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/vufind/Search/Results?lookfor=%22Uchida%2C+Keita%22&type=Person&sort=year
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PubPharm (28)
1
Microtubule forces drive nuclear damage in LMNA cardiomyopathy
enthalten in:
bioRxiv.org
| 2024
von
Amiad Pavlov, D.
|
Corredera, C.
|
Dehghany, M.
| +9
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2
Truncated titin protein in dilated cardiomyopathy incorporates into the sarcomere and transmits force
enthalten in:
The Journal of clinical investigation
| 2024
von
McAfee, Q.
|
Caporizzo, M.
|
Uchida, K.
| +4
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3
T-tubule recovery after detubulation in isolated mouse cardiomyocytes
enthalten in:
Physiological reports
| 2023
von
Tamkus, G.
|
Uchida, K.
|
Lopatin, A.
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4
Big tau aggregation disrupts microtubule tyrosination and causes myocardial diastolic dysfunction : from discovery to therapy
enthalten in:
European heart journal
| 2023
von
Luciani, M.
|
Montalbano, M.
|
Troncone, L.
| +18
ErratumIn: Eur Heart J. 2023 Sep 14;44(35):3335. - PMID 37656892
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5
Transcriptional, post-transcriptional, and post-translational mechanisms rewrite the tubulin code during cardiac hypertrophy and failure
enthalten in:
bioRxiv.org
| 2022
von
Phyo, S.
|
Uchida, K.
|
Chen, C.
| +5
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6
Cardiomyocyte Microtubules : Control of Mechanics, Transport, and Remodeling
enthalten in:
Annual review of physiology
| 2022
von
Uchida, K.
|
Scarborough, E.
|
Prosser, B.
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7
Transcriptional, Post-Transcriptional, and Post-Translational Mechanisms Rewrite the Tubulin Code During Cardiac Hypertrophy and Failure
enthalten in:
Frontiers in cell and developmental biology
| 2022
von
Phyo, S.
|
Uchida, K.
|
Chen, C.
| +5
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8
Microtubules orchestrate local translation to enable cardiac growth
enthalten in:
Nature communications
| 2021
von
Scarborough, E.
|
Uchida, K.
|
Vogel, M.
| +6
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9
The mechanism of osmotically induced sealing of cardiac t tubules
enthalten in:
American journal of physiology. Heart and circulatory physiology
| 2020
von
Uchida, K.
|
Nikouee, A.
|
Moench, I.
| +3
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10
A Balance Between Intermediate Filaments and Microtubules Maintains Nuclear Architecture in the Cardiomyocyte
enthalten in:
Circulation research
| 2020
von
Heffler, J.
|
Shah, P.
|
Robison, P.
| +7
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19
Journal Article
14
Research Support, N.I.H., Extramural
13
Research Support, Non-U.S. Gov't
5
KATP Channels
3
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3
KCNJ8
3
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3
Sulfonylurea Receptors
3
uK-ATP-1 potassium channel
2
Dextrans
2
Heart failure
2
Kir6.1
2
microtubule
2
mouse ventricular myocytes
2
osmotic stress
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transgenic
1
14-3-3
1
14-3-3 Proteins
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4781T907ZS
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Erscheinungszeitraum
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2020-
18
2010-2019
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