EMSA探针生物素标记试剂盒(GS008)

EMSA探针生物素标记试剂盒

产品编号: GS008

产品包装:20次
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20次

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1516.00 10

价格: ¥ 1516.00

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GS008 EMSA探针生物素标记试剂盒 20次 1516.00元

EMSA探针生物素标记试剂盒(EMSA Probe Biotin Labeling Kit)是一种通过Terminal Deoxynucleotidyl Transferase(TdT)把生物素标记的dUTP添加到单链DNA 3’末端,然后通过退火产生生物素标记的EMSA探针的试剂盒。通常DNA的3’末端被标记后不会干扰基于序列特异性蛋白结合的EMSA检测。
Terminal Deoxynucleotidyl Transferase(TdT)可以在不依赖于模板的情况下催化在DNA的3′-OH端加上dNTP的反应。关于TdT催化双链DNA末端加dNTP的反应效率,3’端突出的双链DNA要比平端或3’端缩进的双链DNA高很多。TdT催化单链DNA末端加dNTP的反应效率要比双链DNA高很多。在适当的条件下,TdT也可以催化RNA 3’末端加NTP的反应。
本试剂盒适合标记纯化的单链DNA,如果用于标记EMSA探针,可以在单链标记后再进行退火。
本试剂盒中提供了已经用生物素标记好的Biotin-Control Oligo,可以用作检测DNA标记效率的对照。
如果每个标记反应的探针量为5pmol,本试剂盒可以用于20个标记反应。
包装清单:

产品编号 产品名称 包装
GS008-1 TdT Buffer(5X) 250μl
GS008-2 TdT(10U/μl) 20μl
GS008-3 Biotin-11-dUTP(5μM) 100μl
GS008-4 Biotin-Control Oligo(0.4μM) 100μl
GS008-5 Ultrapure water 1ml
GS008-6 探针标记终止液 200μl
GS008-7 TE 15ml
GS008-8 退火缓冲液(10X) 150μl
说明书 1份

保存条件:
-20℃保存。
注意事项:
需自备用于检测探针标记效率的带正电荷尼龙膜,以及用于生物素检测的相关试剂。带正电荷尼龙膜(FFN10/FFN11/FFN13/FFN15)可以向碧云天订购。相应的用于生物素检测的化学发光法EMSA试剂盒(GS009)也可以向碧云天订购。
      本产品仅限于专业人员的科学研究用,不得用于临床诊断或治疗,不得用于食品或药品,不得存放于普通住宅内。
为了您的安全和健康,请穿实验服并戴一次性手套操作。 

使用说明:
1.准备工作:
A.取出TdT Buffer (5X)、Biotin-11-dUTP和Ultrapure water溶解,并置于冰浴上备用。
B.取出待标记的单链EMSA探针,用水稀释至1μM,并置于冰浴上备用。如果待标记的EMSA探针为双链,95℃加热2分钟,然后立即放置到冰水浴中,使双链的EMSA探针转变为单链的探针,然后同样用水稀释至总的单链DNA浓度为1μM,即每条单链的浓度为0.5μM,相当于最初双链的EMSA探针浓度为0.5μM。
2.DNA探针的标记:

Ultrapure water 29μl
TdT Buffer(5X) 10μl
待标记探针(1μM) 5μl
Biotin-11-dUTP(5μM) 5μl
TdT(10U/μl) 1μl
总体积 50μl

