这是一篇有关磷酸酶张力蛋白同源基因 (PTEN) 的综述,是根据23篇发表使用所有方法的文章归纳的。这综述旨在帮助来邦网的访客找到最适合磷酸酶张力蛋白同源基因 抗体。
磷酸酶张力蛋白同源基因 同义词: 10q23del; BZS; DEC; GLM2; MHAM; MMAC1; PTEN1; TEP1; MMAC1 phosphatase and tensin homolog deleted on chromosome 10; mutated in multiple advanced cancers 1; phosphatase and tensin-like protein; phosphatidylinositol-3,4,5-trisphosphate 3-phosphatase and dual-specificity protein phosphatase PTEN
赛信通(上海)生物试剂有限公司赛信通(上海)生物试剂有限公司 磷酸酶张力蛋白同源基因 产品
- 为了研究STAT3/p63/Notch信号通路在调节小鼠和人的细胞分化中的功能,采用了Cell Signaling Technology公司的PTEN抗体,进行了蛋白质印迹实验。
- 为了研究mTOR通路对Notch信号通路和细胞分化的调节作用,使用了Cell Signaling Technology公司的抗PTEN抗体来进行免疫印迹分析。
- 为了研究表皮生长因子突变常常与肿瘤发生有关,研究了Akt介导的在表皮生长因子诱导下固醇调节结合蛋白1的切割以及移位机理,并发现了一种新的治疗由于表皮生长因子激活的胶质母细胞瘤,采用了Cell Signaling公司磷酸酶张力蛋白同源抗体,进行免疫化学荧光实验。
- 为了研究肿瘤细胞中PI3K途径的激活机制,使用了Cell Signaling公司的抗PTEN抗体来进行蛋白印迹分析。
- 为了研究Prdx1在调控肿瘤发生中的作用,采用了Cell Signaling公司的抗PTEN抗体产品,进行了免疫印迹实验。
- 为了阐明Rak是一个肿瘤抑制基因,通过调节PTEN蛋白的稳定性和功能来发挥作用,采用了Cell Signaling Technology公司的抗PTEN抗体,进行了蛋白质印迹实验。
- 为了研究PTEN的磷酸化在调控ATP敏感的钾离子通道中的作用,采用了Cell Signaling公司的PTEN抗体(1:5000)产品,进行了免疫印迹实验。
- 为了说明肿瘤抑制因子PTEN可以通过染色质修饰来调控ARE激活,使用了Cell Signaling公司的抗PTEN来进行蛋白印迹实验或者是染色质免疫沉淀实验。
- 为了研究S100B蛋白在星形胶质细胞成形和迁移过程中所起的调控作用,使用了Cell Signaling公司的抗PTEN抗体来进行免疫沉淀分析。
- 为研究是否PI3K/PTEN途径在调控Fas 诱导的I型和II型细胞的凋亡过程中有着重要作用,将Cell Signaling提供的抗PTEN抗体用于蛋白免疫印迹。
- 为研究UbcH7在细胞周期的s期时所起的调控作用,使用了Cell Signaling公司的抗PTEN抗体来进行免疫组化分析。
- 为了研究染料木黄酮如何调控前列腺癌细胞中抑癌基因的表达,采用了Cell Signaling Technology的PTEN抗体进行了蛋白质印迹实验。
- 为了说明丙戊酸(VPA)和顺铂对卵巢癌细胞的协同细胞毒性作用,采用了Cell Signaling公司的抗PTEN抗体进行蛋白免疫印迹实验。
- 为了研究TG2对FAK/AKT细胞存活信号的调控作用,采用了Cell Signaling公司的抗PTEN(pSer380)磷酸化和抗PTEN总蛋白的抗体进行了免疫印记、免疫共沉淀、免疫组织化学和免疫荧光实验。
- 为了研究甲状腺癌和相关的桥本甲状腺炎的发病率,采用了Cell Signaling的抗PTEN抗体进行免疫组化试验。
- 为了测定海拉细胞中磷酸化PTEN的水平,使用了Cell Signaling公司的抗磷酸化PTEN多克隆抗体进行蛋白印迹实验。
EMD MilliporeEMD Millipore 磷酸酶张力蛋白同源基因 产品
Life Technologies CorporationLife Technologies Corporation 磷酸酶张力蛋白同源基因 产品
Thermo Scientific Pierce ProductsThermo Scientific Pierce Products 磷酸酶张力蛋白同源基因 产品
Santa Cruz BiotechnologySanta Cruz Biotechnology 磷酸酶张力蛋白同源基因 产品
CASCADE BIOSCIENCE
文章列表
- Hui Kuan Lin et al. (2010). "Skp2 targeting suppresses tumorigenesis by Arf-p53-independent cellular senescence".PMID 20237562
- Helenia Ansuini et al. (2009). "Anti-EphA2 Antibodies with Distinct In Vitro Properties Have Equal In Vivo Efficacy in Pancreatic Cancer".PMID 20130824
- Jianhui Ma et al. (2010). "Mammalian target of rapamycin regulates murine and human cell differentiation through STAT3/p63/Jagged/Notch cascade".PMID 20038814
- Deliang Guo et al. (2009). "EGFR Signaling Through an Akt-SREBP-1-Dependent, Rapamycin-Resistant Pathway Sensitizes Glioblastomas to Antilipogenic Therapy".PMID 20009104
- Barry Fine et al. (2009). "Activation of the PI3K pathway in cancer through inhibition of PTEN by exchange factor P-REX2a".PMID 19729658
