Phosphorylation and subunit organization of axonal neurofilaments determined by scanning transmission electron microscopy
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Abstract
References (36)
The nuclear lamina is a meshwork of intermediate-type filaments
1986 • 957 citations
Visibility of Single Atoms
1970 • 716 citations
Atomic-resolution chemical analysis using a scanning transmission electron microscope
1993 • 510 citations
Structure and Assembly Properties of the Intermediate Filament Protein Vimentin: The Role of its Head, Rod and Tail Domains
1996 • 340 citations
The microanalysis of light elements using transmitted energy loss electrons
1975 • 312 citations
Keratin Intermediate Filament Structure
1993 • 260 citations
MASS MAPPING WITH THE SCANNING TRANSMISSION ELECTRON MICROSCOPE
1986 • 236 citations
Mapping sp2 and sp3 states of carbon at sub-nanometre spatial resolution
1993 • 230 citations
Structure of the peripheral domains of neurofilaments revealed by low angle rotary shadowing
1988 • 230 citations
Short-Range DNA Looping by the Xenopus HMG-Box Transcription Factor, xUBF
1994 • 216 citations
Parallel detection electron spectrometer using quadrupole lenses
1987 • 200 citations
The rod domain of NF-L determines neurofilament architecture, whereas the end domains specify filament assembly and network formation.
1993 • 161 citations
Neurofilament phosphorylation
1995 • 160 citations
Phosphate content of mammalian neurofilaments.
1982 • 135 citations
Quantitative data processing of parallel recorded electron energy-loss spectra with low signal to background
1985 • 124 citations
Unifying principles in intermediate filament (IF) structure and assembly
1988 • 124 citations
Making heads and tails of intermediate filament assembly, dynamics and networks
1994 • 120 citations
Two distinct functions of the carboxyl-terminal tail domain of NF-M upon neurofilament assembly: cross-bridge formation and longitudinal elongation of filaments.
1995 • 115 citations
O-phosphoserine content of intermediate filament subunits
1982 • 109 citations
Electron spectroscopic imaging: Parallel energy filtering and microanalysis in the fixed-beam electron microscope
1984 • 102 citations
Cellular and Molecular Biology of Neuronal Intermediate Filaments
1991 • 97 citations
Polymorphism of reconstituted human epidermal keratin filaments: Determination of their mass-per-length and width by scanning transmission electron microscopy (STEM)
1985 • 88 citations
Epidermal keratin filaments assembled in vitro have masses-per-unit-length that scale according to average subunit mass: structural basis for homologous packing of subunits in intermediate filaments.
1983 • 84 citations
Identification of Endogenously Phosphorylated KSP Sites in the High‐Molecular‐Weight Rat Neurofilament Protein
1994 • 82 citations
Intermediate Filament Structure
1990 • 77 citations
Parallel recording of electron energy loss spectra
1981 • 73 citations
Phosphorus Distribution in the Nucleosome
1981 • 72 citations
EELS quantification near the single-atom detection level
1991 • 69 citations
A high-molecular-weight squid neurofilament protein contains a lamin-like rod domain and a tail domain with Lys-Ser-Pro repeats.
1992 • 66 citations
Squid low molecular weight neurofilament proteins are a novel class of neurofilament protein. A nuclear lamin-like core and multiple distinct proteins formed by alternative RNA processing
1991 • 59 citations
Electron Energy Loss Spectra of the Nucleic Acid Bases
1971 • 49 citations
Characterization of biological macromolecules by combined mass mapping and electron energy‐loss spectroscopy
1992 • 47 citations
Characterization of a cyclic nucleotide- and calcium-independent neurofilament protein kinase activity in axoplasm from the squid giant axon.
1986 • 46 citations
Optimization of quantitative electron energy loss spectroscopy in the low loss region: Phosphorus L-edge
1992 • 44 citations
Characterization and use of the Gatan 666 parallel-recording electron energy-loss spectrometer
1993 • 38 citations
A high‐sensitivity CCD system for parallel electron energy‐loss spectroscopy (CCD for EELS)
1994 • 20 citations