AbstractFluorescence microscopy of GFP-tagged proteins is a fundamental tool in cell biology, but without seeing the structure of the surrounding cellular space, functional information can be lost. Here we present a protocol that preserves GFP and mCherry fluorescence in mammalian cells embedded in resin with electron contrast to reveal cellular ultrastructure. Ultrathin in-resin fluorescence (IRF) sections were imaged simultaneously for fluorescence and electron signals in an integrated light and scanning electron microscope. We show, for the first time, that GFP is stable and active in resin sections in vacuo. We applied our protocol to study the subcellular localisation of diacylglycerol (DAG), a modulator of membrane morphology and memb...
These days the common ground between structural biology and molecular biology continues to grow than...
AbstractRed fluorescent proteins (RFPs) combined with GFP are attractive probes for double-fluoresce...
Fluorescent proteins (FPs) were developed for live-cell imaging and have revolutionized cell biology...
Fluorescence microscopy of GFP-tagged proteins is a fundamental tool in cell biology, but without se...
AbstractFluorescence microscopy of GFP-tagged proteins is a fundamental tool in cell biology, but wi...
Super-resolution light microscopy, correlative light and electron microscopy, and volume electron mi...
AbstractCorrelative microscopy incorporates the specificity of fluorescent protein labeling into hig...
Correlative light and electron microscopy (CLEM) is a powerful approach to investigate the molecular...
Many areas of biological research demand the combined use of different imaging modalities to cover a...
Correlative microscopy incorporates the specificity of fluorescent protein labeling into high-resolu...
Correlative super-resolution light and electron microscopy (super-resolution CLEM) is a powerful and...
A combined use of fluorescence and light microscopy is a powerful approach to further increase our u...
<p>(A) Epifluorescence microscopy of live cells containing a subgenomic replicon with a GFP-tagged N...
<div><p>The ultrastructural characterization of neuronal compartments in intact tissue labeled with ...
Sample preparation is the novel bottleneck for high throughput correlative light and electron micros...
These days the common ground between structural biology and molecular biology continues to grow than...
AbstractRed fluorescent proteins (RFPs) combined with GFP are attractive probes for double-fluoresce...
Fluorescent proteins (FPs) were developed for live-cell imaging and have revolutionized cell biology...
Fluorescence microscopy of GFP-tagged proteins is a fundamental tool in cell biology, but without se...
AbstractFluorescence microscopy of GFP-tagged proteins is a fundamental tool in cell biology, but wi...
Super-resolution light microscopy, correlative light and electron microscopy, and volume electron mi...
AbstractCorrelative microscopy incorporates the specificity of fluorescent protein labeling into hig...
Correlative light and electron microscopy (CLEM) is a powerful approach to investigate the molecular...
Many areas of biological research demand the combined use of different imaging modalities to cover a...
Correlative microscopy incorporates the specificity of fluorescent protein labeling into high-resolu...
Correlative super-resolution light and electron microscopy (super-resolution CLEM) is a powerful and...
A combined use of fluorescence and light microscopy is a powerful approach to further increase our u...
<p>(A) Epifluorescence microscopy of live cells containing a subgenomic replicon with a GFP-tagged N...
<div><p>The ultrastructural characterization of neuronal compartments in intact tissue labeled with ...
Sample preparation is the novel bottleneck for high throughput correlative light and electron micros...
These days the common ground between structural biology and molecular biology continues to grow than...
AbstractRed fluorescent proteins (RFPs) combined with GFP are attractive probes for double-fluoresce...
Fluorescent proteins (FPs) were developed for live-cell imaging and have revolutionized cell biology...