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RNAwait非凍型組織RNA保存液使用說明書*,*,庫存現貨,無效果,免費退款。公司現貨銷售,量大折扣,咨詢。詳細信息如下。
RNAwait非凍型組織RNA保存液使用說明書產品說明:
RNAwait是一種無毒的可直接使用的樣品儲存液,能使細胞內的RNA與RNA酶分離,可以快速可靠地保存動物組織、細胞內的RNA。組織獲取后立即浸入RNAwait保存液中,在室溫可以保存7天,4℃可以保存4周,-20℃、-80℃標本可以長期保存,RNA穩定存在不降解,取出后用各類方法抽提可以獲得高質量的RNA。
RNAwait非凍型組織RNA保存液使用說明書操作流程:
1. 根據要保存的各樣本的體積,計算出所需RNAwait用量。RNAwait的用量應當是組織體積的10倍(如100mg組織約用1ml RNAwait);離心收集2×106細胞RNAwait的用量是1ml。
2. 將RNAwait按需要量分裝入自備保存管中;
3. 快速將較大的組織切成厚度<0.5 cm的任意片狀,立即*浸入RNAwait中。組織的厚度一定要<0.5 cm。組織過厚則RNAwait不能有效滲入,組織中間部位的RNA不能受到保護。較小的組織(如大鼠的腎臟、脾臟,小鼠的大部分器官)取下后可以直接浸入RNAwait。
4. 保存時先將樣本浸入RNAwait后置4℃冰箱過夜(4℃過夜是必需的,這樣可使RNAwait*滲入到組織中),然后轉移到-20℃冰箱(RNAwait在-20℃時仍為液態,有結晶析出,是正常情況);或者在4℃冰箱過夜后,從RNAwait中取出組織塊,轉移到-80℃冰箱。在RNAwait中保存的標本,反復凍融至室溫20次不影響RNA的質量。
RNAwait非凍型組織RNA保存液使用說明書注意事項:
1. 組織和細胞取材速度要快,在獲取后應當盡快浸入RNAwait,以防止RNA降解。
2. 冰凍組織不能用RNAwait保存,因為RNAwait不能有效滲入冰凍組織。
3. 保存樣品的RNA提取:樣本從-20℃或-80℃冰箱取出后,復蘇到室溫后,取出組織塊,再用于提取RNA。細胞樣本則復溫后低速離心收集細胞,去除RNAwait,再用于提取RNA。后繼的處理(如組織勻漿)可以在室溫下進行,不必在液氮中操作,RNA仍能有效得到保護。殘留少量RNAwait保存液不影響后繼提取RNA的質量。
RNAwait非凍型組織RNA保存液使用說明書分子生物學領域:
涉及核酸純化、常用分子生物學試劑、PCR等相關試劑盒。
分子生物學試劑:擁有的價格優勢,品質可信賴,市場占比龐大。
產品名稱 | 英文名稱 | 包裝 |
RNAwait非凍型組織RNA保存液使用說明書 | RNAwait RNAlater | 可根據客戶要求訂制 |
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別 名 AMPK 2; AMPK2; AMPKalpha2; PRKAA 2; PRKAA; PRKAA2; Protein kinase AMP activated alpha 2 catalytic subunit; AAPK2_HUMAN.
濃 度 1mg/1ml
規 格 0.1ml/100μg 0.2ml/200μg
抗體來源 Rabbit
克隆類型 polyclonal
交叉反應 Human, Mouse, Rat, Dog, Pig, Cow, Rabbit, Sheep
產品類型 一抗
研究領域 腫瘤 細胞生物 神經生物學 信號轉導 激酶和磷酸酶 Alzheimer's
蛋白分子量 predicted molecular weight: 62kDa
性 狀 Lyophilized or Liquid
免 疫 原 KLH conjugated synthetic peptide derived from human AMPK alpha 2 C-terminus
亞 型 IgG
純化方法 affinity purified by Protein A
儲 存 液 0.01M PBS, pH 7.4 with 10 mg/ml BSA and 0.1% Sodium azide
產品應用 WB=1:100-500 ELISA=1:500-1000 IP=1:20-100 IHC-P=1:100-500 IHC-F=1:100-500 IF=1:100-500
(石蠟切片需做抗原修復)
not yet tested in other applications.
optimal dilutions/concentrations should be determined by the end user.
保存條件 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.
