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细胞功能测定

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Genetic Tools Used for Cell Lineage Tracing and Gene Manipulation in Drosophila Germline Stem Cells

The advancement of Drosophila germline stem cell research accompanies the development of powerful new tools for genetic analysis. These include the techniques of stem cell labeling, cell lineage tracing, mosaic mutant analysis, and gene manipulation in targeted cell populations, ...

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Immunohistological Techniques for Studying the Drosophila Male Germline Stem Cell

Stem cells are undifferentiated cells that have a remarkable ability to self-renew and produce differentiated cells that support normal development and tissue homeostasis. This unique capacity makes stem cells a powerful tool for future regenerative medicine and gene therapy. Ac ...

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Analysis of the C. elegans Germline Stem Cell Region

We present methods for characterizing the mitotic and early meiotic regions of the Caenorhabditis elegans germline. The methods include examination of germlines in living and fixed worms, cell cycle analysis, analysis of markers, and initial characterization of mutants that affect ...

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The Development of Germline Stem Cells in Drosophila

Germline stem cells (GSCs) in Drosophila are a valuable model to explore of how adult stem cells are regulated in vivo. Genetic dissection of this system has shown that stem cell fate is determined and maintained by the stem cell's somatic microenvironment or niche. In Drosophila gonads, the stem ce ...

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Pre-mRNA Splicing in the Nuclei of Xenopus Oocytes

Xenopus oocytes have been utilized in a number of laboratories as an experimental system to study a variety of biological processes. Here, we describe its application to functional studies of spliceosomal small nuclear RNAs (snRNAs) in pre-messenger RNA (pre-mRNA) splicing, a process th ...

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Chromatin Assembly of DNA Templates Microinjected Into Xenopus Oocytes

The packaging of deoxyribonucleic acid (DNA) into chromatin within the eukaryotic nucleus can affect processes such as DNA replication, transcription, recombination, and repair. Therefore, studies aimed at understanding at the molecular level how these processes are operating ...

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Cytoplasmic mRNA Polyadenylation and Translation Assays

Vertebrate development is directed by maternally inherited messenger RNAs that are synthesized during the very long period of oogenesis. These dormant mRNAs usually contain short poly(A) tails and are stored as mRNA ribonucleoproteins that preclude ribosormal recruitment. In Xe ...

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Chromatin Immunoprecipitation for Studying Transcriptional Regulation in Xenopus Oocytes and Tadpoles

Understanding the accurate temporal and spatial regulation of gene expression during development requires knowledge of the spectrum of transcription factors and cofactors involved and their functional interplay with chromatin. Chromatin immunoprecipitation (ChIP) h ...

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Analysis of Molecular Chaperones Using a Xenopus Oocyte Protein Refolding Assay

Heat shock proteins (Hsps) are molecular chaperones that aid in the folding and translocation of protein under normal conditions and protect cellular proteins during stressful situations. A family of Hsps, the small Hsps, can maintain denatured target proteins in a folding-competent ...

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Xenopus Egg Extracts: A Model System to Study Proprotein Convertases

The Xenopus egg extract translation system has proved an ideal tool with which to study the biosynthesis of the prohormone convertases. It provides a robust coupled translation/translocation system capable of efficient translocation of any protein containing an N-terminal sign ...

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Ubiquitin-Mediated Protein Degradation in Xenopus Egg Extracts

Events controlling cell division are governed by the degradation of different regulatory proteins by the ubiquitin-dependent pathway. In this pathway, the attachment of a polyubiquitin chain to a substrate by an ubiquitin-ligase targets this substrate for degradation. Xenopus e ...

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Introduction to Nucleocytoplasmic Transport: Molecules and Mechanisms

Nucleocytoplasmic transport, the exchange of matter between nucleus and cytoplasm, plays a fundamental role in human and other eukaryotic cells, affecting almost every aspect of health and disease. The only gate for the transport of small and large molecules as well as supramolecular com ...

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Use of Xenopus laevis Oocyte Nuclei and Nuclear Envelopes in Nucleocytoplasmic Transport Studies

In this chapter, two techniques for the analysis of transport through the nuclear pore complex are described. In the first technique, nuclei isolated manually from Xenopus laevis oocytes are used to measure the import kinetics of fluorescent substrates by confocal fluorescence micro ...

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Nuclear Pore Complex Structure and Plasticity Revealed by Electron and Atomic Force Microscopy

To study the ultrastructure of nuclear pore complexes (NPCs), a wide spectrum of different electron microscopy (EM) or atomic force microscopy (AFM) techniques can be employed. The combination of these methods can reveal new insights into the structural and functional organization of t ...

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Resources for Genetic and Genomic Studies of Xenopus

The National Institutes of Health Xenopus Initiative is a concerted effort to interact with the Xenopus research community to identify the community’s needs; to devise strategies to meet those needs; and to support, oversee, and coordinate the resulting projects. This chapter provides a b ...

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Use of Intact Xenopus Oocytes in Nucleocytoplasmic Transport Studies

Because of its large nucleus, the Xenopus laevis oocyte offers an excellent system to study nucleocytoplasmic transport. This system, in combination with electron microscopy, has provided much of our insight into the mechanisms of nuclear import and export. In a typical experiment, the nu ...

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In Vitro Study of Nuclear Assembly and Nuclear Import Using Xenopus Egg Extracts

Nuclear import is a critical process for the cell: molecules are selectively permitted into the nuclear interior where the sheltered genome resides. The process of nuclear import can be biochemically studied in vitro using nuclei reconstituted from Xenopus egg extract components and X ...

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Studying the Mechanosensitivity of Voltage-Gated Channels Using Oocyte Patches

The mechanosensitivity of voltage-gated (VG) channels is of biophysical, physiological, and pathophysiological interest. Xenopus oocytes offer a critical advantage for investigating the electrophysiology of recombinant VG channels subjected to membrane stretch, nam ...

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Oocytes as an Expression System for Studying Receptor/Channel Targets of Drugs and Pesticides

The Xenopus laevis oocyte offers one of the most convenient expression systems for assaying the actions of candidate ligands on cloned ionotropic neurotransmitter receptors (also known as ligand-gated ion channels ). Their large size makes injection of complementary ribonucleic ...

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Microtransplantation of Neurotransmitter Receptors From Cells to Xenopus Oocyte Membranes: New Procedure for Ion Channel Studies

The Xenopus oocyte is largely used as a cell expression system for studying both structure and function of transmitter receptors and ion channels. Messenger RNA extracted from the brain and injected into oocytes leads to the synthesis and membrane incorporation of many types of functional ...

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