Acyltransferases

酰基转移酶
  • 文章类型: Journal Article
    背景:纤维化-4(FIB4)是一种推荐的非侵入性测试,用于评估代谢功能障碍相关脂肪变性肝病(MASLD)患者的肝纤维化。这里,我们使用FIB4轨迹随着时间的推移(即,FIB4的“斜率”)作为肝纤维化进展的替代标志物,并检查FIB4斜率是否与百万退伍军人计划队列中临床定义的MASLD个体中的临床和遗传因素相关。
    方法:在这项回顾性队列研究中,对于基线时临床定义的MASLD和FIB4<2.67的参与者,通过线性回归估算FIB4斜率。使用逻辑回归和Cox比例风险模型,FIB4斜率与人口统计学参数和临床结果相关。FIB4斜率作为定量表型用于祖先特异性分析和使用METAL的多祖先荟萃分析中的全基因组关联分析。
    结果:FIB4斜率,从98,361名MASLD受试者(16,045非洲,74,320欧洲,和7996西班牙裔),表现出与性别的显著关联,祖先,和心脏代谢危险因素(p<0.05)。FIB4斜率也与肝脏结局密切相关,并且与肝硬化时间独立相关。在欧洲血统受试者中,五个遗传基因座显示出与FIB4斜率的全基因组显着关联(p<5×10-8),包括2个已知基因座(PNPLA3和TM6SF2)和3个新基因座(TERT5.1×10-11;LINC01088,3.9×10-8;和MRC1,2.9×10-9)。
    结论:FIB4的线性轨迹与进展到肝硬化的时间显著相关,具有MASLD和已知和新的遗传基因座的个体与肝脏相关的结果。FIB4斜率可用作纤维化进展的替代量度。
    BACKGROUND: Fibrosis-4 (FIB4) is a recommended noninvasive test to assess hepatic fibrosis among patients with metabolic dysfunction-associated steatotic liver disease (MASLD). Here, we used FIB4 trajectory over time (ie, \"slope\" of FIB4) as a surrogate marker of liver fibrosis progression and examined if FIB4 slope is associated with clinical and genetic factors among individuals with clinically defined MASLD within the Million Veteran Program Cohort.
    METHODS: In this retrospective cohort study, FIB4 slopes were estimated through linear regression for participants with clinically defined MASLD and FIB4 <2.67 at baseline. FIB4 slope was correlated with demographic parameters and clinical outcomes using logistic regression and Cox proportional hazard models. FIB4 slope as a quantitative phenotype was used in a genome-wide association analysis in ancestry-specific analysis and multiancestry meta-analysis using METAL.
    RESULTS: FIB4 slopes, generated from 98,361 subjects with MASLD (16,045 African, 74,320 European, and 7996 Hispanic), showed significant associations with sex, ancestry, and cardiometabolic risk factors (p < 0.05). FIB4 slopes also correlated strongly with hepatic outcomes and were independently associated with time to cirrhosis. Five genetic loci showed genome-wide significant associations (p < 5 × 10-8) with FIB4 slope among European ancestry subjects, including 2 known (PNPLA3 and TM6SF2) and 3 novel loci (TERT 5.1 × 10-11; LINC01088, 3.9 × 10-8; and MRC1, 2.9 × 10-9).
    CONCLUSIONS: Linear trajectories of FIB4 correlated significantly with time to progression to cirrhosis, with liver-related outcomes among individuals with MASLD and with known and novel genetic loci. FIB4 slope may be useful as a surrogate measure of fibrosis progression.
