Corrigendum

Persistent upregulation of the β-Tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle (Human Molecular Genetics (2019) 28:7 (1117-1135) DOI: 10.1093/hmg/ddy418)

Davide Randazzo, Umara Khalique, Joseph J. Belanto, Aster Kenea, Dana M. Talsness, John T Olthoff, Michelle D. Tran, Kristien J. Zaal, Katherine Pak, Iago Pinal-Fernandez, Andrew L. Mammen, Dan Sackett, James M Ervasti, Evelyn Ralston

Research output: Contribution to journalComment/debate

Abstract

The authors would like to apologize for errors within the legend of Figure 10. The legend has been corrected online and in print as below: "2.300.30-fold" changed to "2.30±0.30-fold" "4.100.41-fold" changed to "4.10±0.41-fold" "1.460.05-fold" changed to "1.46±0.05-fold".

Original languageEnglish (US)
Number of pages1
JournalHuman molecular genetics
Volume28
Issue number11
DOIs
StatePublished - Jun 1 2019

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Medical Genetics
Tubulin
Microtubules
Regeneration
Molecular Biology
Up-Regulation
Muscles
corrigendum

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Corrigendum : Persistent upregulation of the β-Tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle (Human Molecular Genetics (2019) 28:7 (1117-1135) DOI: 10.1093/hmg/ddy418). / Randazzo, Davide; Khalique, Umara; Belanto, Joseph J.; Kenea, Aster; Talsness, Dana M.; Olthoff, John T; Tran, Michelle D.; Zaal, Kristien J.; Pak, Katherine; Pinal-Fernandez, Iago; Mammen, Andrew L.; Sackett, Dan; Ervasti, James M; Ralston, Evelyn.

In: Human molecular genetics, Vol. 28, No. 11, 01.06.2019.

Research output: Contribution to journalComment/debate

Randazzo, Davide ; Khalique, Umara ; Belanto, Joseph J. ; Kenea, Aster ; Talsness, Dana M. ; Olthoff, John T ; Tran, Michelle D. ; Zaal, Kristien J. ; Pak, Katherine ; Pinal-Fernandez, Iago ; Mammen, Andrew L. ; Sackett, Dan ; Ervasti, James M ; Ralston, Evelyn. / Corrigendum : Persistent upregulation of the β-Tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle (Human Molecular Genetics (2019) 28:7 (1117-1135) DOI: 10.1093/hmg/ddy418). In: Human molecular genetics. 2019 ; Vol. 28, No. 11.
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abstract = "The authors would like to apologize for errors within the legend of Figure 10. The legend has been corrected online and in print as below: {"}2.300.30-fold{"} changed to {"}2.30±0.30-fold{"} {"}4.100.41-fold{"} changed to {"}4.10±0.41-fold{"} {"}1.460.05-fold{"} changed to {"}1.46±0.05-fold{"}.",
author = "Davide Randazzo and Umara Khalique and Belanto, {Joseph J.} and Aster Kenea and Talsness, {Dana M.} and Olthoff, {John T} and Tran, {Michelle D.} and Zaal, {Kristien J.} and Katherine Pak and Iago Pinal-Fernandez and Mammen, {Andrew L.} and Dan Sackett and Ervasti, {James M} and Evelyn Ralston",
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T2 - Persistent upregulation of the β-Tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle (Human Molecular Genetics (2019) 28:7 (1117-1135) DOI: 10.1093/hmg/ddy418)

AU - Randazzo, Davide

AU - Khalique, Umara

AU - Belanto, Joseph J.

AU - Kenea, Aster

AU - Talsness, Dana M.

AU - Olthoff, John T

AU - Tran, Michelle D.

AU - Zaal, Kristien J.

AU - Pak, Katherine

AU - Pinal-Fernandez, Iago

AU - Mammen, Andrew L.

AU - Sackett, Dan

AU - Ervasti, James M

AU - Ralston, Evelyn

PY - 2019/6/1

Y1 - 2019/6/1

N2 - The authors would like to apologize for errors within the legend of Figure 10. The legend has been corrected online and in print as below: "2.300.30-fold" changed to "2.30±0.30-fold" "4.100.41-fold" changed to "4.10±0.41-fold" "1.460.05-fold" changed to "1.46±0.05-fold".

AB - The authors would like to apologize for errors within the legend of Figure 10. The legend has been corrected online and in print as below: "2.300.30-fold" changed to "2.30±0.30-fold" "4.100.41-fold" changed to "4.10±0.41-fold" "1.460.05-fold" changed to "1.46±0.05-fold".

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U2 - 10.1093/hmg/ddz035

DO - 10.1093/hmg/ddz035

M3 - Comment/debate

VL - 28

JO - Human Molecular Genetics

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SN - 0964-6906

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