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首页> 外文期刊>Brain >Plasmalogens participate in very-long-chain fatty acid-induced pathology
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Plasmalogens participate in very-long-chain fatty acid-induced pathology

机译:纤溶酶参与超长链脂肪酸诱导的病理

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Peroxisomes are organelles responsible for multiple metabolic pathways including, the biosynthesis of plasmalogens, a class of phospholipids, and the β-oxidation of very-long-chain fatty acids (VLCFA). Lack of peroxisomes or dysfunction in any of their normal functions is the cellular basis for human peroxisomal disorders. Here we used mouse models to understand and define the biochemical and cellular determinants that mediate the pathophysiological consequences caused by peroxisomal dysfunctions. We investigated the role and effects of cellular plasmalogens and VLCFA accumulation in liver, testis and nervous tissue using Pex7 and Abcd1 knockout (KO) mice. In addition, we also generated a Pex7:Abcd1 double KO mouse to investigate how different peroxisomal dysfunctions modulate cellular function and pathology. We found that plasmalogens function as fundamental structural phospholipids and protect cells from damage caused by VLCFA accumulation. In testis, plasmalogens protect spermatocytes from VLCFA-induced degeneration and apoptosis. In nervous tissue, we found that gliosis, inflammatory demyelination and axonopathy caused by accumulation of VLCFA are modulated by plasmalogens. Our findings demonstrate the importance of normal peroxisomal functioning and allow the understanding of the pathological causality of peroxisomal dysfunctions. Nervous tissue deficient in plasmalogens is more prone to damage, illustrating the importance of plasmalogens in peroxisomal disorders including Zellweger syndrome and X-linked adrenoleukodystrophy.
机译:过氧化物酶体是细胞器,负责多种代谢途径,包括缩醛磷脂的生物合成,一类磷脂和超长链脂肪酸的β-氧化(VLCFA)。过氧化物酶体缺乏或任何正常功能异常是人类过氧化物酶体疾病的细胞基础。在这里,我们使用小鼠模型来理解和定义介导由过氧化物酶体功能障碍引起的病理生理后果的生化和细胞决定簇。我们使用Pex7和Abcd1基因敲除(KO)小鼠调查了细胞缩醛磷脂和VLCFA在肝脏,睾丸和神经组织中的作用和影响。此外,我们还产生了Pex7:Abcd1双KO小鼠,以研究不同的过氧化物酶体功能障碍如何调节细胞功能和病理。我们发现缩醛磷脂起基本结构磷脂的作用,并保护细胞免受由VLCFA积累引起的损害。在睾丸中,缩醛磷脂保护精母细胞免受VLCFA诱导的变性和凋亡。在神经组织中,我们发现缩醛磷脂可调节由VLCFA积累引起的神经胶质增生,炎症性脱髓鞘和轴突病变。我们的发现证明了正常的过氧化物酶体功能的重要性,并允许了解过氧化物酶体功能障碍的病因。缺乏缩醛磷脂的神经组织更容易受到损害,这说明缩醛磷脂在过氧化物酶体紊乱中的重要性,包括Zellweger综合征和X联肾上腺皮质营养不良。

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