๐”– Bobbio Scriptorium
โœฆ   LIBER   โœฆ

A novel aspartylglucosaminuria mutation affects translocation of aspartylglucosaminidase

โœ Scribed by Jani Saarela; Carina von Schantz; Leena Peltonen; Anu Jalanko


Book ID
102264984
Publisher
John Wiley and Sons
Year
2004
Tongue
English
Weight
191 KB
Volume
24
Category
Article
ISSN
1059-7794

No coin nor oath required. For personal study only.

โœฆ Synopsis


The AGA gene is mutated in patients with aspartylglucosaminuria (AGU), a lysosomal storage disease enriched in the Finnish population. The disease mechanism of AGU and the biochemistry and cell biology of the lysosomal aspartylglucosaminidase (AGA) enzyme are well characterized. Here, we have investigated a novel AGU mutation found in a Finnish patient. The mutation was detected as a compound heterozygote with the Finnish major mutation in the other allele. The novel point mutation, c.44T>G, causes the L15R amino acid substitution in the signal sequence of the AGA enzyme. The mutated AGA enzyme was here analyzed by over expression in BHK and COS-1 cells. The L15R AGA protein was only faintly detectable by immunofluorescence analysis and observed in the endoplasmic reticulum. Metabolic labeling and immunoprecipitation revealed only a small amount of AGA polypeptides but the specific activity of the mutant enzyme was surprisingly high, 37% of the wild type. The amino acid substitution probably affects translocation of AGA polypeptides by altering a critical hydrophobic core structure of the signal sequence. It appears that the small amounts of active enzyme are not able to reach the lysosomes thus explaining the development of AGU disease in the patient.


๐Ÿ“œ SIMILAR VOLUMES


Identification of a novel mutation causi
โœ Annukka Isoniemi; Marja Hietala; Pertti Aula; Anu Jalanko; Leena Peltonen ๐Ÿ“‚ Article ๐Ÿ“… 1995 ๐Ÿ› John Wiley and Sons ๐ŸŒ English โš– 921 KB

Aspartylglucosaminuria (AGU) is a recessively inherited metabolic disorder caused by the deficiency of a lysosomal enzyme, aspartylglucosaminidase. The worldwide most common mutation causing the disease is the AGU,,,, enriched in Finland; all the other known AGU mutations are family-specific. We dev

A novel mutation that affects utilizatio
โœ Yasuhisa Nogi; Toshio Fukasawa ๐Ÿ“‚ Article ๐Ÿ“… 1980 ๐Ÿ› Springer-Verlag ๐ŸŒ English โš– 512 KB

A novel type of regulatory mutation for galacrose metabolism in Saccharomyees cerevisiae is described. The mutation named galll was recessive, non-alMic to GAL4, GALSO, GAL2, or GAL3, and unlinked to the gene cluster of GALl, GALIO, and GilL Z It caused a 'coordinate' reduction of galactokinase, gal