- Jason T Huse et al. (2009). "The PTEN-regulating microRNA miR-26a is amplified in high-grade glioma and facilitates gliomagenesis in vivo".PMID 19487573
- Juxiang Cao et al. (2009). "Prdx1 inhibits tumorigenesis via regulating PTEN/AKT activity".PMID 19369943
- Eun Kyoung Yim et al. (2009). "Rak functions as a tumor suppressor by regulating PTEN protein stability and function".PMID 19345329
- Janice B B Lam et al. (2009). "Adiponectin haploinsufficiency promotes mammary tumor development in MMTV-PyVT mice by modulation of phosphatase and tensin homolog activities".PMID 19319191
- Ke Ning et al. (2009). "Leptin-dependent Phosphorylation of PTEN Mediates Actin Restructuring and Activation of ATP-sensitive K+ Channels".PMID 19208634
- Kensuke Sakamoto et al. (2009). "Role of the tumor suppressor PTEN in antioxidant responsive element-mediated transcription and associated histone modifications".PMID 19158375
- Flora Brozzi et al. (2009). "S100B Protein Regulates Astrocyte Shape and Migration via Interaction with Src Kinase: IMPLICATIONS FOR ASTROCYTE DEVELOPMENT, ACTIVATION, AND TUMOR GROWTH".PMID 19147496
- James W Peacock et al. (2009). "PTEN loss promotes mitochondrially dependent type II Fas-induced apoptosis via PEA-15".PMID 19103758
- Judit Pallares et al. (2009). "CK2beta is expressed in endometrial carcinoma and has a role in apoptosis resistance and cell proliferation".PMID 19056846
- Elizabeth A Whitcomb et al. (2009). "Novel control of S phase of the cell cycle by ubiquitin-conjugating enzyme H7".PMID 18946090
- Nobuyuki Kikuno et al. (2008). "Genistein mediated histone acetylation and demethylation activates tumor suppressor genes in prostate cancer cells".PMID 18431742
- Ching Tai Lin et al. (2008). "Valproic acid resensitizes cisplatin-resistant ovarian cancer cells".PMID 18429963
- Shu Takakura et al. (2008). "Oncogenic role of miR-17-92 cluster in anaplastic thyroid cancer cells".PMID 18429962
- Amit Verma et al. (2008). "Tissue transglutaminase regulates focal adhesion kinase/AKT activation by modulating PTEN expression in pancreatic cancer cells".PMID 18381937
- Shawn D Larson et al. (2007). "Increased incidence of well-differentiated thyroid cancer associated with Hashimoto thyroiditis and the role of the PI3k/Akt pathway".PMID 17481480
- Francis Edwin et al. (2006). "The tumor suppressor PTEN is necessary for human Sprouty 2-mediated inhibition of cell proliferation".PMID 16371366
- Lenin Mahimainathan et al. (2004). "Inactivation of platelet-derived growth factor receptor by the tumor suppressor PTEN provides a novel mechanism of action of the phosphatase".PMID 14718524
- Wei Liu et al. (2002). "Vitamin D arrests thyroid carcinoma cell growth and induces p27 dephosphorylation and accumulation through PTEN/akt-dependent and -independent pathways.".PMID 11839571
