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Manipulation and In Vitro Maturation of Xenopus laevis Oocytes, Followed by Intracytoplasmic Sperm Injection, to Study Embryonic Development
Published on: February 9, 2015
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GLUT Characterization Using Frog Xenopus laevis Oocytes
Wentong Long1, Debbie O'Neill1, Chris I Cheeseman2
1Membrane Protein Research Group, University of Alberta, 7-55 Medical Sciences Building, Edmonton, AB, Canada, T6G 2H7.
Methods in Molecular Biology (Clifton, N.J.)
|December 9, 2017
Summary
This study details a protocol for using Xenopus laevis oocytes to express and study glucose transporters (GLUTs), specifically focusing on GLUT9. Researchers can now measure urate transport kinetics using these prepared oocytes.
Area of Science:
- Molecular Biology
- Xenopus Oocyte Expression Systems
- Membrane Transport Physiology
Background:
- Xenopus laevis oocytes serve as a valuable system for heterologous protein expression.
- Understanding glucose transporter (GLUT) function is crucial in various physiological contexts.
- Specific protocols for GLUT9 expression and functional analysis in oocytes are needed.
Purpose of the Study:
- To provide a detailed protocol for oocyte extraction and preparation for GLUT9 expression.
- To establish methods for quantifying GLUT9 overexpression levels.
- To outline techniques for measuring urate transport kinetics in GLUT9-expressing oocytes.
Main Methods:
- Oocyte extraction and preparation from Xenopus laevis.
- Biotinylation and Western blotting for determining GLUT9 overexpression.
- Radioisotope assays and two-microelectrode voltage clamping for urate kinetics measurement.
Main Results:
- A comprehensive protocol for GLUT9 expression in Xenopus oocytes was successfully developed.
- Biotinylation and Western blotting effectively quantified GLUT9 overexpression.
- The study demonstrated the utility of GLUT9-expressing oocytes for urate transport studies.
Conclusions:
- Xenopus laevis oocytes provide a robust platform for studying GLUT9 function.
- The described methods facilitate the investigation of urate transport mechanisms.
- This protocol enables further research into the physiological roles of GLUT9.
Keywords:
BiotinylationElectrophysiologyGLUT9Glucose transporter (GLUT)Isotope fluxXenopus laevis oocytes
