Tetsushi Kataura

About Tetsushi Kataura

Tetsushi Kataura, With an exceptional h-index of 7 and a recent h-index of 7 (since 2020), a distinguished researcher at Juntendo University, specializes in the field of Autophagy, Ageing, Cell biology, Chemical biology, Bioinformatics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Mitochondrial sodium/calcium exchanger (NCLX) regulates basal and starvation‐induced autophagy through calcium signaling

The evolution of selective autophagy as a mechanism of oxidative stress response: the evolutionarily acquired ability of selective autophagy receptors to respond to oxidative …

Analysis of autophagy deficiency and cytotoxicity in autophagy-deficient human embryonic stem cell-derived neurons

Inflammation and autophagy dysfunction in metachromatic leukodystrophy: a central role for mTOR?

The autophagy–NAD axis in longevity and disease

Metabolic function of autophagy is essential for cell survival

NAD depletion mediates cytotoxicity in human neurons with autophagy deficiency

NDP52 acts as a redox sensor in PINK1/Parkin‐mediated mitophagy

Tetsushi Kataura Information

University

Position

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Citations(all)

158

Citations(since 2020)

154

Cited By

18

hIndex(all)

7

hIndex(since 2020)

7

i10Index(all)

7

i10Index(since 2020)

7

Email

University Profile Page

Google Scholar

Tetsushi Kataura Skills & Research Interests

Autophagy

Ageing

Cell biology

Chemical biology

Bioinformatics

Top articles of Tetsushi Kataura

Mitochondrial sodium/calcium exchanger (NCLX) regulates basal and starvation‐induced autophagy through calcium signaling

Journal of neurochemistry

2023/5

The evolution of selective autophagy as a mechanism of oxidative stress response: the evolutionarily acquired ability of selective autophagy receptors to respond to oxidative …

2023/11

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Analysis of autophagy deficiency and cytotoxicity in autophagy-deficient human embryonic stem cell-derived neurons

STAR protocols

2023/9/15

Inflammation and autophagy dysfunction in metachromatic leukodystrophy: a central role for mTOR?

bioRxiv

2023/9/14

The autophagy–NAD axis in longevity and disease

2023/9/1

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Sovan Sarkar
Sovan Sarkar

H-Index: 39

Metabolic function of autophagy is essential for cell survival

Autophagy

2023/8/3

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Sovan Sarkar
Sovan Sarkar

H-Index: 39

NDP52 acts as a redox sensor in PINK1/Parkin‐mediated mitophagy

The EMBO Journal

2023/3/1

Systemic metabolic alteration dependent on the thyroid‐liver axis in early PD

Annals of Neurology

2023/2

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Wado Akamatsu
Wado Akamatsu

H-Index: 30

Developmental mitochondrial Complex I activity determines lifespan

bioRxiv

2023

The Role of Respiratory Complex IV in Lifespan Length and Quality

bioRxiv

2023

Oxidative stress‐induced phosphorylation of JIP4 regulates lysosomal positioning in coordination with TRPML1 and ALG2

The EMBO Journal

2022/11/17

Ryota Hashimoto
Ryota Hashimoto

H-Index: 3

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Plasma taurine is an axonal excitability-translatable biomarker for amyotrophic lateral sclerosis

Scientific Reports

2022/6/1

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

The autophagy pathway and its key regulators

2022/1/1

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

A chemical genomics-aggrephagy integrated method studying functional analysis of autophagy inducers

Autophagy

2021/8/3

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Etsu Tashiro
Etsu Tashiro

H-Index: 15

Causal Connection Between Serum Levodopa Metabolic Profile and Medication in Parkinson’s Disease

2021/4/13

BRUP‐1, an intracellular bilirubin modulator, exerts neuroprotective activity in a cellular Parkinson’s disease model

Journal of Neurochemistry

2020/10

Tetsushi Kataura
Tetsushi Kataura

H-Index: 2

Wado Akamatsu
Wado Akamatsu

H-Index: 30

See List of Professors in Tetsushi Kataura University(Juntendo University)

Co-Authors

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