Academic Thesis

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Name Okabayashi Sachi
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Title

Dynein Dysfunction Reproduces Age-Dependent Retromer Deficiency

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Author

Nobuyuki Kimura, Eriko Samura, Keiko Suzuki, Sachi Okabayashi, Nobuhiro Shimozawa, Yasuhiro Yasutomi

Summary

It is widely accepted that β-amyloid (Aβ) protein plays a pivotal role in Alzheimer disease pathogenesis, and accumulating evidence suggests that endocytic dysfunction is involved in Aβ pathology. Retromer, a conserved multisubunit complex, mediates the retrograde transport of numerous kinds of cargo from endosomes to the trans-Golgi network. Several studies have found that retromer deficiency enhances Aβ pathology both in vitro and in vivo. Cytoplasmic dynein, a microtubule-based motor protein, mediates minus-end-directed vesicle transport via interactions with dynactin, another microtubule-associated protein that also interacts with retromer. Aging attenuates the dynein-dynactin interaction, and dynein dysfunction reproduces age-dependent endocytic disturbance, resulting in the intracellular accumulation of beta-amyloid precursor protein (APP) and its β-cleavage products, including Aβ. Here, we report that aging itself affects retromer trafficking in cynomolgus monkey brains. In addition, dynein dysfunction reproduces this type of age-dependent retromer deficiency (ie, the endosomal accumulation of retromer-related proteins and APP. Moreover, we found that knockdown of Rab7, Rab9, or Rab11 did not alter endogenous APP metabolism, such as that observed in aged monkey brains and in dynein-depleted cells. These findings suggest that dynein dysfunction can cause retromer deficiency and that concomitant disruption of retrograde trafficking may be the key factor underlying age-dependent Aβ pathology.

Magazine(name)

The American Journal of Pathology

Publisher

Elsevier Inc.

Volume

第186巻

Number Of Pages

第7号

StartingPage

1952

EndingPage

1966

Date of Issue

2016/07

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ISSN

0002-9440

DOI

10.1016/j.ajpath.2016.03.006

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