Dysfunctional Electron Transport Chain Assembly in COXPD8.

IF 2.3 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Gisela Beutner, Heidie L Huyck, Gail Deutsch, Gloria S Pryhuber, George A Porter
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Abstract

Combined oxidative phosphorylation deficiency type 8 (COXPD8) is an autosomal recessive mitochondrial disorder caused by a mutation of the nuclear encoded mitochondrial alanyl-tRNA synthetase gene (AARS2). Clinical manifestations of COXPD8 include lethal infantile hypertrophic cardiomyopathy, pulmonary hypoplasia, generalized muscle weakness, and neurological involvement. We report a patient with COXPD8 caused by two mutations in the AARS2 gene. The c.1738 C>G mutation has not been previously reported, while the c.2872 C>T mutation has been associated with pulmonary hypoplasia and hypertrophic cardiomyopathy. Cardiac tissue, obtained through the LungMAP program, showed that, compared to other patients of similar ages, these two mutations affect not only the assembly of functional monomeric complexes (Cx) I and IV of the electron transport chain (ETC) but also limit the formation of respiratory supercomplexes. This patient had altered expression of some ETC proteins but normal expression of several enzymes of the tricarboxylic acid cycle. We also show that one of the control/comparison patients had an undiagnosed ETC Cx IV deficiency. In conclusion, our data demonstrate that the two mutations of the AARS2 gene are associated with failed assembly of Cx I and Cx IV and reduced formation of respiratory supercomplexes of the ETC, likely leading to acute bioenergetic stress.

Abstract Image

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Abstract Image

COXPD8中功能失调的电子传递链组装。
复合氧化磷酸化缺陷8型(COXPD8)是一种常染色体隐性线粒体疾病,由核编码线粒体alanyl-tRNA合成酶基因(AARS2)突变引起。COXPD8的临床表现包括致死性婴儿肥厚性心肌病、肺发育不全、全身肌肉无力和神经系统受累。我们报告一例由AARS2基因的两个突变引起的cox - pd8患者。的c.1738C >g突变此前未见报道,而C 2872c>t突变与肺发育不全和肥厚性心肌病有关。通过LungMAP程序获得的心脏组织显示,与其他年龄相近的患者相比,这两种突变不仅影响电子传递链(ETC)的功能性单体复合物(Cx) I和IV的组装,而且还限制了呼吸超复合物的形成。本例患者ETC部分蛋白表达改变,三羧酸循环部分酶表达正常。我们还发现,其中一名对照/比较患者存在未确诊的ETC Cx IV缺陷。总之,我们的数据表明,AARS2基因的两个突变与Cx I和Cx IV的组装失败以及ETC呼吸超复合体的形成减少有关,可能导致急性生物能量应激。
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来源期刊
Journal of Cardiovascular Development and Disease
Journal of Cardiovascular Development and Disease CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
2.60
自引率
12.50%
发文量
381
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