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Functional analysis of the p.(Leu15Pro) and p.(Gly20Arg) sequence changes in the signal sequence of LDL receptor
J. Pavloušková, K. Réblová, L. Tichý, T. Freiberger, L. Fajkusová,
Jazyk angličtina Země Irsko
Typ dokumentu časopisecké články
Grantová podpora
NT14186
MZ0
CEP - Centrální evidence projektů
NV16-29084A
MZ0
CEP - Centrální evidence projektů
- MeSH
- arginin chemie MeSH
- CHO buňky MeSH
- Cricetulus MeSH
- endoplazmatické retikulum metabolismus MeSH
- glycin chemie MeSH
- heterozygot MeSH
- hyperlipoproteinemie typ II krev genetika MeSH
- konfokální mikroskopie MeSH
- křečci praví MeSH
- leucin chemie MeSH
- lidé MeSH
- mutace MeSH
- prolin chemie MeSH
- proteiny - lokalizační signály genetika MeSH
- receptory LDL genetika metabolismus MeSH
- rodokmen MeSH
- sbalování proteinů MeSH
- sekundární struktura proteinů MeSH
- zvířata MeSH
- Check Tag
- křečci praví MeSH
- lidé MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
The low density lipoprotein receptor (LDLR) is a transmembrane protein that plays a key role in cholesterol metabolism. It contains 860 amino acids including a 21 amino acid long signal sequence, which directs the protein into the endoplasmic reticulum. Mutations in the LDLR gene lead to cholesterol accumulation in the plasma and results in familial hypercholesterolemia (FH). Knowledge of the impact of a mutation on the LDLR protein structure and function is very important for the diagnosis and management of FH. Unfortunately, for a large proportion of mutations this information is still missing. In this study, we focused on the LDLR signal sequence and carried out functional and in silico analyses of two sequence changes, p.(Gly20Arg) and p.(Leu15Pro), localized in this part of the LDLR. Our results revealed that the p.(Gly20Arg) change, previously described as disease causing, has no detrimental effect on protein expression or LDL particle binding. In silico analysis supports this observation, showing that both the wt and p.(Gly20Arg) signal sequences adopt an expected α-helix structure. In contrast, the mutation p.(Leu15Pro) is not associated with functional protein expression and exhibits a structure with disrupted a α-helical arrangement in the signal sequence, which most likely affects protein folding in the endoplasmic reticulum.
CEITEC Central European Institute of Technology Masaryk University Brno Czech Republic
Centre for Cardiovascular Surgery and Transplantation Brno Czech Republic
Citace poskytuje Crossref.org
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- $a The low density lipoprotein receptor (LDLR) is a transmembrane protein that plays a key role in cholesterol metabolism. It contains 860 amino acids including a 21 amino acid long signal sequence, which directs the protein into the endoplasmic reticulum. Mutations in the LDLR gene lead to cholesterol accumulation in the plasma and results in familial hypercholesterolemia (FH). Knowledge of the impact of a mutation on the LDLR protein structure and function is very important for the diagnosis and management of FH. Unfortunately, for a large proportion of mutations this information is still missing. In this study, we focused on the LDLR signal sequence and carried out functional and in silico analyses of two sequence changes, p.(Gly20Arg) and p.(Leu15Pro), localized in this part of the LDLR. Our results revealed that the p.(Gly20Arg) change, previously described as disease causing, has no detrimental effect on protein expression or LDL particle binding. In silico analysis supports this observation, showing that both the wt and p.(Gly20Arg) signal sequences adopt an expected α-helix structure. In contrast, the mutation p.(Leu15Pro) is not associated with functional protein expression and exhibits a structure with disrupted a α-helical arrangement in the signal sequence, which most likely affects protein folding in the endoplasmic reticulum.
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