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1
2018 - 05 - 18
5月18日消息,哈佛大学的创业者Rejuvenate Bio已经开始测试为犬类延长寿命的方法,如果这项技术获得成功,那么将在人类身上进行试验。公司的合创者,63岁的George Church称,如果在查理士王小猎犬身上进行的医学测试成果的话,他将在自己身上进行测试。       查理士王小猎犬通常有一种心脏上的小疾病,导致半数物种在10岁左右时会因病死去。研究人员的研究已经表明,改变单一生物体的基因能够使其寿命加倍,并且在苍蝇身上取得了成功。这项研究的目的是观察在保持物种年轻身体状态的同时延长物种寿命会带来什么样的结果。Church教授被视作 “基因编辑”领域的一位先驱者,而且也正致力于借助史前DNA复活猛犸象的研究。他的返老还童实验室将发表一份关于这项技术的报告,研究人员将对老龄化疾病(比如说心脏病和糖尿病等)相关的两种基因进行修改,从而延长啮齿动物的寿命。麻省理工学院《技术评论》去年6月获得的一份文件表明,该创业公司在塔夫茨陆军兽医学院对4只米格鲁猎犬进行了测试。虽然文件中关于这次医学实验的过程透漏的很少,但是麻省理工学院的《技术评论》杂志推测,这一过程可能需要抑制一种充当“总开关”的蛋白质。Church教授称:“我们已经在老鼠身上进行了一系列的实验,而且我们正在犬类身上进行一些实验,随后我们将在人类身上进行这项技术的实验。犬类不仅仅是接...
2
2019 - 03 - 15
基因组的遗传信息得以表达,首先需要 RNA polymerase (RNAP) 以 DNA 为模板合成 RNA。基因转录不仅是基因表达第一步,还是基因表达的主要调控步骤。对 RNAP 分子机器结构、运行机理以及调控机制的研究能够回答基因表达调控的基础生物学问题。在转录起始阶段,细菌的 RNAP 与转录起始σ因子形成复合物,依次执行启动子双链 DNA 的识别、解链以及 RNA 起始合成等关键步骤。细菌 RNAP 通过与多个σ因子结合特异性调控基因转录,其中 Extra-Cytoplasmic Function(ECF)σ因子是细菌中种类最多的一类σ因子,它可以感受细菌胞内外环境变化,起始特异性的基因转录。ECF σ因子赋予细菌适应逆境的能力,对于致病菌的致病性和耐药性尤为重要。以结核分枝杆菌(Mycobacterium tuberculosis)为例,其 RNAP 分别与 10 种 ECF σ因子结合,通过识别特异启动子序列启动相应基因表达,多个 ECF σ因子与结核分枝杆菌的致病、侵染以及耐药直接相关。3 月 11 日,国际学术期刊《自然 - 通讯》(Nature communications)在线发表了中国科学院分子植物科学卓越创新中心 / 植物生理生态研究所 / 中科院合成生物学重点实验室张余研究组题为 Structure basis for transcription ini...
3
2019 - 07 - 19
近日,来自 9 个国家的 33 名微生物学家在《自然综述:微生物学》上发文表示,应该进一步将微生物融入主流气候变化研究和气候变化框架中,以应对人为造成的气候变化问题。他们警告说,“提醒人类注意,气候变化的影响将严重依赖微生物的反应,它们对于实现一个环境可持续发展的未来至关重要”。已知人类活动及其对气候和环境的影响关系到动植物灭绝和生物多样性损失,并且危及地球上的动植物生命。微生物也会对温室气体排放产生重要影响。尽管微生物丰富多样,但它们维护生态系统健康的作用,以及如何影响气候变化或被气候变化影响,却鲜为人知。澳大利亚新南威尔士大学的 Ricardo Cavicchioli 等人认为,微生物在气候变化生物学中扮演的核心角色及其全局重要性不应被低估,他们并且呼吁研究人员、机构和政府对微生物加剧或缓解人为气候变化影响的作用进行评估。研究人员在文中探讨了气候变化对微生物作用以及全球海陆生物群落的影响。他们还指出,从农业和传染病的角度出发,需要更深入地理解气候变化对微生物的影响,比如气候变化预计将提高部分人类病原体的抗生素耐药性。相关论文信息:https://doi.org/10.1038/s41579-019-0222-5
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产品名称:

