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Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24

The integral membrane zinc metalloprotease ZMPSTE24 is important for human health and longevity. ZMPSTE24 performs a key proteolytic step in maturation of prelamin A, the farnesylated precursor of the nuclear scaffold protein lamin A. Mutations in the genes encoding either prelamin A or ZMPSTE24 tha...

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Autores principales: Babatz, Timothy D., Spear, Eric D., Xu, Wenxin, Sun, Olivia L., Nie, Laiyin, Carpenter, Elisabeth P., Michaelis, Susan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948416/
https://www.ncbi.nlm.nih.gov/pubmed/33293369
http://dx.doi.org/10.1074/jbc.RA120.015792
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author Babatz, Timothy D.
Spear, Eric D.
Xu, Wenxin
Sun, Olivia L.
Nie, Laiyin
Carpenter, Elisabeth P.
Michaelis, Susan
author_facet Babatz, Timothy D.
Spear, Eric D.
Xu, Wenxin
Sun, Olivia L.
Nie, Laiyin
Carpenter, Elisabeth P.
Michaelis, Susan
author_sort Babatz, Timothy D.
collection PubMed
description The integral membrane zinc metalloprotease ZMPSTE24 is important for human health and longevity. ZMPSTE24 performs a key proteolytic step in maturation of prelamin A, the farnesylated precursor of the nuclear scaffold protein lamin A. Mutations in the genes encoding either prelamin A or ZMPSTE24 that prevent cleavage cause the premature aging disease Hutchinson–Gilford progeria syndrome (HGPS) and related progeroid disorders. ZMPSTE24 has a novel structure, with seven transmembrane spans that form a large water-filled membrane chamber whose catalytic site faces the chamber interior. Prelamin A is the only known mammalian substrate for ZMPSTE24; however, the basis of this specificity remains unclear. To define the sequence requirements for ZMPSTE24 cleavage, we mutagenized the eight residues flanking the prelamin A scissile bond (TRSY↓LLGN) to all other 19 amino acids, creating a library of 152 variants. We also replaced these eight residues with sequences derived from putative ZMPSTE24 cleavage sites from amphibian, bird, and fish prelamin A. Cleavage of prelamin A variants was assessed using an in vivo yeast assay that provides a sensitive measure of ZMPSTE24 processing efficiency. We found that residues on the C-terminal side of the cleavage site are most sensitive to changes. Consistent with other zinc metalloproteases, including thermolysin, ZMPSTE24 preferred hydrophobic residues at the P1’ position (Leu647), but in addition, showed a similar, albeit muted, pattern at P2’. Our findings begin to define a consensus sequence for ZMPSTE24 that helps to clarify how this physiologically important protease functions and may ultimately lead to identifying additional substrates.
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spelling pubmed-79484162021-03-19 Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24 Babatz, Timothy D. Spear, Eric D. Xu, Wenxin Sun, Olivia L. Nie, Laiyin Carpenter, Elisabeth P. Michaelis, Susan J Biol Chem Research Article The integral membrane zinc metalloprotease ZMPSTE24 is important for human health and longevity. ZMPSTE24 performs a key proteolytic step in maturation of prelamin A, the farnesylated precursor of the nuclear scaffold protein lamin A. Mutations in the genes encoding either prelamin A or ZMPSTE24 that prevent cleavage cause the premature aging disease Hutchinson–Gilford progeria syndrome (HGPS) and related progeroid disorders. ZMPSTE24 has a novel structure, with seven transmembrane spans that form a large water-filled membrane chamber whose catalytic site faces the chamber interior. Prelamin A is the only known mammalian substrate for ZMPSTE24; however, the basis of this specificity remains unclear. To define the sequence requirements for ZMPSTE24 cleavage, we mutagenized the eight residues flanking the prelamin A scissile bond (TRSY↓LLGN) to all other 19 amino acids, creating a library of 152 variants. We also replaced these eight residues with sequences derived from putative ZMPSTE24 cleavage sites from amphibian, bird, and fish prelamin A. Cleavage of prelamin A variants was assessed using an in vivo yeast assay that provides a sensitive measure of ZMPSTE24 processing efficiency. We found that residues on the C-terminal side of the cleavage site are most sensitive to changes. Consistent with other zinc metalloproteases, including thermolysin, ZMPSTE24 preferred hydrophobic residues at the P1’ position (Leu647), but in addition, showed a similar, albeit muted, pattern at P2’. Our findings begin to define a consensus sequence for ZMPSTE24 that helps to clarify how this physiologically important protease functions and may ultimately lead to identifying additional substrates. American Society for Biochemistry and Molecular Biology 2020-12-11 /pmc/articles/PMC7948416/ /pubmed/33293369 http://dx.doi.org/10.1074/jbc.RA120.015792 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Babatz, Timothy D.
Spear, Eric D.
Xu, Wenxin
Sun, Olivia L.
Nie, Laiyin
Carpenter, Elisabeth P.
Michaelis, Susan
Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title_full Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title_fullStr Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title_full_unstemmed Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title_short Site specificity determinants for prelamin A cleavage by the zinc metalloprotease ZMPSTE24
title_sort site specificity determinants for prelamin a cleavage by the zinc metalloprotease zmpste24
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948416/
https://www.ncbi.nlm.nih.gov/pubmed/33293369
http://dx.doi.org/10.1074/jbc.RA120.015792
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