A.参考上表设置反应体系。注:对于双链的EMSA探针的标记反应,建议一次做两管,即总体积共100μl,以最终获得足够的生物素标记EMSA探针用于后续EMSA检测。
B.用枪轻轻吹打混匀,切勿vortex。37℃孵育30分钟。
C.加入2.5μl 探针标记终止液,轻轻混匀终止反应。
3.TdT的去除:
A.探针标记反应终止后,加入52.5μl氯仿-异戊醇(24:1),vortex使有机相和水相充分混合以抽提TdT。(说明:静止后有机相和水相会很快分层)。
B.12000-14000g离心1-2分钟。吸取上清备用。上清即为被生物素标记的单链DNA探针。
4.探针的纯化(选做):
通常为实验简便起见,可以不必纯化标记好的探针。有些时候,纯化后的探针会改善后续实验的结果。
如需纯化,可以按照如下步骤操作:
A.对于100μl标记好的探针,加入1/4体积即25μl的5M醋酸铵,再加入2体积即200μl的无水乙醇,混匀。
B.-70℃至-80℃沉淀1小时,或-20℃沉淀过夜。
C.4℃,12,000g-16,000g离心30分钟。小心去除上清,切不可触及沉淀。
D.4℃,12,000g-16,000g离心1分钟。小心吸去残余液体。微晾干沉淀,但不宜过分干燥。
E.加入50μlTE,完全溶解沉淀。标记好的探针可以-20℃保存。
5.生物素标记探针标记效率的检测:
A.取5μlBiotin-Control Oligo(0.4μM),加入196μlTE,混匀,稀释成10nM Biotin-Control Oligo(作为标准品)。取出适量10nM Biotin-Control Oligo,依次 稀释成5nM、2.5nM、1nM、0.5nM和 0.25nM。
B.取3μl步骤3B所获得的生物素标记的DNA探针(100nM),加入27μlTE,混匀,稀释成10nM生物素标记的探针(作为待测样品)。取出适量的10nM 生物素标记的探针,依次稀释成5nM、2.5nM、1nM、0.5nM和0.25nM。
C.参考下面的表格,取一适当大小的带正电荷尼龙膜,在膜上做好相应标记。 对于经过梯度稀释的标准品和待测样品,分别取2μl滴加到膜上。在膜上滴加标准品或待测样品时,请注意使液滴充分被膜吸收,在膜上形成一个湿的圆形小斑点。说明:如果条件许可,可以使用专门 用于点杂交或狭缝杂交的设备进行探针标记效率的检测,探针的用量参考下表,浓度可以再稀释50倍,而所用体积可以相应放大50倍至100μl。

探针浓度 10nM 5nM 2.5nM 1nM 0.5nM 0.25nM
Biotin-Control Oligo 2μl 2μl 2μl 2μl 2μl 2μl
生物素标记的探针 2μl 2μl 2μl 2μl 2μl 2μl
探针量 20fmol 10fmol 5fmol 2fmol 1fmol 0.5fmol

D.滴加完所有的标准品和样品后,将膜室温晾干。
E.用紫外交联仪(UV-light cross-linker)选择254nm紫外波长,120mJ/cm2,交联30-45秒。如果没有紫外交联仪可以使用普通的手提式紫外灯(例如碧云天的手提紫外检测仪(EUV002)),距离膜5-10厘米左右照射1-5分钟。也可以使用超净工作台内的紫外灯,距离膜5-10厘米左右照射1-10分钟。最佳的交联时间可以使用标准品自行摸索
F.随后可以立即采用各种生物素检测试剂盒,检测出样品的生物素标记效率;也可以室温存放数天直至进行后续检测。
G.如果最后采用的是ECL类试剂或其它类似试剂进行检测,则可以对比样品和标准品的灰度,从而计算出探针的标记效率。例如2fmol量的待测样品探针的灰度和1fmol标准品的灰度相同,则说明探针的标记效率大致为50%,待测样品中总探针的浓度约为1μM,而实际被生物素标记的探针约为0.5μM。探针的标记效率也可以通过建立标准曲线进行比较精确的计算。用于后续检测时通常要求标记效率不低于30%。有文献报道标记效率和3’末端的碱基无关,但和整个待标记探针的序列有关。由于在TdT的催化下可以在待标记探针的3’端加上多个Biotin标记的dUTP,因此有时会出现标记效率大于100%的情况。
6.生物素标记EMSA探针的制备:
A.对于步骤3B标记好的单链DNA探针,把正义链和反义链等体积混合(不可根据标记效率调整摩尔比例)。对于最初使用变性的双链EMSA探针进行探针标记的情况,直接进入下一步。
B.加入退火缓冲液(10X),使退火缓冲液的最终浓度为1X,混匀。例如待退火探针的体积为100微升,则加入11微升退火缓冲液(10X)。
C.如下设置PCR仪进行退火反应:

