Full Text:   <799>

Summary:  <414>

Suppl. Mater.: 

CLC number: 

On-line Access: 2023-02-05

Received: 2022-02-22

Revision Accepted: 2022-08-30

Crosschecked: 2023-02-09

Cited: 0

Clicked: 1037

Citations:  Bibtex RefMan EndNote GB/T7714

 ORCID:

Qiuju WANG

https://orcid.org/0000-0002-3604-7279

Qingfeng YAN

https://orcid.org/0000-0002-5381-8426

-   Go to

Article info.
Open peer comments

Journal of Zhejiang University SCIENCE B 2023 Vol.24 No.2 P.172-184

http://doi.org/10.1631/jzus.B2200081


AIFM1 variants associated with auditory neuropathy spectrum disorder cause apoptosis due to impaired apoptosis-inducing factor dimerization


Author(s):  Yue QIU, Hongyang WANG, Huaye PAN, Jing GUAN, Lei YAN, Mingjie FAN, Hui ZHOU, Xuanhao ZHOU, Kaiwen WU, Zexiao JIA, Qianqian ZHUANG, Zhaoying LEI, Mengyao LI, Xue DING, Aifu LIN, Yong FU, Dong ZHANG, Qiuju WANG, Qingfeng YAN

Affiliation(s):  College of Life Sciences, Zhejiang University, Hangzhou 310058, China; more

Corresponding email(s):   qfyan@zju.edu.cn, wqcr301@vip.?sina.com

Key Words:  Auditory neuropathy spectrum disorder, Apoptosis-inducing factor (AIF) mitochondria-associated 1 (AIFM1) variants, Dimerization, Caspase-independent apoptosis, Nicotinamide adenine dinucleotide (NADH) treatment


Yue QIU, Hongyang WANG, Huaye PAN, Jing GUAN, Lei YAN, Mingjie FAN, Hui ZHOU, Xuanhao ZHOU, Kaiwen WU, Zexiao JIA, Qianqian ZHUANG, Zhaoying LEI, Mengyao LI, Xue DING, Aifu LIN, Yong FU, Dong ZHANG, Qiuju WANG, Qingfeng YAN. AIFM1 variants associated with auditory neuropathy spectrum disorder cause apoptosis due to impaired apoptosis-inducing factor dimerization[J]. Journal of Zhejiang University Science B, 2023, 24(2): 172-184.

@article{title="AIFM1 variants associated with auditory neuropathy spectrum disorder cause apoptosis due to impaired apoptosis-inducing factor dimerization",
author="Yue QIU, Hongyang WANG, Huaye PAN, Jing GUAN, Lei YAN, Mingjie FAN, Hui ZHOU, Xuanhao ZHOU, Kaiwen WU, Zexiao JIA, Qianqian ZHUANG, Zhaoying LEI, Mengyao LI, Xue DING, Aifu LIN, Yong FU, Dong ZHANG, Qiuju WANG, Qingfeng YAN",
journal="Journal of Zhejiang University Science B",
volume="24",
number="2",
pages="172-184",
year="2023",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.B2200081"
}

%0 Journal Article
%T AIFM1 variants associated with auditory neuropathy spectrum disorder cause apoptosis due to impaired apoptosis-inducing factor dimerization
%A Yue QIU
%A Hongyang WANG
%A Huaye PAN
%A Jing GUAN
%A Lei YAN
%A Mingjie FAN
%A Hui ZHOU
%A Xuanhao ZHOU
%A Kaiwen WU
%A Zexiao JIA
%A Qianqian ZHUANG
%A Zhaoying LEI
%A Mengyao LI
%A Xue DING
%A Aifu LIN
%A Yong FU
%A Dong ZHANG
%A Qiuju WANG
%A Qingfeng YAN
%J Journal of Zhejiang University SCIENCE B
%V 24
%N 2
%P 172-184
%@ 1673-1581
%D 2023
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.B2200081

