发布时间:2019-04-27 16:41 原文链接: FluorescenceProceduresfortheActinandTubulinCytoskeletoninFixedCells

Fluorescence Procedures for the Actin and Tubulin Cytoskeleton in Fixed Cells

Actin: Louise Cramer
Tubulin: Arshad Desai


General Strategy

We typically work with tissue culture, primary mammalian cells, and cell extracts, but the protocols can be adapted to other systems, such as whole embryos or lower eukaryotes. The cytoskeleton is very dynamic and sensitive to changes in both the chemical and mechanical environment. Optimal conditions for fluorescence of proteins of the actin and tubulin cytoskeleton are based on: preserving cell structure; properties of individual cytoskeletal proteins and any antibodies to be used; background fluorescence. Buffers, fixes and detergents can dramatically affect cell preservation, and some antibodies will only bind antigen under specific fixation conditions. There is often quite a high level of actin monomer, tubulin subunits and cytoskeletal binding proteins free in the cytoplasm, especially in tissue culture cells. This can reduce the resolution of cytoskeletal polymers and makes it difficult to analyze the detailed localization of polymer binding proteins. To overcome this cells can be briefly extracted (seconds) before fixing under conditions that stabilize actin filaments or microtubules and preserve cell structure. This selectively removes free subunits/unbound binding proteins from the cytoplasm without causing significant changes in polymeric structure.

Growing Cells for Immunofluorescence

We plate cells on glass coverslips (12mm circles or similar ). We pretreat coverslips typically with poly-L-lysine (PLL) if cells are loosely adherent to glass. Polyornithine is better for some neurons. Cells can also be grown in a commercial, removable chamber attached to a plastic coverslip.


Preparing Glass Coverslips

  • Acid wash coverslips. This helps cells and polyamino acids stick to glass.

    1. Heat coverslips in a loosely covered glass beaker in 1M HCl at 50-60oC for 4-16h.

    2. Cool.

    3. Wash coverslips extensively in dH2O, then ddH20.

    4. Rinse coverslips in ethanol and leave to dry between a folded sheet of whatman paper (dry as separate coverslips).

    5. Keep in a sterile tissue culture dish (can store for a year).

  • Coat with polyamino acid.

    1. Coat coverslips in bulk in 10-15ml 1mg/ml PLL (or 500ug/ml polyornithine), rocking or rotating for a minimum of 30 minutes in a 10 or 15cm tissue culture dish.

    2. Save the polyamino acid (can reuse 3-4 times).

    3. Wash the coverslips in dH2O, then ddH20 at least 5 changes in each (free polyaminoacid is cytotoxic).

    4. Rinse coverslips in 100% ethanol and dry those to be used immediately on one end in an open tissue culture dish in a sterile incubator.

    5. When dry, add cells.

    6. Dry remaining coverslips between a folded sheet of whatman paper (dry as separate coverslips).

    7. Keep in a sterile tissue culture dish (can store for a year). Do step 4 before use. Can keep 10-20ml aliquots of 1mg/ml PLL and 500ug/ml polyornithine stocks at -20 deg C. High molecular weight PLL is standard (greater than 300K), but lower molecular weight PLLs can also be tried.

  • Optional-- Coat polyaminoacid/acid washed/coverslips with matrix molecules. This helps the attachment of very poorly adherent cells (e.g. neurons), and increases the growth rate of other cell types (e.g. primary culture cells). Different extracellular matrix molecules can also change the morphology of certain cell types (e.g protrusion of lamellipodia or filopodia, flattening of cell bodies useful for microinjection- usually determined empirically).

    • --Collagen type IV/PLL/acid washed coverslips

    • PC12 cells (100ug/ml collagen), somites (2mg/ml collagen).

    • --1x matrigel/PLL/acid washed coverslips

    • Primary fibroblasts, neuroblastomas, fibromas, amphibian motor neurons, embryonic dorsal root ganglia.

    • --10ug/ml laminin-polyornithine acid washed coverslips

    • Adult dorsal root ganglia.

    1. Coat individual polyamino acid/acid washed/coverslips with a drop of specific matrix molecule (held by surface tension) from frozen stocks for a minimum of 30 minutes at room temperature or in a 37 deg C incubator, or overnight at 4 deg C. Examples:

    2. Wash 5x with calcium and magnesium free PBS, then 1x with culture media.

    3. Plate cells. Coverslips must be coated fresh before plating cells. Washed, coated, coverslips can be stored for a maximum of one day in the cold room.