步骤 温度 时间 说明
1 95℃ 2分钟 让oligo充分变性
2 每8秒下降0.1℃,降至25℃(注1) 约90分钟 退火
3 4℃ 长时间保持 暂时存放

注意:如果所用的PCR仪不具备下降0.1℃的功能,也可以设置为每90秒下降1℃。
D.退火反应结束后,-20℃保存标记好的EMSA探针。此时的EMSA探针已经可以直接用于后续的EMSA检测,也可以对探针进行适当纯化后再进行EMSA检测。

EMSA探针生物素标记试剂盒(GS008)

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1. Zhang J, Xu YJ, Xiong WN, Zhang ZX, Du CL, Qiao LF, Ni W, Chen SX.
Decreasing activity of NF-κB inhibits the proliferation of A549 cells via the down-regulation of cyclin D1 expression.
《中德临床肿瘤学杂志》 . 2008;7(4):217-22.

2. Wang X, Li C, Chen Y, Hao Y, Zhou W, Chen C, Yu Z.
Hypoxia enhances CXCR4 expression favoring microglia migration via HIF-1alpha activation.
BIOCHEM BIOPH RES CO . 2008 Jun 27;371(2):283-8. (IF 2.985)

3. Zhang J, Xu YJ, Xiong WN, Zhang ZX, DU CL, Qiao LF, Ni W, Chen SX.
Inhibition of NF-kappaB through IkappaBalpha transfection affects invasion of human lung cancercell line A549.
《癌症》 . 2008 Jun;28(3):251-6.

4. Zhang J, Xu Y, Xiong W, Zhang Z, Du C, Qiao L, Ni W, Chen S.
Inhibitory activity of nuclear factor-kappaB potentiates cisplatin-induced apoptosis in A549 cells.
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5. Wei Y, Weng D, Li F, Zou X, Young DO, Ji J, Shen P.
Involvement of JNK regulation in oxidative stress-mediated murine liver injury by microcystin-LR.
Apoptosis . 2008 Aug;13(8):1031-42. (IF 4.543)

6. Yu S, Mu Y, Ao J, Chen X.
Peroxiredoxin IV regulates pro-inflammatory responses in large yellow croaker (Pseudosciaena crocea) andprotects against bacterial challenge.
J Proteome Res . 2010 Mar 5;9(3):1424-36. (IF 4.074)

7. Peng X, Wang Y, Kolli S, Deng J, Li L, Wang Z, Raj JU, Gou D.
Physical and functional interaction between the ID1 and p65 for activation of NFκB.
AM J PHYSIOL-CELL PH . 2012 Aug 1;303(3):C267-77. (IF 3.485)

8. Li K, Dan Z, Hu X, Ouzhu M, Ciren Y, Wang Z, Wang J, Yang X, Ze Y.
CD14 overexpression upregulates TNF-α-mediated inflammatory responses and suppresses the malignancy ofgastric carcinoma cells.
Mol Cell Biochem . 2013 Apr;376(1-2):137-43. (IF 2.795)

9. Sun J, Fan L, Li M, Zhang Y, Cheng L.
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《中德临床肿瘤学杂志》 . 2013 April;12(4):181-7.

10. Wang LP, Wang Y, Zhao LM, Li GR, Deng XL.
Angiotensin II upregulates K(Ca)3.1 channels and stimulates cell proliferation in rat cardiac fibroblasts.
Biochem Pharmacol . 2013 May 15;85(10):1486-94. (IF 4.96)

11. Fang L, Xu Z, Wang GS, Ji FY, Mei CX, Liu J, Wu GM.
Directed evolution of an LBP/CD14 inhibitory peptide and its anti-endotoxin activity.
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Sulfide exposure results in enhanced sqr transcription through upregulating the expression and activation of HSF1 in echiuran worm Urechis unicinctus.
Aquatic Toxicology . 2016 Jan; 170:229–39. (IF 3.794)