TY - JOUR
T1 - AIFM1 variants associated with auditory neuropathy spectrum disorder cause apoptosis due to impaired apoptosis-inducing factor dimerization
A1 - Yue QIU
A1 - Hongyang WANG
A1 - Huaye PAN
A1 - Jing GUAN
A1 - Lei YAN
A1 - Mingjie FAN
A1 - Hui ZHOU
A1 - Xuanhao ZHOU
A1 - Kaiwen WU
A1 - Zexiao JIA
A1 - Qianqian ZHUANG
A1 - Zhaoying LEI
A1 - Mengyao LI
A1 - Xue DING
A1 - Aifu LIN
A1 - Yong FU
A1 - Dong ZHANG
A1 - Qiuju WANG
A1 - Qingfeng YAN
J0 - Journal of Zhejiang University Science B
VL - 24
IS - 2
SP - 172
EP - 184
%@ 1673-1581
Y1 - 2023
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.B2200081


Abstract: 
auditory neuropathy spectrum disorder (ANSD) represents a variety of sensorineural deafness conditions characterized by abnormal inner hair cells and/or auditory nerve function, but with the preservation of outer hair cell function. ANSD represents up to 15% of individuals with hearing impairments. Through mutation screening, bioinformatic analysis and expression studies, we have previously identified several apoptosis-inducing factor (AIF) mitochondria-associated 1 (AIFM1) variants in ANSD families and in some other sporadic cases. Here, to elucidate the pathogenic mechanisms underlying each AIFM1 variant, we generated AIF-null cells using the clustered regularly interspersed short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (Cas9) system and constructed AIF-wild type (WT) and AIF-mutant (mut) (p.‍T260A, p.‍R422W, and p.‍R451Q) stable transfection cell lines. We then analyzed AIF structure, coenzyme-binding affinity, apoptosis, and other aspects. Results revealed that these variants resulted in impaired dimerization, compromising AIF function. The reduction reaction of AIF variants had proceeded slower than that of AIF-WT. The average levels of AIF dimerization in AIF variant cells were only 34.5%‍‒‍49.7% of that of AIF-WT cells, resulting in caspase-independent apoptosis. The average percentage of apoptotic cells in the variants was 12.3%‍‒‍17.9%, which was significantly higher than that (6.9%‍‒‍7.4%) in controls. However, nicotinamide adenine dinucleotide (NADH) treatment promoted the reduction of apoptosis by rescuing AIF dimerization in AIF variant cells. Our findings show that the impairment of AIF dimerization by AIFM1 variants causes apoptosis contributing to ANSD, and introduce NADH as a potential drug for ANSD treatment. Our results help elucidate the mechanisms of ANSD and may lead to the provision of novel therapies.

听神经病相关AIFM1基因突变引起凋亡诱导因子二聚体形成障碍并导致细胞凋亡增加

邱悦1,王洪阳2,潘华晔1,关静2,严磊1,范明杰1,3,周辉1,周煊皓1,吴楷文2,贾则晓1,庄倩倩1,雷昭莹1,李梦瑶1,丁雪1,林爱福1,付勇4,张冬1,王秋菊2,*,严庆丰1,3,5,*
1浙江大学生命科学学院,中国杭州市,310058
2中国人民解放军总医院耳鼻咽喉研究所,中国北京市,100853
3浙江大学医学院第一附属医院儿科,中国杭州市,310003
4浙江大学医学院儿童医院,中国杭州市,310052
5浙江省细胞与基因工程重点实验室,中国杭州市,310058
概要:听神经病谱系障碍(ANSD)属于感音神经性耳聋,其特征为内毛细胞和/或听觉神经元的功能异常,但外毛细胞的功能正常。在听力障碍患者中,听神经病谱系障碍的发病率高达15%。我们前期通过突变筛查、生物信息学分析和蛋白表达等检测,在ANSD家系和某些散发病例中发现了凋亡诱导因子1(AIFM1)基因的几种点突变。为阐明AIFM1突变体的致病机制,本文使用CRISPR/Cas9系统构建了凋亡诱导因子(AIF)蛋白敲除的细胞系,及其稳定转染野生型和突变型AIF蛋白(p.T260A、p.R422W和p.R451Q)的细胞系,并且分析了AIF蛋白结构、AIF与辅酶的亲和力及细胞凋亡等情况。结果显示,上述AIF突变体可导致AIF蛋白二聚体形成障碍,损害AIF蛋白的生理功能。突变型AIF蛋白的还原速率显著低于野生型AIF蛋白。且在AIF突变型细胞系中,AIF蛋白的二聚体含量仅为AIF野生型细胞系的34.5%~49.7%,导致非caspase依赖性细胞凋亡。AIF突变型细胞系中凋亡细胞的平均百分比为12.3%~17.9%,显著高于对照组的6.9%~7.4%。特别是,烟酰胺腺嘌呤二核苷酸(NADH)处理显著提高AIF突变型细胞中的AIF蛋白二聚体含量,从而降低细胞凋亡。结果表明:AIFM1突变引起AIF蛋白二聚体形成障碍,使得细胞凋亡增加,导致ANSD发生;NADH是ANSD的潜在治疗药物。我们的研究结果有助于阐明ANSD的发病机制,并提供新的治疗方案。