Reagents and Buffers

BRB80 is good for microtubules and 'cytoskeleton buffer' is good for both actin filaments and microtubules. The optional inclusion of sucrose keeps the cells isoosmotic which also helps preservation.

  • Brinkley Buffer 1980 (BRB80)

  • 80mM PIPES pH 6.8

  • 1mM MgCl2

  • 1mM EGTA

  • Store at 4 deg C; (we generally make and store as a 5X stock)


  • Cytoskeleton Buffer (CB) with sucrose (CBS)

  • 10mM MES pH 6.1

  • 138mM KCl

  • 3mM MgCl

  • 2mM EGTA

  • Store at 4 deg C

  • Add sucrose fresh on the day of use of the buffer to final 0.32 M from 4 deg C stock (78% is 7X).


  • Detergents

  • In general Triton-X-100 (TX) is best, but it can sometimes be too harsh for delicate cells. We standardly use TX at a concentration of 0.1-0.5%, but gentler detergents such as saponin can also be substituted. TWEEN is often used in whole embryos. Make solutions with detergent fresh on the day of use.


  • TBS (For all steps after fixing. )

  • 0.15 M NaCl

  • 0.02 M Tris-Cl pH 7.4

  • Can make 10X stocks. Keep at room temperature or 4¡C. PBS can be substituted.


  • Antibody Diluting Solution("AbDil"; used to dilute antibody stocks and to preblock cells.)

  • TBS-0.1% TX

  • 2% BSA

  • 0.1% Azide

  • Store at 4 deg C


  • Mounting Media: We have had great success with mounting our coverslips in:

  • 0.5 % p-phenylenediamine (Free Base; purchased from Sigma)

  • in 20 mM Tris, pH 8.8, 90 % glycerol


  • We prepare this by adding the p-phenylenediamine to the tris/glycerol and dissolving it by bubbling nitrogen through the tube for 3-4 hours. The mounting medium is stored at -20 deg C. It will turn brown over time and we generally discard once it turns dark brown before making a fresh batch. In our experience, this recipe results in greatest photostability for all the fluorophores we use - rhodamine, fluorescein, Cy5 and DNA binding dyes.


Adding Solutions, Washing and Blocking

Mechanical manipulations should be kept to a minimum without compromising the quality of the final image. For cells on coverslips, aspirate solutions gently from the side of the dish or coverslip with one hand and add new solutions gently to the other side with your other hand. Never drop solutions directly onto the cells and do not allow cells to dry out. Rinsing cells before fixing does not make much difference. Residual serum proteins from the cell growth media may also help to 'buffer' cells during fixation. Washing off excessive antibodies is crucial for good staining. The block step minimizes background staining.

Secondary Antibodies

We normally purchase our fluorescently labelled secondary antibodies from Jackson Laboratories. We especially like their anti-IgG antibodies raised in donkey-- these are very clean. We follow their directions for reconstitution and storage. For a working solution, we dilute antibodies (usually 1:50 or 1:200-- you'll have to determine what works for you) in AbDil and store this at 4 deg C. If you notice high bakground, filter through a 0.2 um syringe filter or spin in a microfuge.


Procedures

For antibodies that have unknown properties on fixed cells it is best to start with one fixing condition that preserves native structure (e.g. formaldehyde or glutaraldehyde) and one fixing condition that denatures proteins (e.g. methanol or acetone). Simultaneous fixing and permeabilizing also works well for some antibodies. Generally for actin filaments and the actin cytoskeleton we prefer methanol over acetone fixation, and formaldehyde over glutaraldehyde fixation. Glutaraldehyde requires a reducing step that can mechanically dislodge any delicate actin-containing structures (e.g. filopodia, lamellipodia, retraction fibers, growth cones). Fluorescent-phalloidin is commonly used to stain actin filaments which only binds native actin.

For microtubules and the tubulin cytoskeleton the choice of fixative depends on whether the object of the experiment is to visualize microtubules alone or to visualize microtubules in addition to your favorite antigen. For microtubules alone, glutaraldehyde fixation after a brief extraction is preferable. For visualizing your favorite antigen with microtubules methanol seems to be the fixative of choice. Formaldehyde does not preserve microtubules very well; however, sometimes it is necessary to use formaldehyde and accept the poor microtubule morphology. In our lab, excellent microtubule co-immunufluorescence has been performed using straight methanol fixation for > 5 different antibodies.