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  • 文章类型: Journal Article
    结核病(TB),由结核分枝杆菌引起,仍然是世界上单一传染因子死亡的主要原因。结核分枝杆菌感染也可能导致临床慢性感染,称为潜伏性结核感染(LTBI)。与目前有限的治疗相比,几种亚单位疫苗显示出免疫治疗作用,并被纳入临床试验.在这项研究中,将具有新型粘膜佐剂c-di-AMP(Ag85B:c-di-AMP)的Ag85B亚单位疫苗鼻内递送至持续性结核分枝杆菌H37Ra感染小鼠模型,这也呈现了LTBI的无症状特征。与Ag85B免疫相比,Ag85B:c-di-AMP疫苗可诱导更强的体液免疫应答,显著更高的CD4+T细胞募集,增强了肺中的Th1/Th2/Th17谱反应,肺部病理病变减少,减少小鼠的结核分枝杆菌负荷。一起来看,Ag85B:c-di-AMP粘膜途径免疫对持续性结核分枝杆菌H37Ra感染提供了免疫治疗作用,和c-di-AMP,作为一种有前途的潜在粘膜佐剂,可进一步用于持续性结核分枝杆菌感染和LTBI的治疗性或预防性疫苗策略。
    Tuberculosis (TB), caused by Mycobacterium tuberculosis, remains the leading cause of mortality by a single infectious agent in the world. M. tuberculosis infection could also result in clinical chronic infection, known as latent TB infection (LTBI). Compared to the current limited treatment, several subunit vaccines showed immunotherapeutic effects and were included in clinical trials. In this study, a subunit vaccine of Ag85B with a novel mucosal adjuvant c-di-AMP (Ag85B:c-di-AMP) was delivered intranasally to a persistent M. tuberculosis H37Ra infection mouse model, which also presented the asymptomatic characteristics of LTBI. Compared with Ag85B immunization, Ag85B:c-di-AMP vaccination induced stronger humoral immune responses, significantly higher CD4+ T cells recruitment, enhanced Th1/Th2/Th17 profile response in the lung, decreased pathological lesions of the lung, and reduced M. tuberculosis load in mice. Taken together, Ag85B:c-di-AMP mucosal route immunization provided an immunotherapeutic effect on persistent M. tuberculosis H37Ra infection, and c-di-AMP, as a promising potential mucosal adjuvant, could be further used in therapeutic or prophylactic vaccine strategies for persistent M. tuberculosis infection as well as LTBI.
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  • 文章类型: Journal Article
    细胞死亡途径,铁性凋亡,发生在分生孢子细胞中,对感染结构的形成和功能至关重要,theappressorium,稻瘟病真菌稻瘟病菌。在这项研究中,我们鉴定了一种直向同源溶血磷脂酸酰基转移酶(Lpaat),其作用于磷脂酰乙醇胺(PE)生物合成的上游,是此类真菌铁死亡和致病性所必需的.两种PE,DOPE和SLPE,依赖于Lpaat功能的生产足以诱导脂质过氧化和随之而来的铁凋亡,从而正向调节真菌的致病性。另一方面,DOPE和SLPE均对自噬有正调控作用。LPAAT基因的缺失导致自噬蛋白Atg8的脂化形式减少,这可能是lpaatΔ突变体的自噬缺陷的原因。GFP-Lpaat主要位于脂滴(LD)的膜上,这些脂滴被荧光染料单烷基戊烷(MDH)染色,这表明LDs是膜PE生物合成的脂质来源,也可能是自噬体的膜来源。总的来说,我们的结果揭示了基于Lpaat介导的脂质代谢的新的细胞内膜结合细胞器动力学,提供铁死亡和自噬的时间和空间联系。
    A cell death pathway, ferroptosis, occurs in conidial cells and is critical for formation and function of the infection structure, the appressorium, in the rice blast fungus Magnaporthe oryzae. In this study, we identified an orthologous lysophosphatidic acid acyltransferase (Lpaat) acting at upstream of phosphatidylethanolamines (PEs) biosynthesis and which is required for such fungal ferroptosis and pathogenicity. Two PE species, DOPE and SLPE, that depend on Lpaat function for production were sufficient for induction of lipid peroxidation and the consequent ferroptosis, thus positively regulating fungal pathogenicity. On the other hand, both DOPE and SLPE positively regulated autophagy. Loss of the LPAAT gene led to a decrease in the lipidated form of the autophagy protein Atg8, which is probably responsible for the autophagy defect of the lpaatΔ mutant. GFP-Lpaat was mostly localized on the membrane of lipid droplets (LDs) that were stained by the fluorescent dye monodansylpentane (MDH), suggesting that LDs serve as a source of lipids for membrane PE biosynthesis and probably as a membrane source of autophagosome. Overall, our results reveal novel intracellular membrane-bound organelle dynamics based on Lpaat-mediated lipid metabolism, providing a temporal and spatial link of ferroptosis and autophagy.