关键词:听神经病谱系障碍;凋亡诱导因子1(AIFM1)基因突变;二聚化;非caspase依赖性细胞凋亡;烟酰胺腺嘌呤二核苷酸(NADH)处理

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1]Al-WardyNM, Al-KindiMN, Al-KhabouriMJ, et al., 2016. A novel missense mutation in the C2C domain of otoferlin causes profound hearing impairment in an Omani family with auditory neuropathy. Saudi Med J, 37(10):1068-1075.

[2]ArdissoneA, PiscosquitoG, LegatiA, et al., 2015. A slowly progressive mitochondrial encephalomyopathy widens the spectrum of AIFM1 disorders. Neurology, 84(21):‍2193-2195.

[3]BanoD, PrehnJHM, 2018. Apoptosis-inducing factor (AIF) in physiology and disease: the tale of a repented natural born killer. eBioMedicine, 30:29-37.

[4]BergerI, Ben-NeriahZ, Dor-WolmanT, et al., 2011. Early prenatal ventriculomegaly due to an AIFM1 mutation identified by linkage analysis and whole exome sequencing. Mol Genet Metab, 104(4):517-520.

[5]BirkmayerJGD, VreckoC, VolcD, et al., 1993. Nicotinamide adenine dinucleotide (NADH)‍—a new therapeutic approach to Parkinson’s disease. Comparison of oral and parenteral application. Acta Neurol Scand, 87(S146):‍32-35.

[6]BroseyCA, HoC, LongWZ, et al., 2016. Defining NADH-driven allostery regulating apoptosis-inducing factor. Structure, 24(12):2067-2079.

[7]Castro-MarreroJ, Sáez-FrancàsN, SegundoMJ, et al., 2016. Effect of coenzyme Q10 plus nicotinamide adenine dinucleotide supplementation on maximum heart rate after exercise testing in chronic fatigue syndrome—a randomized, controlled, double-blind trial. Clin Nutr, 35(4):‍826-834.

[8]ChengX, LiL, BrashearsS, et al., 2005. Connexin 26 variants and auditory neuropathy/dys-synchrony among children in schools for the deaf. Am J Med Genet, 139A(1):13-18.

[9]CheungECC, JozaN, SteenaartNAE, et al., 2006. Dissociating the dual roles of apoptosis-inducing factor in maintaining mitochondrial structure and apoptosis. EMBO J, 25(17):4061-4073.

[10]ChiuYH, WuCC, LuYC, et al., 2010. Mutations in the OTOF gene in Taiwanese patients with auditory neuropathy. Audiol Neurootol, 15(6):364-374.

[11]DelmaghaniS, del CastilloFJ, MichelV, et al., 2006. Mutations in the gene encoding pejvakin, a newly identified protein of the afferent auditory pathway, cause DFNB59 auditory neuropathy. Nat Genet, 38(7):770-778.

[12]DemarinV, PodobnikSS, Storga-TomicD, et al., 2004. Treatment of Alzheimer’s disease with stabilized oral nicotinamide adenine dinucleotide: a randomized, double-blind study. Drugs Exp Clin Res, 30(1):27-33.

[13]DiodatoD, TascaG, VerrigniD, et al., 2016. A novel AIFM1 mutation expands the phenotype to an infantile motor neuron disease. Eur J Hum Genet, 24(3):463-466.

[14]FerreiraP, VillanuevaR, Martínez-JúlvezM, et al., 2014. Structural insights into the coenzyme mediated monomer-dimer transition of the pro-apoptotic apoptosis inducing factor. Biochemistry, 53(25):4204-4215.

