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Defective prelamin A processing and muscular and adipocyte alterations in Zmpste24 metalloproteinase-deficient mice
Alberto M Pendás1, Zhongjun Zhou, Juan Cadiñanos
1Departamento de Bioquímica y Biología Molecular, Facultad de Medicina, Instituto Universitario de Oncología, Universidad de Oviedo, 33006 Oviedo, Spain.
Abstract:
The mouse ortholog of human FACE-1, Zmpste24, is a multispanning membrane protein widely distributed in mammalian tissues and structurally related to Afc1p/ste24p, a yeast metalloproteinase involved in the maturation of fungal pheromones. Disruption of the gene Zmpste24 caused severe growth retardation and premature death in homozygous-null mice. Histopathological analysis of the mutant mice revealed several abnormalities, including dilated cardiomyopathy, muscular dystrophy and lipodystrophy. These alterations are similar to those developed by mice deficient in A-type lamin, a major component of the nuclear lamina, and phenocopy most defects observed in humans with diverse congenital laminopathies. In agreement with this finding, Zmpste24-null mice are defective in the proteolytic processing of prelamin A. This deficiency in prelamin A maturation leads to the generation of abnormalities in nuclear architecture that probably underlie the many phenotypes observed in both mice and humans with mutations in the lamin A gene. These results indicate that prelamin A is a specific substrate for Zmpste24 and demonstrate the usefulness of genetic approaches for identifying the in vivo substrates of proteolytic enzymes.
Insights
Mice lacking Zmpste24, the ortholog of human FACE-1, exhibit growth retardation and premature death. This is due to defective prelamin A processing, causing nuclear abnormalities and phenotypes similar to human laminopathies.
Area of Science:
- Biochemistry
- Cell Biology
- Genetics
Background:
- Zmpste24 is a metalloproteinase involved in protein maturation.
- Its human ortholog is FACE-1.
- Defects in Zmpste24 are linked to severe developmental abnormalities.
Purpose of the Study:
- To investigate the function of Zmpste24 in vivo.
- To identify the substrates and biological role of Zmpste24.
- To understand the molecular basis of Zmpste24-related diseases.
Main Methods:
- Gene disruption of Zmpste24 in mice.
- Histopathological analysis of mutant mice.
- Biochemical analysis of protein processing, specifically prelamin A.
Main Results:
- Zmpste24-null mice display severe growth retardation, premature death, dilated cardiomyopathy, muscular dystrophy, and lipodystrophy.
- Mutant mice show defects in the proteolytic processing of prelamin A.
- Abnormalities in nuclear architecture were observed in Zmpste24-deficient mice.
Conclusions:
- Zmpste24 is essential for mammalian development and prelamin A maturation.
- Defects in Zmpste24 lead to laminopathy-like phenotypes.
- Pre-lamin A is a specific substrate for Zmpste24, validating genetic approaches for identifying enzyme substrates.

