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- 详细信息
- 文献和实验
- 技术资料
- 供应商:
上海联迈生物工程有限公司
- 库存:
大量
- 目录编号:
LM-21038R
- 克隆性:
多克隆
- 抗原来源:
Rabbit
- 保质期:
1年
- 抗体英文名:
ROD1/PTBP3
- 抗体名:
调节分化蛋白ROD1抗体
- 宿主:
Rabbit
- 适应物种:
Human, Mouse, Rat, Dog, Pig, Cow, Horse, Rabbit, Zebrafish, Sheep, Danio
- 免疫原:
KLH conjugated synthetic peptide derived from human ROD1/PTBP3:201-300/552
- 亚型:
IgG
- 形态:
Lyophilized or Liquid
- 应用范围:
WB=1:500-2000 ELISA=1:500-1000 IHC-P=1:400-800 IHC-F=1:400-800 ICC=1:100-500 IF=1:100-500 (石蜡切片需做抗原修复)
- 浓度:
1mg/ml
- 保存条件:
Store at -20 °C
- 规格:
100ul 200ul
| 英文名称 | ROD1/PTBP3 |
| 中文名称 | 调节分化蛋白ROD1抗体 |
| 别 名 | DKFZp781I1117; Fission yeast differentiation regulator; OTTHUMP00000021931; OTTHUMP00000021932; Polypyrimidine tract binding protein 3; regulator of differentiation 1; Regulator of differentiation (in S. pombe) 1; Regulator of differentiation 1; ROD 1; Rod1; ROD1 regulator of differentiation 1; ROD1_HUMAN. |
| 规格价格 | 100ul/1380元 购买 200ul/2200元 购买 大包装/询价 |
| 说 明 书 | 100ul 200ul |
| 研究领域 | 细胞生物 结合蛋白 细胞分化 表观遗传学 |
| 抗体来源 | Rabbit |
| 克隆类型 | Polyclonal |
| 交叉反应 | Human, Mouse, Rat, Dog, Pig, Cow, Horse, Rabbit, Zebrafish, Sheep, Danio |
| 产品应用 | WB=1:500-2000 ELISA=1:500-1000 IHC-P=1:400-800 IHC-F=1:400-800 ICC=1:100-500 IF=1:100-500 (石蜡切片需做抗原修复) not yet tested in other applications. optimal dilutions/concentrations should be determined by the end user. |
| 分 子 量 | 60kDa |
| 细胞定位 | 细胞核 |
| 性 状 | Lyophilized or Liquid |
| 浓 度 | 1mg/ml |
| 免 疫 原 | KLH conjugated synthetic peptide derived from human ROD1/PTBP3:201-300/552 |
| 亚 型 | IgG |
| 纯化方法 | affinity purified by Protein A |
| 储 存 液 | 0.01M TBS(pH7.4) with 1% BSA, 0.03% Proclin300 and 50% Glycerol. |
| 保存条件 | Store at -20 °C for one year. Avoid repeated freeze/thaw cycles. The lyophilized antibody is stable at room temperature for at least one month and for greater than a year when kept at -20°C. When reconstituted in sterile pH 7.4 0.01M PBS or diluent of antibody the antibody is stable for at least two weeks at 2-4 °C. |
| PubMed | PubMed |
| 产品介绍 | background: The protein encoded by this gene binds RNA and is a regulator of cell differentiation. The encoded protein preferentially binds to poly(G) and poly(U) sequences in vitro. Several transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Oct 2011] Function: RNA-binding protein that mediates pre-mRNA alternative splicing regulation. Plays a role in the regulation of cell proliferation, differentiation and migration. Positive regulator of EPO-dependent erythropoiesis. Participates in cell differentiation regulation by repressing tissue-specific exons. Promotes FAS exon 6 skipping. Binds RNA, preferentially to both poly(G) and poly(U). Subcellular Location: Contains 4 RRM (RNA recognition motif) domains. Tissue Specificity: Expressed in several hematopoietic cell lines examined. Similarity: Contains 4 RRM (RNA recognition motif) domains. SWISS: O95758 Gene ID: 9991 Database links: Entrez Gene: 9991 Human Entrez Gene: 230257 Mouse Entrez Gene: 83515 Rat Omim: 607527 Human SwissProt: O95758 Human SwissProt: Q8BHD7 Mouse SwissProt: Q9Z118 Rat Unigene: 269988 Human Unigene: 331640 Mouse Unigene: 162818 Rat Important Note: This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications. |
| 产品图片 | ![]() Sample: Liver (Mouse) Lysate at 40 ug Primary: Anti-ROD1/PTBP3 (bs-21038R) at 1/300 dilution Secondary: IRDye800CW Goat Anti-Rabbit IgG at 1/20000 dilution Predicted band size: 60 kD Observed band size: 60 kD |
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文献和实验7、9、10。它们的催化区域与酵母的 HDAl 蛋白同源,特异性地与细胞分化有关。 (3)第三类:最近发现酵母中的沉默信息调节因子―2(silentinformationregulator―2,SIR―2)也是一种组蛋白去乙酰化酶,人细胞中的 SIR―2 同源物也被鉴定出来。因此,SIR―2 及其相关蛋白构成了高等真核生物的第三类组蛋白去乙酰化酶。人类有 7 种 SIR―2 同源物,分别为 SIRT―1~7。 研究表明,酵母组蛋白去乙酰化酶 HDAl 及 RPD3 突变可使组蛋白H4普遍高乙酰化。HDAC
浅析染色质免疫沉淀(ChIP)技术在 DNA 与蛋白质相互作用研究中的重要性
染色质免疫沉淀(ChIP)是研究蛋白质-DNA 相互作用的一项强大技术,广泛用于多个领域的染色质相关蛋白的研究(如组蛋白及其异构体,转录因子等),特别适用于已知启动子序列或整个基因位点的组蛋白修饰分析研究。这项技术采用特定抗体来富集存在组蛋白修饰或者转录调控的 DNA 片段,通过多种下游检测技术(定量 PCR ,芯片,测序等)来检测此富集片段的 DNA 序列。 ChIP 技术自诞生之后,已成功的应用于人或动物细胞和组织 [1] 、植物组织 [2] 、酵母 [3] 以及细菌、质粒
扫描仪中,都采用机械式的二维X,Y线性扫描技术实现,即X,Y方向都采用直线驱动器和直线导轨实现往复运动。此类装置,由于驱动系统的频率限制,驱动器的扫描惯性大,使得扫描效率低,分析时间相当长;并且往复行程长,对直线导轨的精度要求相当高。二、光机结合的二维扫描系统为同样实现生物芯片的二维扫描,我们的实验装置设计如图2,采用了振镜和大数值孔径的远心f-è物镜相结合实现X方向扫描,Y方向的运动仍采用直线驱动器和直线导轨实现。 系统中,对于f-è物镜,满足x=2fè(è为振镜的摆动角度,f为物镜焦距)的线性
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