[15]GhezziD, SevrioukovaI, InvernizziF, et al., 2010. Severe X-linked mitochondrial encephalomyopathy associated with a mutation in apoptosis-inducing factor. Am J Hum Genet, 86(4):639-649.

[16]HangenE, BlomgrenK, BénitP, et al., 2010. Life with or without AIF. Trends Biochem Sci, 35(5):278-287.

[17]HangenE, FéraudO, LachkarS, et al., 2015. Interaction between AIF and CHCHD4 regulates respiratory chain biogenesis. Mol Cell, 58(6):1001-1014.

[18]HeimerG, EyalE, ZhuX, et al., 2018. Mutations in AIFM1 cause an X-linked childhood cerebellar ataxia partially responsive to riboflavin. Eur J Paediatr Neurol, 22(1):93-101.

[19]HerrmannJM, RiemerJ, 2020. Apoptosis inducing factor and mitochondrial NADH dehydrogenases: redox-controlled gear boxes to switch between mitochondrial biogenesis and cell death. Biol Chem, 402(3):289-297.

[20]HuB, WangM, CastoroR, et al., 2017. A novel missense mutation in AIFM1 results in axonal polyneuropathy and misassembly of OXPHOS complexes. Eur J Neurol, 24(12):1499-1506.

[21]Lang-RothR, Fischer-KrallE, KornblumC, et al., 2017. AUNA2: a novel type of non-syndromic slowly progressive auditory synaptopathy/auditory neuropathy with autosomal-dominant inheritance. Audiol Neurootol, 22(1):30-40.

[22]LiC, BrantE, BudakH, et al., 2021. CRISPR/Cas: a Nobel Prize award-winning precise genome editing technology for gene therapy and crop improvement. J Zhejiang Univ-Sci B (Biomed & Biotechnol), 22(4):253-284.

[23]MatsuokaAJ, MorrisseyZD, ZhangCY, et al., 2017. Directed differentiation of human embryonic stem cells toward placode-derived spiral ganglion-like sensory neurons. Stem Cells Transl Med, 6(3):923-936.

[24]MierzewskaH, RydzaniczM, BiegańskiT, et al., 2017. Spondyloepimetaphyseal dysplasia with neurodegeneration associated with AIFM1 mutation—a novel phenotype of the mitochondrial disease. Clin Genet, 91(1):30-37.

[25]PenidoRC, IsaacML, 2013. Prevalence of auditory neuropathy spectrum disorder in an auditory health care service. Braz J Otorhinolaryngol, 79(4):429-433.

[26]PittelliM, FeliciR, PitozziV, et al., 2011. Pharmacological effects of exogenous NAD on mitochondrial bioenergetics, DNA repair, and apoptosis. Mol Pharmacol, 80(6):1136-1146.

[27]ReinhardtC, ArenaG, NedaraK, et al., 2020. AIF meets the CHCHD4/Mia40-dependent mitochondrial import pathway. Biochim Biophys Acta Mol Basis Dis, 1866(6):165746.

[28]RinaldiC, GrunseichC, SevrioukovaIF, et al., 2012. Cowchock syndrome is associated with a mutation in apoptosis-inducing factor. Am J Hum Genet, 91(6):1095-1102.

[29]RomanosJ, KimuraL, FáveroML, et al., 2009. Novel OTOF mutations in Brazilian patients with auditory neuropathy. J Hum Genet, 54(7):382-385.

[30]Romero-TamayoS, LaplazaR, Velazquez-CampoyA, et al., 2021. W196 and the β‍-hairpin motif modulate the redox switch of conformation and the biomolecular interaction network of the apoptosis-inducing factor. Oxid Med Cell Longev, 2021:6673661.

[31]Sánchez-MartínezA, Benito-OrejasJI, Tellería-OrriolsJJ, et al., 2017. Autosomal dominant auditory neuropathy and variant DIAPH3 (c.-173C>T). Acta Otorrinolaringol Esp, 68(3):183-185.

[32]SanchoP, Sánchez-MonteagudoA, ColladoA, et al., 2017. A newly distal hereditary motor neuropathy caused by a rare AIFM1 mutation. Neurogenetics, 18(4):245-250.