13. Liu X, Zhang Z, Ma X, Li X, Zhou D, Gao B, Bai Y.
Sulfide exposure results in enhanced sqr transcription through upregulating the expression andactivation of HSF1 in echiuran worm Urechis unicinctus.
Aquat Toxicol . 2016 Jan;170:229-39. (IF 4.344)

14. Wu XB, Liu Y, Wang GH, Xu X, Cai Y, Wang HY, Li YQ, Meng HF, Dai F, Jin JD.
Mesenchymal stem cells promote colorectal cancer progression through AMPK/mTOR-mediated NF-κBactivation.
SCI REP-UK . 2016 Feb 19;6:21420. (IF 3.998)

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Identification of Two Subgroups of Type I IFNs in Perciforme Fish Large Yellow Croaker Larimichthyscrocea Provides Novel Insights into Function and Regulation of Fish Type I IFNs.
Front Immunol . 2016 Sep 7;7:343. (IF 5.085)

17. Huang TL, Mu N, Gu JT, Shu Z, Zhang K, Zhao JK, Zhang C, Hao Q, Li WN, Zhang WQ, Liu NN, Zhang Y, Zhang W, Xue XC, Zhang YQ.
DDR2-CYR61-MMP1 Signaling Pathway Promotes Bone Erosion in Rheumatoid Arthritis Through Regulating Migration and Invasion of Fibroblast-Like Synoviocytes.
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Fucoxanthin provides neuroprotection in models of traumatic brain injury via the Nrf2-ARE and Nrf2-autophagy pathways.
SCI REP-UK . 2017 Apr 21;7:46763. (IF 3.998)

19. You M, Jin J, Liu Q, Xu Q, Shi J, Hou Y.
PPARα Promotes Cancer Cell Glut1 Transcription Repression.
J Cell Biochem . 2017 Jun;118(6):1556-1562. (IF 4.237)

20. Zhang W, Xu Y, Xu Q, Shi H, Shi J, Hou Y.
PPARδ promotes tumor progression via activation of Glut1 and SLC1-A5 transcription.
Carcinogenesis . 2017 Jul 1;38(7):748-755. (IF 4.603)

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GdmRIII, a TetR Family Transcriptional Regulator, Controls Geldanamycin and Elaiophylin Biosynthesis in Streptomyces autolyticus CGMCC0516.
SCI REP-UK . 2017 Jul 6;7(1):4803. (IF 3.998)

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Transcription factor ThWRKY4 binds to a novel WLS motif and a RAV1A element in addition to the W-box to regulate gene expression.
Plant Sci . 2017 Aug;261:38-49. (IF 3.591)

23. Wang J, Ge P, Qiang L, Tian F, Zhao D, Chai Q, Zhu M, Zhou R, Meng G, Iwakura Y, Gao GF, Liu CH.
The mycobacterial phosphatase PtpA regulates the expression of host genes and promotes cell proliferation.
Nat Commun . 2017 Aug 15;8(1):244. (IF 12.121)

24. Fu J, Liu Q, Wang C, Liang J, Liu L, Wang Q.
ZmWRKY79 positively regulates maize phytoalexin biosynthetic gene expression and is involved in stress response.
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The E3 Ligase DROUGHT HYPERSENSITIVE Negatively Regulates Cuticular Wax Biosynthesis by Promoting the Degradation of Transcription Factor ROC4 in Rice.
Plant Cell . 2018 Jan;30(1):228-244. (IF 9.618)

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Fisetin alleviates oxidative stress after traumatic brain injury via the Nrf2-ARE pathway.
Neurochem Int . 2018 Sep;118:304-313. (IF 3.881)

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OsWRKY67 positively regulates blast and bacteria blight resistance by direct activation of PR genes in rice.
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NF-YB1-YC12-bHLH144 complex directly activates Wx to regulate grain quality in rice (Oryza sativa L.).
Plant Biotechnol J . 2018 Dec 15. (IF 8.154)