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  • 文章类型: Journal Article
    肠道菌群可能影响代谢功能障碍相关的脂肪变性肝病(MASLD)的严重程度和进展。我们旨在通过磁共振弹性成像评估肠道菌群失调和纤维化分期的临床参数。这项研究包括156名MASLD患者,分为无/轻度纤维化(F0-F1)和中度/重度纤维化(F2-F4)。针对16SrRNA基因的V4区域对粪便标本进行测序,并使用生物信息学进行分析。PNPLA3,TM6SF2和HSD17B13的基因分型通过等位基因区分测定进行评估。我们的数据表明,组间的肠道微生物谱在β-多样性方面存在显着差异,但在α-多样性指数方面没有显着差异。富梭菌和大肠杆菌志贺氏菌,与F0-F1组相比,在F2-F4组中发现了耗尽的Lachnospira。与F0-F1相比,F2-F4组肠上皮通透性和细菌易位的血浆替代标志物升高。细菌属,PNPLA3多态性,老年,在多变量分析中,糖尿病与晚期纤维化独立相关.使用随机森林分类器,3个属的肠道微生物特征可以以很高的诊断准确率(AUC为0.93)区分各组.这些结果表明,富集病原菌和减少有益菌的失衡,与一些临床和遗传因素有关,是MASLD发病机制和进展的潜在贡献者。
    Gut microbiota might affect the severity and progression of metabolic dysfunction-associated steatotic liver disease (MASLD). We aimed to characterize gut dysbiosis and clinical parameters regarding fibrosis stages assessed by magnetic resonance elastography. This study included 156 patients with MASLD, stratified into no/mild fibrosis (F0-F1) and moderate/severe fibrosis (F2-F4). Fecal specimens were sequenced targeting the V4 region of the 16S rRNA gene and analyzed using bioinformatics. The genotyping of PNPLA3, TM6SF2, and HSD17B13 was assessed by allelic discrimination assays. Our data showed that gut microbial profiles between groups significantly differed in beta-diversity but not in alpha-diversity indices. Enriched Fusobacterium and Escherichia_Shigella, and depleted Lachnospira were found in the F2-F4 group versus the F0-F1 group. Compared to F0-F1, the F2-F4 group had elevated plasma surrogate markers of gut epithelial permeability and bacterial translocation. The bacterial genera, PNPLA3 polymorphisms, old age, and diabetes were independently associated with advanced fibrosis in multivariable analyses. Using the Random Forest classifier, the gut microbial signature of three genera could differentiate the groups with high diagnostic accuracy (AUC of 0.93). These results indicated that the imbalance of enriched pathogenic genera and decreased beneficial bacteria, in association with several clinical and genetic factors, were potential contributors to the pathogenesis and progression of MASLD.
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  • 文章类型: Journal Article
    白藜芦醇,苯丙素类化合物,表现出不同的药理特性,使其成为健康和疾病管理的宝贵候选人。然而,对白藜芦醇的需求超过了植物提取方法的能力,需要替代生产战略。与基于植物的方法相比,微生物合成具有若干优势,并提出了有希望的替代方案。Yarrowialipolytica由于其安全的性质而在微生物宿主中脱颖而出,丰富的乙酰辅酶A和丙二酰辅酶A可用性,和强大的磷酸戊糖途径。本研究旨在设计Y.Lipolytica用于白藜芦醇生产。白藜芦醇生物合成途径被整合到Y中。通过添加编码来自谷红酵母的酪氨酸氨裂解酶的基因,来自烟草的4-香豆酸CoA连接酶,和葡萄的二苯乙烯合成酶。这导致产生14.3mg/L白藜芦醇。引入内源性和外源性丙二酰辅酶A生物合成模块的组合以增强丙二酰辅酶A的可用性。这包括编码来自拟南芥的乙酰辅酶A羧化酶2的基因,丙二酰辅酶A合成酶,和一种来自重氮根瘤菌的丙二酸转运蛋白。这些策略将白藜芦醇的产量增加到51.8mg/L。发酵条件的进一步优化和利用蔗糖作为YP培养基中的有效碳源,使白藜芦醇在烧瓶发酵中的浓度提高到141mg/L。通过结合这些策略,我们在受控补料分批生物反应器中实现了400mg/L白藜芦醇的滴度。这些发现证明了Y.lipolytica作为从头生产白藜芦醇的平台的功效,并强调了代谢工程的重要性。提高丙二酰辅酶A的可用性,和培养基优化以提高白藜芦醇的产量。
    Resveratrol, a phenylpropanoid compound, exhibits diverse pharmacological properties, making it a valuable candidate for health and disease management. However, the demand for resveratrol exceeds the capacity of plant extraction methods, necessitating alternative production strategies. Microbial synthesis offers several advantages over plant-based approaches and presents a promising alternative. Yarrowia lipolytica stands out among microbial hosts due to its safe nature, abundant acetyl-CoA and malonyl-CoA availability, and robust pentose phosphate pathway. This study aimed to engineer Y. lipolytica for resveratrol production. The