Lemur tail kinase 1 (LMTK1) regulates the endosomal localization of β-secretase BACE1

Author:

Komaki Keisuke1,Takano Tetsuya1,Sato Yutaka1,Asada Akiko1,Ikeda Shikito1,Yamada Kaoru2,Wei Ran1,Huo Anni1,Fukuchi Aoi1,Saito Taro1,Ando Kanae1,Murayama Shigeo3,Araki Wataru4,Kametani Fuyuki5,Hasegawa Masato5,Iwatsubo Takeshi2,Tomomura Mineko6,Fukuda Mitsunori7,Hisanaga Shin-ichi15

Affiliation:

1. Department of Biological Sciences, Tokyo Metropolitan University, Minami-osawa, Hachioji, Tokyo 192-0397, Japan

2. Department of Neuropathology, Graduate School of Medicine, the University of Tokyo, Bunkyo, Tokyo 113-0033, Japan

3. Tokyo Metropolitan Institute of Gerontology, Itabashi, Tokyo 173-0015, Japan

4. Department of Demyelinating Disease and Aging, National Institute of Neuroscience, NCNP, Kodaira, Tokyo 187-8502, Japan

5. Tokyo Metropolitan Institute of Medical Science, Setagaya, Tokyo 156-8506, Japan

6. Department of Oral Health Sciences, Meikai University School of Health Sciences, Urayasu, Chiba 279-9950, Japan

7. Department of Integrative Life Sciences, Graduate School of Life Sciences, Tohoku University, Aoba-ku, Sendai, Miyagi 980-8578, Japan

Abstract

Abstract Lemur tail kinase 1 (LMTK1), previously called apoptosis-associated tyrosine kinase (AATYK), is an endosomal Ser/Thr kinase. We recently reported that LMTK1 regulates axon outgrowth, dendrite arborization and spine formation via Rab11-mediated vesicle transport. Rab11, a small GTPase regulating recycling endosome trafficking, is shown to be associated with late-onset Alzheimer’s disease (LOAD). In fact, genome-wide association studies identified many proteins regulating vesicle transport as risk factors for LOAD. Furthermore, LMTK1 has been reported to be a risk factor for frontotemporal dementia. Then, we hypothesized that LMTK1 contributes to AD development through vesicle transport and examined the effect of LMTK1 on the cellular localization of AD-related proteins, amyloid precursor protein (APP) and β-site APP cleaving enzyme 1 (BACE1). The β-cleavage of APP by BACE1 is the initial and rate-limiting step in Aβ generation. We found that LMTK1 accumulated BACE1, but not APP, to the perinuclear endosomal compartment, whereas the kinase-negative(kn) mutant of LMTK1A did not. The β-C-terminal fragment was prone to increase under overexpression of LMTK1A kn. Moreover, the expression level of LMTK1A was reduced in AD brains. These results suggest the possibility that LMTK1 is involved in AD development through the regulation of the proper endosomal localization of BACE1.

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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