Actin Cytoskeleton

Methanol fixation

  1. Fix in -20oC methanol for 1-2.5 minutes

  2. Rinse in TBS

  3. Permeabilize in TBS-0.5% TX for 10 minutes

  4. Rinse in TBS-0.1% TX (3 changes in 3-5 minutes is adequate)

  5. Block in Abdil for 10 minutes

  6. Add primary antibody diluted in Abdil for 1-1.5 hours

  7. Wash in TBS-0.1%TX (5 changes over 15-30 minutes is fine, but longer does not harm)

  8. Add secondary antibody for about 45 minutes

  9. Wash in TBS-0.1% TX

  10. Incubate in 1-10ug/ml DAPI or Hoesht in Abdil to stain nuclei if required for 10 minutes

  11. Wash in TBS-0.1% TX

  12. Rinse in TBS

  13. Drain, mount, seal

  14. When sealed add water to the top of the coverslip, then aspirate (removes salts).


相关文章

中国期刊“黑神话”,比肩NCS!影响因子高达33.2

日前,国产期刊TheInnovation获得首个影响因子(IF=32.1),成为科睿唯安JCR综合性期刊分类下排名仅次于《自然》(IF=64.8)和《科学》(IF=56.9)的期刊,并且这本期刊在目前......

190亿!赛默飞收购欧洲IVD巨头

近日,服务科学领域的全球领导者赛默飞世尔科技(以下简称赛默飞)宣布,在达成收购意向两个月之后,赛默飞以28亿美元、折合人民币约190亿元的价格,完成了对TheBindingSiteGroup的全现金收......

施普林格·自然与TheLens达成合作

11月15日,施普林格·自然和TheLens平台宣布结成重要的合作伙伴关系,以更深入地揭示学术研究和数据如何能通过经济和社会成效,加速推动创新的问题解决方式。通过将科学、投资和企业领域的开放数据更好地......

“3CoinONE全新体验气袋进样器”ANTOP奖进入专家评审阶段

万物蓬勃的7月里迎来了2022年ANTOP奖的申报和评审工作。由岛津企业管理(中国)有限公司申报的“3CoinONE全新体验气袋进样器”ANTOP奖进入专家评审阶段。奖项名称:3CoinONE全新体验......

青源峰达太赫兹在国际顶级期刊《TrendsinBiotechnology》发文

青岛青源峰达太赫兹科技有限公司研发团队在国际顶级期刊《TrendsinBiotechnology》(译名:《生物技术趋势》)在线发表题为“THzmedicalimaging:frominvitroto......

firstinclass胃癌一线疗法获FDA突破性疗法

安进宣布,美国FDA授予其在研firstinclass单抗bemarituzumab突破性疗法认定,与改良FOLFOX6化疗方案(亚叶酸钙、氟尿嘧啶和奥沙利铂)联用,一线治疗FGFR2b过表达和HER......

连看三大世界大学排名榜我国哪所大学是排名的“宠儿”?

6月10日,QS教育集团正式发布了2021年世界大学排名,中国共有83所高校上榜,包括内地高校51所,港澳台地区高校32所。中国大学的总体排名情况已经连续数年呈上升趋势,今年再度刷新了榜单。大学排名,......

金属所三维伊辛模型精确解研究取得进展

2007年,中国科学院金属研究所研究员张志东在英国《哲学杂志》(PhilosophicalMagazine)上发表论文,提出两个猜想,并在猜想基础上推定出三维伊辛模型的精确解。被《哲学杂志》审稿人评价......

研究发现肝脏肿瘤逃脱自然杀伤细胞免疫监视新机制

自然杀伤细胞(Naturalkillercells,NKcells)是一种效应性淋巴细胞,在人体抗肿瘤过程中发挥重要作用,但是,仍然有一些肿瘤细胞能够逃避机体NK细胞的攻击,逐步发生发展,侵袭转移,严......

肿瘤治疗的强心剂,中国学者开发肿瘤治疗新策略

磷酸甘油酸突变酶1(PGAM1)通过其代谢活性以及与其他蛋白质(例如α平滑肌肌动蛋白(ACTA2))的相互作用,在癌症代谢和肿瘤进展中起关键作用。变构调节被认为是发现针对PGAM1的高选择性和有效抑制......