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1.
Mol Neurobiol ; 54(8): 6287-6303, 2017 Oct.
Article in English | MEDLINE | ID: mdl-27714635

ABSTRACT

Mitochondria-associated membranes (MAMs) are structures that regulate physiological functions between endoplasmic reticulum (ER) and mitochondria in order to maintain calcium signaling and mitochondrial biogenesis. Several proteins located in MAMs, including those encoded by PARK genes and some of neurodegeneration-related proteins (huntingtin, presenilin, etc.), ensure this regulation. In this regard, MAM alteration is associated with neurodegenerative diseases such as Parkinson's (PD), Alzheimer's (AD), and Huntington's diseases (HD) and contributes to the appearance of the pathogenesis features, i.e., autophagy dysregulation, mitochondrial dysfunction, oxidative stress, and lately, neuronal death. Moreover,, ER stress and/or damaged mitochondria can be the cause of these disruptions. Therefore, ER-mitochondria contact structure and function are crucial to multiple cellular processes. This review is focused on the molecular interaction between ER and mitochondria indispensable to MAM formation and on MAM alteration-induced etiology of neurodegenerative diseases.


Subject(s)
Cell Death/physiology , Endoplasmic Reticulum/metabolism , Mitochondrial Membranes/metabolism , Oxidative Stress/physiology , Parkinson Disease/metabolism , Animals , Humans , Mitochondria/metabolism , Organelle Biogenesis
2.
Curr Med Chem ; 23(21): 2275-85, 2016.
Article in English | MEDLINE | ID: mdl-27237817

ABSTRACT

Pompe disease or glycogen storage disease type II (OMIM: 232300) is a lysosomal storage disorder resulting from a partial or total lack of acid alphaglucosidase, which may produce muscle weakness, gait abnormalities, or even death by respiratory failure. In the last decade, autophagy has been proposed as a mechanism involved in the severity of symptoms related to this disorder and as a potential therapeutic target to alleviate disease progression. This review summarizes the relationship between autophagy and Pompe disease, including what information has been recently discovered and what remains unclear.


Subject(s)
Autophagy , Glycogen Storage Disease Type II/pathology , Animals , Disease Models, Animal , Enzyme Replacement Therapy , Glycogen Storage Disease Type II/metabolism , Glycogen Storage Disease Type II/therapy , Humans , Microtubule-Associated Proteins/metabolism , Mitochondria/metabolism , Muscle, Skeletal/metabolism , alpha-Glucosidases/genetics , alpha-Glucosidases/metabolism
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