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Estrogen receptors participate in carcinogenesis signaling pathways by directly regulating NOD-like receptors.
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Sodium aescinate provides neuroprotection in experimental traumatic brain injury via the Nrf2-ARE pathway.
Brain Res Bull. 2020 Apr;157:26-36. (IF 3.37)

46. Ke-Cheng Zhu,Nan Zhang,Bao-Suo Liu,Liang Guo,Hua-Yang Guo,Shi-Gui Jiang,Dian-Chang Zhang
Functional Analysis of IRF1 Reveals its Role in the Activation of the Type I IFN Pathway in Golden Pompano, Trachinotus ovatus (Linnaeus 1758)
Int J Mol Sci. 2020 Apr 10;21(7):2652.;doi: 10.3390/ijms21072652. (IF 4.556)

47. Min Yang,Yuxin Wang,Qing Wang,Zhekai Zhou,Yepin Yu,Shina Wei,Shaowen Wang,Qiwei Qin
Characterization of Kruppel-like factor 6 in Epinephelus coioides: The role in viral infection and the transcriptional regulation on Peroxisome proliferator-activated receptor δ
FISH SHELLFISH IMMUN. 2020 Apr;99:9-18.;doi: 10.1016/j.fsi.2020.01.061. (IF 3.298)

48. Kang Yan,Ting Liu,Benzhen Duan,Feng Liu,Manman Cao,Wei Peng,Qi Dai,Huanchun Chen,Fangyan Yuan,Weicheng Bei
The CpxAR Two-Component System Contributes to Growth, Stress Resistance, and Virulence of Actinobacillus pleuropneumoniae by Upregulating wecA Transcription
Front Microbiol. 2020 May 21;11:1026.;doi: 10.3389/fmicb.2020.01026. (IF 4.235)

49. Wei Yang,Yanhu Ju,Liping Zuo,Luyue Shang,Xinru Li,Xiaoming Li,Shangzong Feng,Xinhua Ding,Zhaohui Chu
OsHsfB4d Binds the Promoter and Regulates the Expression of OsHsp18.0-CI to Resistant Against Xanthomonas Oryzae
Rice (N Y). 2020 May 27;13(1):28.;doi: 10.1186/s12284-020-00388-2.

50. Peikui Yang,Jude Juventus Aweya,Defu Yao,Fan Wang,Jingsheng Lun,Yujian Hong,Kaihui Sun,Yueling Zhang
The krüppel-like factor of Penaeus vannamei negatively regulates transcription of the small subunit hemocyanin gene as part of shrimp immune response
FISH SHELLFISH IMMUN. 2020 May;100:397-406.;doi: 10.1016/j.fsi.2020.03.035. (IF 3.298)

51. Fengxu Xiao,Youran Li,Yupeng Zhang,Hanrong Wang,Liang Zhang,Zhongyang Ding,Zhenghua Gu,Sha Xu,Guiyang Shi
Construction of a novel sugar alcohol-inducible expression system in Bacillus licheniformis
APPL MICROBIOL BIOT. 2020 Jun;104(12):5409-5425.;doi: 10.1007/s00253-020-10618-8. (IF 3.53)

52. Jialin Li,Qianqian Luan,Jing Han,Cunjia Zhang,Mengyu Liu,Zhonghai Ren
CsMYB60 directly and indirectly activates structural genes to promote the biosynthesis of flavonols and proanthocyanidins in cucumber
Hortic Res. 2020 Jul 1;7:103.;doi: 10.1038/s41438-020-0327-z.

53. Min Yang,Chen Jinpeng,Yuxin Wang,Qing Wang,Shaowen Wang,Shina Wei,Qiwei Qin
Nuclear factor kappa B/p65 plays a positive role in peroxisome proliferator-activated receptor δ expression in orange-spotted grouper Epinephelus coioides
FISH SHELLFISH IMMUN. 2020 Jul;102:101-107.;doi: 10.1016/j.fsi.2020.03.060. (IF 3.298)

54. Nan Zhang,Heng Jiang,Xiangkun Meng,Kun Qian,Yaping Liu,Qisheng Song,David Stanley,Jincai Wu,Yoonseong Park,Jianjun Wang
Broad-complex transcription factor mediates opposing hormonal regulation of two phylogenetically distant arginine kinase genes in Tribolium castaneum
Commun Biol. 2020 Oct 30;3(1):631.;doi: 10.1038/s42003-020-01354-w.