resveratrol biosynthetic pathway was integrated into Y. lipolytica by adding genes encoding tyrosine ammonia lyase from Rhodotorula glutinis, 4-coumarate CoA ligase from Nicotiana tabacum, and stilbene synthase from Vitis vinifera. This resulted in the production of 14.3 mg/L resveratrol. A combination of endogenous and exogenous malonyl-CoA biosynthetic modules was introduced to enhance malonyl-CoA availability. This included genes encoding acetyl-CoA carboxylase 2 from Arabidopsis thaliana, malonyl-CoA synthase, and a malonate transporter protein from Bradyrhizobium diazoefficiens. These strategies increased resveratrol production to 51.8 mg/L. The further optimization of fermentation conditions and the utilization of sucrose as an effective carbon source in YP media enhanced the resveratrol concentration to 141 mg/L in flask fermentation. By combining these strategies, we achieved a titer of 400 mg/L resveratrol in a controlled fed-batch bioreactor. These findings demonstrate the efficacy of Y. lipolytica as a platform for the de novo production of resveratrol and highlight the importance of metabolic engineering, enhancing malonyl-CoA availability, and media optimization for improved resveratrol production.
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  • 文章类型: Journal Article
    深海环境,作为地球生物圈内相对未探索的极端,表现出与陆地栖息地的显著区别。为了在这些极端条件下茁壮成长,深海放线菌已经进化出独特的生化代谢和生理能力,以确保它们在这个生态位生存。在这项研究中,通过培养依赖性方法和16SrRNA测序方法,从马里亚纳海沟中分离并鉴定了5个放线菌菌株。微杆菌属的抗菌活性。B1075被发现是最有效的,因此,它被选为目标菌株。通过全球天然产品社会分子网络(GNPS)平台进行的分子网络分析确定了25种类黄酮化合物为类黄酮次生代谢产物。其中,金雀异黄素被纯化并鉴定为具有显著抗菌活性的生物活性化合物。基于全基因组测序数据,在菌株B1075中提出了金雀异黄素的完整合成途径,关键基因是CHS(编码查尔酮合成酶)。CHS基因的表达受到高静水压力的显著调控,从而影响菌株B1075中类黄酮化合物的产生,揭示了放线菌合成类黄酮次生代谢产物与其在分子水平上适应高压环境之间的关系。这些结果不仅扩大了我们对深海微生物的理解,而且有望为生物制药领域新型药物的开发提供有价值的见解。
    Deep-sea environments, as relatively unexplored extremes within the Earth\'s biosphere, exhibit notable distinctions from terrestrial habitats. To thrive in these extreme conditions, deep-sea actinomycetes have evolved unique biochemical metabolisms and physiological capabilities to ensure their survival in this niche. In this study, five actinomycetes strains were isolated and identified from the Mariana Trench via the culture-dependent method and 16S rRNA sequencing approach. The antimicrobial activity of Microbacterium sp. B1075 was found to be the most potent, and therefore, it was selected as the target strain. Molecular networking analysis via the Global Natural Products Social Molecular Networking (GNPS) platform identified 25 flavonoid compounds as flavonoid secondary metabolites. Among these, genistein was purified and identified as a bioactive compound with significant antibacterial activity. The complete synthesis pathway for genistein was proposed within strain B1075 based on whole-genome sequencing data, with the key gene being CHS (encoding chalcone synthase). The expression of the gene CHS was significantly regulated by high hydrostatic pressure, with a consequent impact on the production of flavonoid compounds in strain B1075, revealing the relationship between actinomycetes\' synthesis of flavonoid-like secondary metabolites and their adaptation to high-pressure environments at the molecular level. These results not only expand our understanding of deep-sea microorganisms but also hold promise for providing valuable insights into the development of novel pharmaceuticals in the field of biopharmaceuticals.
