Mitochondrial CHCHD2 and CHCHD10: Roles in Neurological Diseases and Therapeutic Implications

被引:19
作者
Zhou, Wei [1 ]
Ma, Dongrui [2 ]
Tan, Eng-King [1 ,2 ]
机构
[1] Duke NUS Med Sch, Natl Neurosci Inst, Neurosci Res Lab, Singapore, Singapore
[2] Singapore Gen Hosp, Dept Neurol, Singapore, Singapore
基金
英国医学研究理事会;
关键词
CHCHD2; CHCHD10; neurological disorders; iPSC; animal models; AMYOTROPHIC-LATERAL-SCLEROSIS; FRONTOTEMPORAL DEMENTIA; CHINESE PATIENTS; CONTACT SITE; MUTATIONS; GENE; IDENTIFICATION; PATHOGENICITY; PATIENT;
D O I
10.1177/1073858419871214
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
CHCHD2 mutations have been identified in various neurological diseases such as Parkinson's disease (PD), frontotemporal dementia (FTD), and Alzheimer's disease (AD). It is also the first mitochondrial gene whose mutations lead to PD. CHCHD10 is a homolog of CHCHD2; similar to CHCHD2, various mutations of CHCHD10 have been identified in a broad spectrum of neurological disorders, including FTD and AD, with a high frequency of CHCHD10 mutations found in motor neuron diseases. Functionally, CHCHD2 and CHCHD10 have been demonstrated to interact with each other in mitochondria. Recent studies link the biological functions of CHCHD2 to the MICOS complex (mitochondrial inner membrane organizing system). Multiple experimental models suggest that CHCHD2 maintains mitochondrial cristae and disease-associated CHCHD2 mutations function in a loss-of-function manner. However, both CHCHD2 and CHCHD10 knockout mouse models appear phenotypically normal, with no obvious mitochondrial defects. Strategies to maintain or enhance mitochondria cristae could provide opportunities to correct the associated cellular defects in disease state and unravel potential novel targets for CHCHD2-linked neurological conditions.
引用
收藏
页码:170 / 184
页数:15
相关论文
共 60 条
[1]   Mutation in the novel nuclear-encoded mitochondrial protein CHCHD10 in a family with autosomal dominant mitochondrial myopathy [J].
Ajroud-Driss, Senda ;
Fecto, Faisal ;
Ajroud, Kaouther ;
Lalani, Irfan ;
Calvo, Sarah E. ;
Mootha, Vamsi K. ;
Deng, Han-Xiang ;
Siddique, Nailah ;
Tahmoush, Albert J. ;
Heiman-Patterson, Terry D. ;
Siddique, Teepu .
NEUROGENETICS, 2015, 16 (01) :1-9
[2]   ALS/FTD mutant CHCHD10 mice reveal a tissue-specific toxic gain-of-function and mitochondrial stress response [J].
Anderson, Corey J. ;
Bredvik, Kirsten ;
Burstein, Suzanne R. ;
Davis, Crystal ;
Meadows, Samantha M. ;
Dash, Jalia ;
Case, Laure ;
Milner, Teresa A. ;
Kawamata, Hibiki ;
Zuberi, Aamir ;
Piersigilli, Alessandra ;
Lutz, Cathleen ;
Manfredi, Giovanni .
ACTA NEUROPATHOLOGICA, 2019, 138 (01) :103-121
[3]   MNRR1 (formerly CHCHD2) is a bi-organellar regulator of mitochondrial metabolism [J].
Aras, Siddhesh ;
Bai, Minbo ;
Lee, Icksoo ;
Springett, Roger ;
Hudttemann, Maik ;
Grossman, Lawrence I. .
MITOCHONDRION, 2015, 20 :43-51
[4]   Oxygen-dependent expression of cytochrome c oxidase subunit 4-2 gene expression is mediated by transcription factors RBPJ, CXXC5 and CHCHD2 [J].
Aras, Siddhesh ;
Pak, Oleg ;
Sommer, Natascha ;
Finley, Russell, Jr. ;
Huettemann, Maik ;
Weissmann, Norbert ;
Grossman, Lawrence I. .
NUCLEIC ACIDS RESEARCH, 2013, 41 (04) :2255-2266
[5]  
AURANEN M, 2015, NEUROL GENET, V1
[6]   A mitochondrial origin for frontotemporal dementia and amyotrophic lateral sclerosis through CHCHD10 involvement [J].
Bannwarth, Sylvie ;
Ait-El-Mkadem, Samira ;
Chaussenot, Annabelle ;
Genin, Emmanuelle C. ;
Lacas-Gervais, Sandra ;
Fragaki, Konstantina ;
Berg-Alonso, Laetitia ;
Kageyama, Yusuke ;
Serre, Valerie ;
Moore, David G. ;
Verschueren, Annie ;
Rouzier, Cecile ;
Le Ber, Isabelle ;
Auge, Gaelle ;
Cochaud, Charlotte ;
Lespinasse, Francoise ;
N'Guyen, Karine ;
de Septenville, Anne ;
Brice, Alexis ;
Yu-Wai-Man, Patrick ;
Sesaki, Hiromi ;
Pouget, Jean ;
Paquis-Flucklinger, Veronique .
BRAIN, 2014, 137 :2329-2345
[7]   A Computational Screen for Regulators of Oxidative Phosphorylation Implicates SLIRP in Mitochondrial RNA Homeostasis [J].
Baughman, Joshua M. ;
Nilsson, Roland ;
Gohil, Vishal M. ;
Arlow, Daniel H. ;
Gauhar, Zareen ;
Mootha, Vamsi K. .
PLOS GENETICS, 2009, 5 (08)
[8]   In vitro and in vivo studies of the ALS-FTLD protein CHCHD10 reveal novel mitochondrial topology and protein interactions [J].
Burstein, S. R. ;
Valsecchi, F. ;
Kawamata, H. ;
Bourens, M. ;
Zeng, R. ;
Zuberi, A. ;
Milner, T. A. ;
Cloonan, S. M. ;
Lutz, C. ;
Barrientos, A. ;
Manfredi, G. .
HUMAN MOLECULAR GENETICS, 2018, 27 (01) :160-177
[9]   Screening of CHCHD10 in a French cohort confirms the involvement of this gene in frontotemporal dementia with amyotrophic lateral sclerosis patients [J].
Chaussenot, Annabelle ;
Le Ber, Isabelle ;
Ait-El-Mkadem, Samira ;
Camuzat, Agnes ;
de Septenville, Anne ;
Bannwarth, Sylvie ;
Genin, Emmanuelle C. ;
Serre, Valerie ;
Auge, Gaelle ;
Brice, Alexis ;
Pouget, Jean ;
Paquis-Flucklinger, Veronique .
NEUROBIOLOGY OF AGING, 2014, 35 (12) :2884.e1-2884.e4
[10]  
Che XQ, 2018, J ALZHEIMERS DIS, V61, P1283, DOI [10.3233/jad-170692, 10.3233/JAD-170692]