I am using a mammalian expression vector that has the neomycin resistance gene. Can I use neomycin for stable selection in mammalian cells?

No; neomycin is toxic to mammalian cells. We recommend using Geneticin (a.k.a. G418 Sulfate), as it is a less toxic and very effective alternative for selection in mammalian cells.

引用および参考文献 (2)

引用および参考文献
Abstract
Livin, a novel inhibitor of apoptosis protein family member.
Authors: Kasof G M; Gomes B C;
Journal:J Biol Chem
PubMed ID:11024045
'A novel human inhibitor of apoptosis protein (IAP) family member termed Livin was identified, containing a single baculoviral IAP repeat (BIR) domain and a COOH-terminal RING finger domain. The mRNA for livin was not detectable by Northern blot in most normal adult tissues with the exception of the placenta, but ... More
Endogenous 24(S),25-epoxycholesterol fine-tunes acute control of cellular cholesterol homeostasis.
Authors:Wong J, Quinn CM, Gelissen IC, Brown AJ,
Journal:J Biol Chem
PubMed ID:17981807
Certain oxysterols, when added to cultured cells, are potent regulators of cholesterol homeostasis, decreasing cholesterol synthesis and uptake and increasing cholesterol efflux. However, very little is known about whether or not endogenous oxysterol(s) plays a significant role in cholesterol homeostasis. 24(S),25-Epoxycholesterol (24,25EC) is unique among oxysterols in that it is ... More