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  • 文章类型: Case Reports
    色素性视网膜炎(RP)是一种由光感受器丧失和视网膜色素上皮萎缩引起的遗传性视网膜营养不良,导致严重的视力障碍或失明。RP可分为非综合征型或具有复杂临床表型的综合征型。本研究招募了三个与色素性视网膜炎并伴有小脑共济失调的无关波兰先证者。临床异质性和典型疾病症状的延迟出现显着延长了患者的诊断过程。因此,过去已经进行了许多临床和基因测试。这里,我们提供患者的详细临床和基因分析结果。全外显子组测序(WES)和靶向NGS分析允许鉴定以下基因中的四个新变体和两个先前报道的变体:ABHD12,FLVCR1和PNPLA6。下一代测序(NGS)方法的使用最终允许临床诊断的确认。超罕见疾病如PHARC,PCARP,Oliver-McFarlane综合征被诊断为患者,分别。我们的发现证实了下一代测序方法应用的重要性,特别是在具有重叠特征的超罕见遗传疾病中。
    Retinitis pigmentosa (RP) is an inherited retinal dystrophy caused by the loss of photoreceptors and retinal pigment epithelial atrophy, leading to severe visual impairment or blindness. RP can be classified as nonsyndromic or syndromic with complex clinical phenotypes. Three unrelated Polish probands affected with retinitis pigmentosa coexisting with cerebellar ataxia were recruited for this study. Clinical heterogeneity and delayed appearance of typical disease symptoms significantly prolonged the patients\' diagnostic process. Therefore, many clinical and genetic tests have been performed in the past. Here, we provide detailed clinical and genetic analysis results of the patients. Whole-exome sequencing (WES) and targeted NGS analysis allow the identification of four novel and two previously reported variants in the following genes: ABHD12, FLVCR1, and PNPLA6. The use of next-generation sequencing (NGS) methods finally allowed for confirmation of the clinical diagnosis. Ultra-rare diseases such as PHARC, PCARP, and Oliver-McFarlane syndromes were diagnosed in patients, respectively. Our findings confirmed the importance of the application of next-generation sequencing methods, especially in ultra-rare genetic disorders with overlapping features.
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  • 文章类型: Journal Article
    查尔酮合成酶(CHS)和查尔酮异构酶(CHI)催化类黄酮途径的前两个关键步骤,在陆地植物的生长和繁殖中起关键作用,包括紫外线防护,色素沉着,共生固氮,和病原体抗性。根据获得的CHS的X射线晶体结构,CHI,和查尔酮异构酶样蛋白(CHIL)来自同一单子叶植物,Virgatum,以及稳态动力学的结果,光谱/热力学分析,分子间相互作用,并提出了它们对每个催化步骤的影响。此外,分析了柚皮素查尔酮和异甘草素的PvCHI独特活性,用酶和两种底物的内在特征解释了观察到的I型和II型底物的分级活性。与柚皮素复合的PvCHS的结构支持非竞争性抑制。PvCHS表现出内在的催化滥交,除了柚皮素查尔酮外,还形成了对香豆酰基三乙酸内酯(CTAL)。在PvCHIL面前,通过PvCHS和PvCHI将对香豆酰基-CoA转化为柚皮素显示Vmax增加约400倍,CTAL的形成减少了70%。支持这个模型,分子对接,ITC(等温滴定量热法),和FRET(荧光共振能量转移)表明PvCHI和PvCHIL都以非竞争性方式与PvCHS相互作用,表明柚皮素对CHS的变构效应是合理的。重要的是,柚皮素的存在增加了PvCHS和PvCHIL之间的亲和力,而柚皮素查尔酮降低了亲和力,表明一个合理的反馈机制,以尽量减少自发的不正确的立体异构体。这些是来自同一物种的三体系统的第一个发现,表明CHS-CHI-CHIL的大分子组装在确定植物细胞中产生的类黄酮的量和类型中的重要性。
    Chalcone synthase (CHS) and chalcone isomerase (CHI) catalyze the first two committed steps of the flavonoid pathway that plays a pivotal role in the growth and reproduction of land plants, including UV protection, pigmentation, symbiotic nitrogen fixation, and pathogen resistance. Based on the obtained X-ray crystal structures of CHS, CHI, and chalcone isomerase-like protein (CHIL) from the same monocotyledon, Panicum virgatum, along with the results of the steady-state kinetics, spectroscopic/thermodynamic analyses, intermolecular interactions, and their effect on each catalytic step are proposed. In addition, PvCHI\'s unique activity for both naringenin