55. Zhaoshou Ran,Fei Kong,Jilin Xu,Kai Liao,Xiaojun Yan
Transcriptional regulation mechanism of sterol regulatory element binding proteins on Δ6 fatty acyl desaturase in razor clam Sinonovacula constricta
BRIT J NUTR. 2020 Nov 14;124(9):881-889.;doi: 10.1017/S0007114520002068. (IF 3.334)

56. Yifeng Wang,Yuxuan Hou,Jiehua Qiu,Huimei Wang,Shuang Wang,Liqun Tang,Xiaohong Tong,Jian Zhang
Abscisic acid promotes jasmonic acid biosynthesis via a ‘SAPK10-bZIP72-AOC’ pathway to synergistically inhibit seed germination in rice (Oryza sativa)
New Phytol. 2020 Nov;228(4):1336-1353.;doi: 10.1111/nph.16774. (IF 8.512)

57. Ming Wei,Quangang Liu,Zhanchao Wang,Jingli Yang,Wenlong Li,Yingxi Chen,Han Lu,Jinfu Nie,Baoguang Liu,Kaiwen Lv,Xuliang Mao,Su Chen,Jennifer Sanders,Hairong Wei,Chenghao Li
PuHox52-mediated hierarchical multilayered gene regulatory network promotes adventitious root formation in Populus ussuriensis
New Phytol. 2020 Nov;228(4):1369-1385.;doi: 10.1111/nph.16778. (IF 8.512)

58. Yanli Yang,Hui-Guang Li,Jie Wang,Hou-Ling Wang,Fang He,Yanyan Su,Ying Zhang,Cong-Hua Feng,Mengxue Niu,Zhonghai Li,Chao Liu,Weilun Yin,Xinli Xia
ABF3 enhances drought tolerance via promoting ABA-induced stomatal closure by directly regulating ADF5 in Populus euphratica
J Exp Bot. 2020 Dec 31;71(22):7270-7285.;doi: 10.1093/jxb/eraa383. (IF 5.908)

59. Juan Wang,Zichun Chen,Qing Zhang,Shanshan Meng,Cunxu Wei
The NAC Transcription Factors OsNAC20 and OsNAC26 Regulate Starch and Storage Protein Synthesis
Plant Physiol. 2020 Dec;184(4):1775-1791.;doi: 10.1104/pp.20.00984. (IF 6.902)

60. Yang Xiang,Xiujuan Sun,Xiangli Bian,Tianhui Wei,Tong Han,Jingwei Yan,Aying Zhang
The transcription factor ZmNAC49 reduces stomatal density and improves drought tolerance in maize
J Exp Bot. 2021 Feb 24;72(4):1399-1410.;doi: 10.1093/jxb/eraa507. (IF 5.908)

61. Yue Ma,Hao Xue,Feng Zhang,Qiu Jiang,Shuang Yang,Pengtao Yue,Feng Wang,Yuanyan Zhang,Linguang Li,Ping He,Zhihong Zhang
The miR156/SPL module regulates apple salt stress tolerance by activating MdWRKY100 expression
Plant Biotechnol J. 2021 Feb;19(2):311-323.;doi: 10.1111/pbi.13464. (IF 8.154)

62. Dongping Zhang,Minyan Zhang,Jiansheng Liang
RGB1 Regulates Grain Development and Starch Accumulation Through Its Effect on OsYUC11-Mediated Auxin Biosynthesis in Rice Endosperm Cells
Front Plant Sci. 2021 Mar 31;12:585174.;doi: 10.3389/fpls.2021.585174. (IF 4.402)