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一名携带预测会影响伴侣蛋白亚基顶端结构域的CCT5突变患者的肌肉组织病理学异常

Muscle Histopathological Abnormalities in a Patient With a CCT5 Mutation Predicted to Affect the Apical Domain of the Chaperonin Subunit.

作者信息

Scalia Federica, Barone Rosario, Rappa Francesca, Marino Gammazza Antonella, Lo Celso Fabrizio, Lo Bosco Giosuè, Barone Giampaolo, Antona Vincenzo, Vadalà Maria, Vitale Alessandra Maria, Mangano Giuseppe Donato, Amato Domenico, Sentiero Giusy, Macaluso Filippo, Myburgh Kathryn H, Conway de Macario Everly, Macario Alberto J L, Giuffrè Mario, Cappello Francesco

机构信息

Department of Biomedicine, Neuroscience and Advanced Diagnostics (BIND), University of Palermo, Palermo, Italy.

Euro-Mediterranean Institute of Science and Technology (IEMEST), Palermo, Italy.

出版信息

Front Mol Biosci. 2022 Jun 2;9:887336. doi: 10.3389/fmolb.2022.887336. eCollection 2022.

Abstract

Recognition of diseases associated with mutations of the chaperone system genes, e.g., chaperonopathies, is on the rise. Hereditary and clinical aspects are established, but the impact of the mutation on the chaperone molecule and the mechanisms underpinning the tissue abnormalities are not. Here, histological features of skeletal muscle from a patient with a severe, early onset, distal motor neuropathy, carrying a mutation on the CCT5 subunit (MUT) were examined in comparison with normal muscle (CTR). The MUT muscle was considerably modified; atrophy of fibers and disruption of the tissue architecture were prominent, with many fibers in apoptosis. CCT5 was diversely present in the sarcolemma, cytoplasm, and nuclei in MUT and in CTR and was also in the extracellular space; it colocalized with CCT1. In MUT, the signal of myosin appeared slightly increased, and actin slightly decreased as compared with CTR. Desmin was considerably delocalized in MUT, appearing with abnormal patterns and in precipitates. Alpha-B-crystallin and Hsp90 occurred at lower signals in MUT than in CTR muscle, appearing also in precipitates with desmin. The abnormal features in MUT may be the consequence of inactivity, malnutrition, denervation, and failure of protein homeostasis. The latter could be at least in part caused by malfunction of the CCT complex with the mutant CCT5 subunit. This is suggested by the results of the analyses of the mutant CCT5 molecule, which revealed various abnormalities when compared with the wild-type counterpart, mostly affecting the apical domain and potentially impairing chaperoning functions. Thus, analysis of mutated CCT5 and is anticipated to provide additional insights on subunit involvement in neuromuscular disorders.

摘要

与伴侣系统基因突变相关的疾病,如伴侣蛋白病,其诊断率正在上升。遗传和临床方面已得到明确,但突变对伴侣分子的影响以及导致组织异常的机制尚不明确。在此,对一名患有严重早发性远端运动神经病且携带CCT5亚基突变(MUT)的患者的骨骼肌组织学特征进行了检查,并与正常肌肉(CTR)进行了比较。MUT肌肉有显著改变;纤维萎缩和组织结构破坏明显,许多纤维处于凋亡状态。CCT5在MUT和CTR的肌膜、细胞质和细胞核中均有不同程度的存在,也存在于细胞外空间;它与CCT1共定位。与CTR相比,MUT中肌球蛋白信号略有增加,肌动蛋白信号略有减少。结蛋白在MUT中明显异位,呈现异常模式并形成沉淀。α-B-晶状体蛋白和热休克蛋白90在MUT中的信号低于CTR肌肉,也与结蛋白一起形成沉淀。MUT中的异常特征可能是不活动、营养不良、去神经支配和蛋白质稳态失衡的结果。后者至少部分可能是由含有突变CCT5亚基的CCT复合物功能障碍引起的。对突变CCT5分子的分析结果表明了这一点,与野生型对应物相比,该分析揭示了各种异常,主要影响顶端结构域并可能损害伴侣功能。因此,对突变CCT5的分析有望为亚基在神经肌肉疾病中的作用提供更多见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4075/9201415/f4af84509252/fmolb-09-887336-g001.jpg

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