[33]SantarelliR, CamaE, ScimemiP, et al., 2008. Audiological and electrocochleography findings in hearing-impaired children with connexin 26 mutations and otoacoustic emissions. Eur Arch Otorhinolaryngol, 265(1):43-51.

[34]SchoenCJ, EmerySB, ThorneMC, et al., 2010. Increased activity of Diaphanous homolog 3 (DIAPH3)/diaphanous causes hearing defects in humans with auditory neuropathy and in Drosophila. Proc Natl Acad Sci USA, 107(30):13396-13401.

[35]SevrioukovaIF, 2011. Apoptosis-inducing factor: structure, function, and redox regulation. Antioxid Redox Signal, 14(12):2545-2579.

[36]SevrioukovaIF, 2016. Structure/function relations in AIFM1 variants associated with neurodegenerative disorders. J Mol Biol, 428(18):3650-3665.

[37]StarrA, SiningerYS, PrattH, 2000. The varieties of auditory neuropathy. J Basic Clin Physiol Pharmacol, 11(3):‍215-230.

[38]StarrA, IsaacsonB, MichalewskiHJ, et al., 2004. A dominantly inherited progressive deafness affecting distal auditory nerve and hair cells. J Assoc Res Otolaryngol, 5(4):411-426.

[39]SusinSA, LorenzoHK, ZamzamiN, et al., 1999. Molecular characterization of mitochondrial apoptosis-inducing factor. Nature, 397(6718):441-446.

[40]TangDL, KangR, BergheTV, et al., 2019. The molecular machinery of regulated cell death. Cell Res, 29(5):347-364.

[41]TekinM, AkcayozD, IncesuluA, 2005. A novel missense mutation in a C2 domain of OTOF results in autosomal recessive auditory neuropathy. Am J Med Genet, 138A(1):6-10.

[42]TranebjærgL, StrenzkeN, LindholmS, et al., 2018. The CAPOS mutation in ATP1A3 alters Na/K-ATPase function and results in auditory neuropathy which has implications for management. Hum Genet, 137(2):111-127.

[43]VargaR, KelleyPM, KeatsBJ, et al., 2003. Non-syndromic recessive auditory neuropathy is the result of mutations in the otoferlin (OTOF) gene. J Med Genet, 40(1):‍45-50.

[44]WangQJ, LiRH, ZhaoH, et al., 2005. Clinical and molecular characterization of a Chinese patient with auditory neuropathy associated with mitochondrial 12S rRNA T1095C mutation. Am J Med Genet, 133A(1):27-30.

[45]WangQJ, LiQZ, RaoSQ, et al., 2006. AUNX1, a novel locus responsible for X linked recessive auditory and peripheral neuropathy, maps to Xq23‍‍‒‍‍27.3. J Med Genet, 43(7):e33.

[46]YangW, LiSS, ZhangX, et al., 2015. Gene editing and cell therapy based on induced pluripotent stem cells. Chin J Cell Biol, 37(1):90-99.

[47]YingWH, 2008. NAD+/NADH and NADP+/NADPH in cellular functions and cell death: regulation and biological consequences. Antioxid Redox Signal, 10(2):179-206.

[48]YuSW, WangHM, PoitrasMF, et al., 2002. Mediation of poly(ADP-ribose) polymerase-1-dependent cell death by apoptosis-inducing factor. Science, 297(5579):259-263.

[49]YuSW, AndrabiSA, WangHM, et al., 2006. Apoptosis-inducing factor mediates poly(ADP-ribose) (PAR) polymer-induced cell death. Proc Natl Acad Sci USA, 103(48):18314-18319.

[50]ZhuKQ, SwansonRA, YingWH, 2005. NADH can enter into astrocytes and block poly(ADP-ribose) polymerase-‍1-mediated astrocyte death. NeuroReport, 16(11):‍1209-1212.

[51]ZongL, GuanJ, EalyM, et al., 2015. Mutations in apoptosis-inducing factor cause X-linked recessive auditory neuropathy spectrum disorder. J Med Genet, 52(8):523-531.

Open peer comments: Debate/Discuss/Question/Opinion

<1>

Please provide your name, email address and a comment





Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou 310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn
Copyright © 2000 - 2024 Journal of Zhejiang University-SCIENCE