Important Note This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
產品介紹 The AMP activated protein kinase (AMPK) in mammals, and its homologue in Saccharomyces cerevisiae, are activated by cellular stresses associated with ATP depletion. AMPK is a heterotrimer comprising a catalytic alpha subunit with associated beta and gamma subunits. The alpha subunit has at least two isoforms (alpha 1 and alpha 2), which differ in their AMP dependence and subcellular localization, with alpha 2 complexes being partly nuclear. AMPK is activated allosterically by 5' AMP, which also promotes phosphorylation and activation by an upstream kinase, and inhibits dephosphorylation and inactivation. Elevation of AMP always accompanies depletion of ATP due to the action of adenylate kinase. Since high ATP antagonizes the activating effects of AMP, the system behaves like a cellular 'fuel gauge'. It is activated by various types of stress associated with ATP depletion, such as hypoxia, heat shock, metabolic poisoning and, in muscle, exercise. AMPK phosphorylates multiple targets which switch off anabolic pathways and switch on alternative catabolic pathways.
Function : Catalytic subunit of AMP-activated protein kinase (AMPK), an energy sensor protein kinase that plays a key role in regulating cellular energy metabolism. In response to reduction of intracellular ATP levels, AMPK activates energy-producing pathways and inhibits energy-consuming processes: inhibits protein, carbohydrate and lipid biosynthesis, as well as cell growth and proliferation. AMPK acts via direct phosphorylation of metabolic enzymes, and by longer-term effects via phosphorylation of transcription regulators. Also acts as a regulator of cellular polarity by remodeling the actin cytoskeleton; probably by indirectly activating myosin. Regulates lipid synthesis by phosphorylating and inactivating lipid metabolic enzymes such as ACACA, ACACB, GYS1, HMGCR and LIPE; regulates fatty acid and cholesterol synthesis by phosphorylating acetyl-CoA carboxylase (ACACA and ACACB) and hormone-sensitive lipase (LIPE) enzymes, respectively. Regulates insulin-signaling and glycolysis by phosphorylating IRS1, PFKFB2 and PFKFB3. AMPK stimulates glucose uptake in muscle by increasing the translocation of the glucose transporter SLC2A4/GLUT4 to the plasma membrane, possibly by mediating phosphorylation of TBC1D4/AS160. Regulates transcription and chromatin structure by phosphorylating transcription regulators involved in energy metabolism such as CRTC2/TORC2, FOXO3, histone H2B, HDAC5, MEF2C, MLXIPL/ChREBP, EP300, HNF4A, p53/TP53, SREBF1, SREBF2 and PPARGC1A. Acts as a key regulator of glucose homeostasis in liver by phosphorylating CRTC2/TORC2, leading to CRTC2/TORC2 sequestration in the cytoplasm. In response to stress, phosphorylates 'Ser-36' of histone H2B (H2BS36ph), leading to promote transcription. Acts as a key regulator of cell growth and proliferation by phosphorylating TSC2, RPTOR and ATG1: in response to nutrient limitation, negatively regulates the mTORC1 complex by phosphorylating RPTOR component of the mTORC1 complex and by phosphorylating and activating TSC2. In response to nutrient limitation, promotes autophagy by phosphorylating and activating ULK1. AMPK also acts as a regulator of circadian rhythm by mediating phosphorylation of CRY1, leading to destabilize it. May regulate the Wnt signaling pathway by phosphorylating CTNNB1, leading to stabilize it. Also phosphorylates CFTR, EEF2K, KLC1, NOS3 and SLC12A1.
Subunit : AMPK is a heterotrimer of an alpha catalytic subunit (PRKAA1 or PRKAA2), a beta (PRKAB1 or PRKAB2) and a gamma non-catalytic subunits (PRKAG1, PRKAG2 or PRKAG3). Interacts with FNIP1 and FNIP2.
Subcellular Location : Cytoplasm (By similarity). Nucleus. Note=In response to stress, recruited by p53/TP53 to specific promoters.
Post-translational modifications : Ubiquitinated (By similarity).
Phosphorylated at Thr-172 by STK11/LKB1 in complex with STE20-related adapter-alpha (STRADA) pseudo kinase and CAB39. Also phosphorylated at Thr-172 by CAMKK2; triggered by a rise in intracellular calcium ions, without detectable changes in the AMP/ATP ratio. CAMKK1 can also phosphorylate Thr-172, but at much lower lvel. Dephosphorylated by protein phosphatase 2A and 2C (PP2A and PP2C). Phosphorylated by ULK1; leading to negatively regulate AMPK activity and suggesting the existence of a regulatory feedback loop between ULK1 and AMPK.
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