Identification of a novel family of presenilin homologues.

Presenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some individuals with Alzheimer's disease. Presenilins have been shown to influence limited proteolysis of amyloid beta protein precursor (APP), Notch and ErbB4, and have been proposed to be gamma-secretas...

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Main Authors: Ponting, C, Hutton, M, Nyborg, A, Baker, M, Jansen, K, Golde, T
Format: Journal article
Language:English
Published: 2002
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author Ponting, C
Hutton, M
Nyborg, A
Baker, M
Jansen, K
Golde, T
author_facet Ponting, C
Hutton, M
Nyborg, A
Baker, M
Jansen, K
Golde, T
author_sort Ponting, C
collection OXFORD
description Presenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some individuals with Alzheimer's disease. Presenilins have been shown to influence limited proteolysis of amyloid beta protein precursor (APP), Notch and ErbB4, and have been proposed to be gamma-secretases that perform the terminal cleavage of APP. In this model, two conserved and apparently intramembranous aspartic acids participate in catalysis. Highly sequence-similar presenilin homologues are known in plants, invertebrates and vertebrates. In this work, we have used a combination of different sequence database search methods to identify a new family of proteins homologous to presenilins. Members of this family, which we term presenilin homologues (PSH), have significant sequence similarities to presenilins and also possess two conserved aspartic acid residues within adjacent predicted transmembrane segments. The PSH family is found throughout the eukaryotes, in fungi as well as plants and animals, and in archaea. Five PSHs are detectable in the human genome, of which three possess "protease-associated" domains that are consistent with the proposed protease function of PSs. Based on these findings, we propose that PSs and PSHs represent different sub-branches of a larger family of polytopic membrane-associated aspartyl proteases.
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spelling oxford-uuid:69a6aa10-84ae-4be2-a334-7cc9934cc2ee2022-03-26T18:52:25ZIdentification of a novel family of presenilin homologues.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:69a6aa10-84ae-4be2-a334-7cc9934cc2eeEnglishSymplectic Elements at Oxford2002Ponting, CHutton, MNyborg, ABaker, MJansen, KGolde, TPresenilin 1 and presenilin 2 are polytopic membrane proteins, whose genes are mutated in some individuals with Alzheimer's disease. Presenilins have been shown to influence limited proteolysis of amyloid beta protein precursor (APP), Notch and ErbB4, and have been proposed to be gamma-secretases that perform the terminal cleavage of APP. In this model, two conserved and apparently intramembranous aspartic acids participate in catalysis. Highly sequence-similar presenilin homologues are known in plants, invertebrates and vertebrates. In this work, we have used a combination of different sequence database search methods to identify a new family of proteins homologous to presenilins. Members of this family, which we term presenilin homologues (PSH), have significant sequence similarities to presenilins and also possess two conserved aspartic acid residues within adjacent predicted transmembrane segments. The PSH family is found throughout the eukaryotes, in fungi as well as plants and animals, and in archaea. Five PSHs are detectable in the human genome, of which three possess "protease-associated" domains that are consistent with the proposed protease function of PSs. Based on these findings, we propose that PSs and PSHs represent different sub-branches of a larger family of polytopic membrane-associated aspartyl proteases.
spellingShingle Ponting, C
Hutton, M
Nyborg, A
Baker, M
Jansen, K
Golde, T
Identification of a novel family of presenilin homologues.
title Identification of a novel family of presenilin homologues.
title_full Identification of a novel family of presenilin homologues.
title_fullStr Identification of a novel family of presenilin homologues.
title_full_unstemmed Identification of a novel family of presenilin homologues.
title_short Identification of a novel family of presenilin homologues.
title_sort identification of a novel family of presenilin homologues
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