Premo™ FUCCI Cell Cycle Sensor (BacMam 2.0)

上市日期: 2019-04-18
产品类别: INVITROGEN

规格

Color:Green, Red-Orange
Delivery Method:Baculovirus (BacMam System)
Detection Method:Fluorescent
Emission Class:Visible
Excitation Class:Visible
Excitation⁄Emission (nm):488⁄510 (Green), 555⁄584 (Red)
For Use With (Equipment):Flow Cytometer, Fluorescence Microscope, Fluorescent Imager, High Content Instrument, Tali® Image-Based Cytometer
Form:Liquid
Label or Dye:GFP (EmGFP), RFP (TagRFP)
Product Line:Premo™
Product Size:2 x 200 µL
Quantity:2 vials (200 µl each)
Sub-Cellular Localization:Nucleus
Technique:Fluorescence Intensity
Shipping Condition:Wet Ice


  • 产品描述
  • 产品功能
  • 产品参数

描述

Premo™ FUCCI Cell Cycle Sensor is a fluorescent, two-color sensor of cell cycle progression and division in live cells. It allows accurate and sensitive cell cycle analysis of individual cells or a population of cells by fluorescence microscopy, flow cytometry, or high-content imaging.

At 2 x 200 µL, this is a smaller pack size version (1/5 volume) of the popular full-size product and perfect for testing its performance in your system.

The Premo™ FUCCI Cell Cycle Sensor is delivered by highly efficient BacMam 2.0 technology, enabling cell cycle studies in essentially any cell type. Provided in a ready-to-use format—simply add, incubate, and image. Premo™ FUCCI affords highly efficient transient expression in cell lines, primary cells, and stem cells.

Premo™ FUCCI Cell Cycle Sensor is:

Accurate: Cell-cycle controlled expression of bright GFP and RFP indicators for live cell analysis of individual cells or populations
Highly Efficient: >90% transduction of a wide range of mammalian cell lines, including primary cells, stem cells, and neurons
Fast and Convenient: Simply add Premo™ FUCCI Cell Cycle Sensor to your cells in complete medium, incubate overnight, and analyze
Safe: BacMam reagents are non-integrating and non-replicating in mammalian cells, lack observable cytopathic effects, and are suitable for biosafety level (BSL) 1 handling

Study Cell Cycle in the Relevant Cellular Context
If you are studying cell cycle regulators, cell differentiation, or are developing anti-cancer compounds against cell cycle-related targets, Premo™ FUCCI is a superbly sensitive and accurate sensor tool. The efficient transduction and transient expression allows you to conduct these experiments in the biologically relevant cell types.

Simple, Quick Cell Cycle Visualization
Simply add the ready-to-use Premo™ FUCCI cell cycle sensor to your cells in complete medium, incubate overnight, then visualize cell cycle progression in populations of cells using fluorescence microscopy, flow cytometry, or high content imaging instruments. Cells change from red in the G1 to yellow in the G1/S interphase and green in S, G2, and M phases, as fusions of emGFP and TagRFP coupled to two cell cycle-regulated proteins are expressed and degraded.

How It Works
Premo™ FUCCI is derived from the fluorescence ubiquitination cell cycle indicator (FUCCI), developed by Miyawaki and colleagues (Ref 1). FUCCI is based on two cell cycle-regulated proteins, geminin and Cdt1, fused to one green (emGFP) and red (TagRFP) fluorescent protein, respectively. As Cdt1 and geminin are present only during specific phases of the cell cycle, the fluorescent protein partner is similarly cell-cycle dependent. Ubiquitination by specific ubiquitin E3 ligases target the fusion constructs in the proteasome for degradation. E3 ligases display temporal regulation of activity, resulting in biphasic cycling of geminin and Cdt1 levels during the cell cycle. Geminin-GFP is degraded in the G1 phase; the presence of Cdt1-TagRFP is indicated by red fluorescence within nuclei. During the S, G2, and M phases, however, Cdt1 is degraded and only geminin-GFP remains, giving cells green-fluorescent nuclei. During the G1/S transition, when Cdt1 levels are decreasing and geminin levels are increasing, both proteins are present, giving a yellow-fluorescent nuclear signal. This dynamic color change (red to yellow to green) clearly displays progression through the cell cycle and division.

