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The effects of mono-ADP-ribosylation on desmin assembly-disassembly
1Department of Animal Science, Iowa State University, Ames, Iowa, 50011, USA.
Abstract:
Previous studies have shown that desmin, the muscle-specific intermediate filament protein, is a substrate for the endogenous muscle arginine-specific mono-ADP-ribosyltransferase and that ADP-ribosylation inhibits assembly of desmin into intermediate filaments (Huang et al., Exp. Cell Res. 226, 147-153, 1996). In this paper, the effects of mono-ADP-ribosylation on assembly and disassembly of desmin intermediate filaments were further characterized. First, it was found that ADP-ribosylated desmin does not coassemble with unmodified desmin and has no effect on assembly of unmodified desmin. Second, incubation of assembled desmin filaments with mono-ADP-ribosyltransferase and NAD+ results in disassembly of the filaments. Finally, the structural components of the attached ADP-ribose moiety responsible for altering the assembly of desmin into filaments were investigated by a stepwise cleavage of ADP-ribose with snake venom phosphodiesterase and alkaline phophatase, followed by analysis of assembly. The reactions catalyzed by these two enzymes were established using a desmin peptide as a substrate. Our results show that ribosylated desmin, but not phosphoribosylated desmin, was able to self-assemble into intermediate filaments, suggesting that the presence of a phosphate group is needed to alter desmin's assembly ability.
Insights
ADP-ribosylation of desmin, a muscle protein, inhibits its filament assembly. Disassembly occurs with the enzyme mono-ADP-ribosyltransferase. The phosphate group on ADP-ribose is crucial for altering desmin assembly.
Area of Science:
- Muscle biology
- Protein biochemistry
- Cellular structure
Background:
- Desmin is a muscle-specific intermediate filament protein.
- Previous studies indicated ADP-ribosylation inhibits desmin filament assembly.
Purpose of the Study:
- To further characterize the effects of mono-ADP-ribosylation on desmin intermediate filament assembly and disassembly.
- To identify the structural components of ADP-ribose responsible for altering desmin assembly.
Main Methods:
- Investigated co-assembly of ADP-ribosylated and unmodified desmin.
- Studied disassembly of assembled desmin filaments using mono-ADP-ribosyltransferase and NAD+.
- Analyzed desmin filament assembly after stepwise cleavage of ADP-ribose using phosphodiesterase and alkaline phosphatase.
Main Results:
- ADP-ribosylated desmin does not coassemble with unmodified desmin.
- Assembled desmin filaments disassemble upon incubation with mono-ADP-ribosyltransferase and NAD+.
- Ribosylated desmin, but not phosphoribosylated desmin, self-assembles, indicating the phosphate group is essential for altering assembly.
Conclusions:
- Mono-ADP-ribosylation significantly impacts desmin intermediate filament dynamics.
- The phosphate group of the ADP-ribose moiety is critical for regulating desmin filament assembly and disassembly.