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Automated Live Microscopy to Study Mitotic Gene Function in Fluorescent Reporter Cell Lines

Fluorescence live microscopy is a powerful technique to study complex cellular dynamics such as cell division. The availability of fluorescent markers based on GFP fusion proteins for virtually any cellular structure allows efficient visualization of specific processes, and the ...

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Isolation of Protein Complexes Involved in Mitosis and Cytokinesis from Drosophila Cultured Cells

The identification of all the individual components that constitute the plethora of complexes in each cell type represents perhaps the most exciting challenge of postgenomic biology. This is particularly important in the study of events such as mitosis and cytokinesis, in which rapid and ...

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Hydrodynamic Analysis of Human Kinetochore Complexes During Mitosis

Hydrodynamic analysis is a powerful tool to dissect the molecular architecture of macromolecular protein assemblies. These techniques have been successfully used in yeast systems but are also well suited to the analysis of protein complexes from human cells. Furthermore, the combi ...

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Production of Mitotic Regulators Using an Autoselection System for Protein Expression in Budding Yeast

A novel protein expression system in budding yeast is described which has been used to express many yeast mitotic regulators as well as a wide range of other recombinant proteins from several different species. The expression system relies on autoselection with essential genes to maintain ...

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RNAi in Drosophila S2 Cells as a Tool for Studying Cell Cycle Progression

Genetic studies on model organisms, particularly yeasts and Drosophila melanogaster, have proven powerful in identifying the cell cycle machinery and its regulatory mechanisms. In more recent years RNAi has been used in a variety of genome-wide screens and single molecule studies to el ...

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Functional Dissection of Mitotic Regulators Through Gene Targeting in Human Somatic Cells

With the human genome fully sequenced (1, 2), biologists continue to face the challenging task of evaluating the function of each of the ∼25,000 genes contained within it. Gene targeting in human cells provides a powerful and unique experimental tool in this regard (3–8). Although somewhat more in ...

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Biochemical Analysis of the Anaphase Promoting Complex: Activities of E2 Enzymes and Substrate Competitive (Pseudosubstrate) Inhibitors

The Anaphase Promoting Complex (APC) ubiquitin ligase is critical for multiple processes including cell cycle, development, meiosis, and senescence. The importance of regulation of the APC by substrate competitive (pseudosubstrate) inhibitors, such as Emi1 and BubR1, has recent ...

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Knock-in and Knock-out: The Use of Reverse Genetics in Somatic Cells to Dissect Mitotic Pathways

Reverse genetic methods, such as homologous gene targeting, have greatly contributed to our understanding of molecular pathways in mitosis, especially in yeast. The chicken B-lymphocyte line, DT40, represents a unique example among vertebrate somatic cells where homologous gene ...

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Preparation of Synchronized Human Cell Extracts to Study Ubiquitination and Degradation

Ubiquitination and protein degradation regulate cell cycle progression in all eukaryotes. During mitosis, ubiquitination by the Anaphase-Promoting Complex/Cyclosome (APC/C) triggers sister chromatid separation and mitotic exit. The APC/C is tightly regulated by phosph ...

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In Vitro Assays for the Anaphase-Promoting Complex/Cyclosome (APC/C) in Xenopus Egg Extracts

The anaphase-promoting complex/cyclosome (APC/C), a large (20S) multisubunit E3 ligase, has an essential role to ubiquitylate numerous substrates at specific times during mitosis and G1 phase as well as in meiosis. The deregulation of the APC/C causes cell death or genomic instability, wh ...

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An In Vitro Assay for Cdc20-Dependent Mitotic Anaphase-Promoting Complex Activity from Budding Yeast

Cell cycle transitions are controlled, in part, by ubiquitin-dependent proteolysis. In mitosis, the metaphase to anaphase transition is governed by an E3 ubiquitin ligase called the cyclosome or Anaphase-Promoting Complex (APC), and a WD40-repeat protein co-factor called Cdc20. In v ...

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Measuring Proteolysis in Mitosis

The targeted destruction of key regulators helps to drive the cell cycle. Here we describe a quantitative assay to measure destruction of different regulators in mitotic cells. This assay uses GFP-tagged substrates and time-lapse fluorescence microscopy of single cells to pinpoint the ...

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The Spindle Checkpoint: Assays for the Analysis of Spindle Checkpoint Arrest and Recovery

The spindle checkpoint is a surveillance mechanism that ensures the fidelity of chromosome segregation by inhibiting anaphase onset until all chromosomes have established stable bipolar attachments. Here we describe a number of protocols that can be used to assay the ability of buddi ...

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Electron Tomography of Microtubule End-Morphologies in C. elegans Embryos

In this chapter we describe the preparation of early mitotic C. elegans embryos for the tomographic reconstruction of end-morphologies of spindle microtubules. Early embryos are prepared by high-pressure freezing and freeze-substitution for thin-layer embedding in Epon/Ara ...

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Probing Kinetochore Structure and Function Using Xenopus laevis Frog Egg Extracts

Kinetochores are multiprotein machines that initiate mitotic checkpoint signaling and control chromosome movement through interactions with microtubules. Our lab has utilized Xenopus laevis frog egg extracts to investigate the requirements for kinetochore assembly a ...

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Live Cell Imaging of Kinetochore Capture by Microtubules in Budding Yeast

For high-fidelity chromosome segregation, kinetochores must be properly captured by spindle microtubules, but the mechanisms of initial kinetochore capture have remained elusive. Observation of individual kinetochore–microtubule interaction has been difficult, be ...

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Capillary Electrochromatography and On-Line Concentration

Capillary electrochromatography (CEC) is a micro-separation technique that combines the advantages of capillary zone electrophoresis with those of high-performance liquid chromatography. Accordingly, it has attracted extensive attention over the last decade. Among the ...

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Micellar Electrokinetic Chromatography of Aminoglycosides

The components of the aminoglycosides, e.g., gentamicin, sisomicin, netilmicin, kanamycin, amikacin, and tobramycin, and related impurities of these antibiotics can be separated by means of micellar electrokinetic chromatography (MEKC). Derivatization with o-phthaldia ...

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Microemulsion Electrokinetic Chromatography

Microemulsion electrokinetic chromatography (MEEKC) is an attractive capillary electrophoretic technique in which a microemulsion is used as carrier electrolyte. Analytes may partition between the aqueous phase of the microemulsion and its oil droplets, which act as a pseudo ...

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Free-Flow Electrophoresis System for Proteomics Applications

This chapter describes the technology and selected applications in the field of protein analysis for free flow electrophorsis (FFE). FFE is a highly versatile technology for applications in this field as a result of its continuous processing of sample and the possibility of separating alm ...

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