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Progerin Hinders Autophagy Flux at Its Final Stages in Hutchinson-Gilford Progeria Syndrome Cells, Preventing Its Own Autophagic Degradation

delete2026-07-30
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I
Ian García‐Aguirre
J
Jesús Alejandro Reyes-Martínez
J
Juan Unzueta
F
Francisco Guevara-Namorado
S
Solangy Lizcano‐Meneses
S
Susana Gonzalo
Á
Ángel Baldán
C
Claudia Rangel
DOI:10.1111/acel.70649delete
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Abstract

Abstract

En 中文
In Hutchinson-Gilford progeria syndrome (HGPS), dysfunctional autophagy results in the accumulation of progerin, a lamin A mutant variant that alters a plethora of processes, inducing senescence and driving premature aging. Therefore, the elimination of progerin through autophagy restoration emerges as a therapeutic intervention against HGPS. However, a comprehensive study of autophagy flux in HGPS remains to be addressed. In this study, the dynamics of autophagy in HGPS fibroblasts were analyzed utilizing different HGPS cell models and experimental approaches. The autophagy-associated transcriptomic profile was determined, and the autophagy-lysosome axis was comprehensively analyzed. We demonstrated that progerin induces the formation of autophagosomes but impairs their maturation and subsequent fusion with lysosomes. This alteration is attributed in part to the progerin-mediated decreased expression of STX17, a marker of mature autophagosomes, and LAMP1, a membrane lysosomal protein, as well as the presence of defective lysosomes. In line with this, the rescue of STX17 and LAMP1 expression improved autophagy flux. Interestingly, treatment of HGPS fibroblasts with Selinexor, an autophagy activator, elicited nuclear accumulation of TFEB and enhanced lysosomal biogenesis and function, thereby activating autophagy. Selinexor treatment improved both autophagosome maturation and autophagosome-lysosome fusion, which ultimately led to effective autophagic degradation of progerin. In summary, progerin impedes proper autophagy flux, thus preventing its own autophagic degradation, which underscores the relevance of targeting the autophagy-lysosome pathway to counteract the toxic accumulation of progerin.
Keywords:
aging
autophagy
lysosomes
progeria
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Journal

Aging Cell cover
Aging Cell
IF:
7.1
Papers:
3.7K
Citations:
1.9W

Organization

Tecnológico de Monterrey cover
Tecnológico de Monterrey
Scholars:
366
Papers: 154
Citations: 7.8K
S
Saint Louis University School of Medicine
Scholars:
47
Papers: 24
Citations: 0
C
centro de investigación y de estudios avanzados
Scholars:
18
Papers: 11
Citations: 0
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