Powered by BacMam 2.0 Technology
BacMam technology is based on an insect virus (baculovirus) for efficient transduction and transient expression in mammalian cells. The Premo™ FUCCI cell cycle sensor uses BacMam 2.0 technology to enable cell cycle studies in essentially any cell type, from cell lines to stem cells by incorporation of a mammalian expression cassette for the FUCCI construct. Compared with BacMam 1.0 technology, BacMam 2.0 does not require the use of an enhancer and can be used in complete medium. There is no need to purify plasmid or worry about vector integrity and quality. No lipids, dye-loading chemicals, or other potentially harmful treatments are required. BacMam 2.0 incorporates elements that greatly enhance transduction efficiency and expression levels: a pseudotyped capsid protein for more efficient cell entry, an enhanced CMV promoter, and the Woodchuck hepatitis post-transcriptional regulatory element (WPRE).

Titratable Expression that Lasts Up to Two Weeks
The transient transgene expression lasts from about 5 days in transformed cell lines to up to two weeks in slowly dividing cells, such as some primary cell types; we have imaged terminally differentiated neurons more than three weeks after transduction. In addition, BacMam technology permits defined optimization because it gives you the ability to precisely titrate expression levels. Baculoviruses do not replicate in mammalian cells, nor are viral genes expressed, giving them an excellent safety profile and lack of cytopathic effects on mammalian cells.

Learn more about the Premo™ FUCCI Cell Cycle Sensor

Reference:

1. Sakaue-Sawano A, Kurokawa H, Morimura T, Hanyu A, Hama H, Osawa H, Kashiwagi S, Fukami K, Miyata T, Miyoshi H, Imamura T, Ogawa M, Masai H, Miyawaki A. Visualizing spatiotemporal dynamics of multicellular cell-cycle progression. Cell. 2008 Feb 8;132(3):487-98. PubMed PMID: 18267078

Related products
We offer a range of BacMam-based reagents beyond CellLight® reagents, including the BacMam GFP Transduction Control that is ideal to test out the technology and optimize transduction conditions, Premo™ Biosensors, including Premo™ Autophagy Sensor, ion channel drug targets, pathway analysis kits, and more.

Learn more about these products and the BacMam technology

See other imaging tools and reagents

For Research Use Only. Not intended for any animal or human therapeutic or diagnostic use


规格

Color:Green, Red-Orange
Delivery Method:Baculovirus (BacMam System)
Detection Method:Fluorescent
Emission Class:Visible
Excitation Class:Visible
Excitation⁄Emission (nm):488⁄510 (Green), 555⁄584 (Red)
For Use With (Equipment):Flow Cytometer, Fluorescence Microscope, Fluorescent Imager, High Content Instrument, Tali® Image-Based Cytometer
Form:Liquid
Label or Dye:GFP (EmGFP), RFP (TagRFP)
Product Line:Premo™
Product Size:2 x 200 µL
Quantity:2 vials (200 µl each)
Sub-Cellular Localization:Nucleus
Technique:Fluorescence Intensity
Shipping Condition:Wet Ice


规格

Color:Green, Red-Orange
Delivery Method:Baculovirus (BacMam System)
Detection Method:Fluorescent
Emission Class:Visible
Excitation Class:Visible
Excitation⁄Emission (nm):488⁄510 (Green), 555⁄584 (Red)
For Use With (Equipment):Flow Cytometer, Fluorescence Microscope, Fluorescent Imager, High Content Instrument, Tali® Image-Based Cytometer
Form:Liquid
Label or Dye:GFP (EmGFP), RFP (TagRFP)
Product Line:Premo™
Product Size:2 x 200 µL
Quantity:2 vials (200 µl each)
Sub-Cellular Localization:Nucleus
Technique:Fluorescence Intensity
Shipping Condition:Wet Ice


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