Lipoprotein lipase (LPL) is a key enzyme in lipid metabo- lism. Decrease of the LPL en- zymatic activity leads to ele- vated triglycerides (TG) and reduced high-density lipopro- tein (HDL-C levels), both risk factors for cardiovascular dis- ease (CVD). Therefore, muta- tions, which decrease the LPL activity, may confer suscepti- bility to CVD. Here, the infor- mational spectrum method (ISM), a virtual spectroscopy method for structure/function analysis of nucleotide and protein sequences, is applied for identification of evolu- tionary highly conserved in- formation encoded by the pri- mary structure of LPL. It was demonstrated that mutations, which alter the LPL enzy- matic activity also alter this information. On the basis of this finding, an efficient and simple bioinformatics crite- rion for assessment of the pathogenic effect of LPL non- synonymous single nucleotide substitution as a risk factor of CVD has been proposed.

Lipoprotein Lipase: a Bioinformatics Criterion for Assessment of Mutations as a Risk Factor for Cardiovascular Disease

Arrigo P;
2008

Abstract

Lipoprotein lipase (LPL) is a key enzyme in lipid metabo- lism. Decrease of the LPL en- zymatic activity leads to ele- vated triglycerides (TG) and reduced high-density lipopro- tein (HDL-C levels), both risk factors for cardiovascular dis- ease (CVD). Therefore, muta- tions, which decrease the LPL activity, may confer suscepti- bility to CVD. Here, the infor- mational spectrum method (ISM), a virtual spectroscopy method for structure/function analysis of nucleotide and protein sequences, is applied for identification of evolu- tionary highly conserved in- formation encoded by the pri- mary structure of LPL. It was demonstrated that mutations, which alter the LPL enzy- matic activity also alter this information. On the basis of this finding, an efficient and simple bioinformatics crite- rion for assessment of the pathogenic effect of LPL non- synonymous single nucleotide substitution as a risk factor of CVD has been proposed.
2008
Istituto per lo Studio delle Macromolecole - ISMAC - Sede Milano
LPL
informational spectrum method
mutational analysis
SNP
CVD
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/29951
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