Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress
Endoplasmic reticulum (ER) stress is a common stress factor during the aging process. Heat shock factor 1 (HSF1) plays a critical role in ER stress; however, its exact function in age-related hearing loss (ARHL) has not been fully elucidated. The purpose of the present study was to identify the role...
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doaj-3b1abbebe442442bba0c877f8c4b84042021-09-25T23:53:15ZengMDPI AGCells2073-44092021-09-01102454245410.3390/cells10092454Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum StressYun Yeong Lee0Eun Sol Gil1In Hye Jeong2Hantai Kim3Jeong Hun Jang4Yun-Hoon Choung5Department of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaDepartment of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaDepartment of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaDepartment of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaDepartment of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaDepartment of Otolaryngology, School of Medicine, Ajou University, Suwon 16499, KoreaEndoplasmic reticulum (ER) stress is a common stress factor during the aging process. Heat shock factor 1 (HSF1) plays a critical role in ER stress; however, its exact function in age-related hearing loss (ARHL) has not been fully elucidated. The purpose of the present study was to identify the role of HSF1 in ARHL. In this study, we demonstrated that the loss of inner and outer hair cells and their supporting cells was predominant in the high-frequency region (basal turn, 32 kHz) in ARHL cochleae. In the aging cochlea, levels of the ER stress marker proteins p-eIF2α and CHOP increased as HSF1 protein levels decreased. The levels of various heat shock proteins (HSPs) also decreased, including HSP70 and HSP40, which were markedly downregulated, and the expression levels of Bax and cleaved caspase-3 apoptosis-related proteins were increased. However, HSF1 overexpression showed significant hearing protection effects in the high-frequency region (basal turn, 32 kHz) by decreasing CHOP and cleaved caspase-3 and increasing the HSP40 and HSP70 proteins. These findings were confirmed by HSF1 functional studies using an auditory cell model. Therefore, we propose that HSF1 can function as a mediator to prevent ARHL by decreasing ER stress-dependent apoptosis in the aging cochlea.https://www.mdpi.com/2073-4409/10/9/2454age-related hearing lossapoptosisendoplasmic reticulum stressheat shock factor 1heat shock protein |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yun Yeong Lee Eun Sol Gil In Hye Jeong Hantai Kim Jeong Hun Jang Yun-Hoon Choung |
spellingShingle |
Yun Yeong Lee Eun Sol Gil In Hye Jeong Hantai Kim Jeong Hun Jang Yun-Hoon Choung Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress Cells age-related hearing loss apoptosis endoplasmic reticulum stress heat shock factor 1 heat shock protein |
author_facet |
Yun Yeong Lee Eun Sol Gil In Hye Jeong Hantai Kim Jeong Hun Jang Yun-Hoon Choung |
author_sort |
Yun Yeong Lee |
title |
Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress |
title_short |
Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress |
title_full |
Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress |
title_fullStr |
Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress |
title_full_unstemmed |
Heat Shock Factor 1 Prevents Age-Related Hearing Loss by Decreasing Endoplasmic Reticulum Stress |
title_sort |
heat shock factor 1 prevents age-related hearing loss by decreasing endoplasmic reticulum stress |
publisher |
MDPI AG |
series |
Cells |
issn |
2073-4409 |
publishDate |
2021-09-01 |
description |
Endoplasmic reticulum (ER) stress is a common stress factor during the aging process. Heat shock factor 1 (HSF1) plays a critical role in ER stress; however, its exact function in age-related hearing loss (ARHL) has not been fully elucidated. The purpose of the present study was to identify the role of HSF1 in ARHL. In this study, we demonstrated that the loss of inner and outer hair cells and their supporting cells was predominant in the high-frequency region (basal turn, 32 kHz) in ARHL cochleae. In the aging cochlea, levels of the ER stress marker proteins p-eIF2α and CHOP increased as HSF1 protein levels decreased. The levels of various heat shock proteins (HSPs) also decreased, including HSP70 and HSP40, which were markedly downregulated, and the expression levels of Bax and cleaved caspase-3 apoptosis-related proteins were increased. However, HSF1 overexpression showed significant hearing protection effects in the high-frequency region (basal turn, 32 kHz) by decreasing CHOP and cleaved caspase-3 and increasing the HSP40 and HSP70 proteins. These findings were confirmed by HSF1 functional studies using an auditory cell model. Therefore, we propose that HSF1 can function as a mediator to prevent ARHL by decreasing ER stress-dependent apoptosis in the aging cochlea. |
topic |
age-related hearing loss apoptosis endoplasmic reticulum stress heat shock factor 1 heat shock protein |
url |
https://www.mdpi.com/2073-4409/10/9/2454 |
work_keys_str_mv |
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