Fluorescent protein fusions (FPFs) have been used to address a wide range of questions in individual cells as well as in specific tissues of a particular organism. However, investigators must take extreme care when using FPFs to ensure that the resultant fusion protein is expressed at or close to the endogenous level of the parent protein, and also that it is full length, localizes correctly, and behaves normally once incorporated in the cell. Because the molecular mass of the fluorescent protein (FP) itself is 27 kDa, one must consider the potential effects of placing such a large tag in association with a protein under investigation. This article discusses how these goals can be achieved and provides examples to assist the investigator in...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Abstract Background The engineering of fusion protein...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Fluorescent protein fusions (FPFs) have been used to address a wide range of questions in individual...
Many longstanding questions about dynamics of virus-cell interactions can be answered by combining f...
Fluorescent protein (FP) fusions are frequently used to localize and follow the movement of proteins...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
INTRODUCTION GFP (green fluorescent protein) fusion proteins have been used to address a wide range ...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Green fluorescent proteins (GFP) and variants thereof are widely used to study protein localization ...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
In this study we report the design, construction and validation of a novel transposon aimed to syste...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Abstract Background The engineering of fusion protein...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Fluorescent protein fusions (FPFs) have been used to address a wide range of questions in individual...
Many longstanding questions about dynamics of virus-cell interactions can be answered by combining f...
Fluorescent protein (FP) fusions are frequently used to localize and follow the movement of proteins...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
INTRODUCTION GFP (green fluorescent protein) fusion proteins have been used to address a wide range ...
Nowadays, fluorescent protein (FP) variants have been engineered to fluoresce in all different color...
Green fluorescent proteins (GFP) and variants thereof are widely used to study protein localization ...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
Green fluorescent proteins (GFPs) and variants thereof are widely used to study protein localization...
In this study we report the design, construction and validation of a novel transposon aimed to syste...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...
Abstract Background The engineering of fusion protein...
Fluorescent fusion proteins are widely used to study protein localization and interaction dynamics i...