chalcone and isoliquiritigenin was analyzed, and the observed hierarchical activity for those type-I and -II substrates was explained with the intrinsic characteristics of the enzyme and two substrates. The structure of PvCHS complexed with naringenin supports uncompetitive inhibition. PvCHS displays intrinsic catalytic promiscuity, evident from the formation of p-coumaroyltriacetic acid lactone (CTAL) in addition to naringenin chalcone. In the presence of PvCHIL, conversion of p-coumaroyl-CoA to naringenin through PvCHS and PvCHI displayed ~400-fold increased Vmax with reduced formation of CTAL by 70%. Supporting this model, molecular docking, ITC (Isothermal Titration Calorimetry), and FRET (Fluorescence Resonance Energy Transfer) indicated that both PvCHI and PvCHIL interact with PvCHS in a non-competitive manner, indicating the plausible allosteric effect of naringenin on CHS. Significantly, the presence of naringenin increased the affinity between PvCHS and PvCHIL, whereas naringenin chalcone decreased the affinity, indicating a plausible feedback mechanism to minimize spontaneous incorrect stereoisomers. These are the first findings from a three-body system from the same species, indicating the importance of the macromolecular assembly of CHS-CHI-CHIL in determining the amount and type of flavonoids produced in plant cells.
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  • 文章类型: Journal Article
    丁酸丁酯是一种短链脂肪酸酯(C8),具有果香。它在食品领域具有广阔的前景,化妆品和生物燃料。目前,丁酸丁酯是在工业上通过化学合成生产的,但它高度依赖石油基产品。对未来化石燃料稀缺性的日益关注已经有力地促进了从传统化石燃料和产品向可再生生物能源和生物化学品的过渡。因此,有必要开发绿色生化技术来替代传统的石油基材料。近年来,大肠杆菌和梭状芽孢杆菌等微生物已被设计为可持续一锅生产短链脂肪酸酯的细胞工厂,包括丁酸丁酯.这一观点强调了在微生物发酵中使用脂肪酶和醇酰基转移酶(AATs)生产丁酸丁酯的最新发展,以及未来的前景。
    Butyl butyrate is a short-chain fatty acid ester (C8) with a fruity aroma. It has broad prospects in the fields of foods, cosmetics and biofuels. At present, butyl butyrate is produced by chemical synthesis in the industry, but it is highly dependent on petroleum-based products. The growing concerns regarding the future scarcity of fossil fuels have been strongly promoted the transition from traditional fossil fuels and products to renewable bioenergy and biochemicals. Therefore, it is necessary to develop a green biochemical technology to replace traditional petroleum-based materials. In recent years, microorganisms such as Escherichia coli and Clostridium have been engineered to serve as cell factories for the sustainable one-pot production of short-chain fatty acid esters, including butyl butyrate. This opinion highlights the recent development in the use of lipases and alcohol acyltransferases (AATs) for butyl butyrate production in microbial fermentation, as well as future perspectives.
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  • 文章类型: Journal Article
    巴特综合征(BTHS)是一种致命的罕见遗传疾病,导致心脏功能障碍,严重的骨骼肌无力,免疫问题和生长延迟。TAFAZZIN基因突变,负责磷脂心磷脂(CL)的重塑,导致线粒体膜异常,包括成熟CL酰基组成的改变和单心磷脂(MLCL)的存在。MLCL/CL比率的急剧增加是BTHS患者的标志,与线粒体生物能学功能障碍和膜超微结构改变有关。目前尚无针对BTHS的特定疗法。这里,我们发现,从TAFAZZIN敲低(TazKD)小鼠分离的心脏线粒体呈现异常的超微结构膜形态,空泡的积累,亲裂变条件和线粒体自噬缺陷。有趣的是,我们发现,用CL靶向的小肽(命名为SS-31)对Tazzin缺陷型心脏的体内治疗能够通过影响参与动态过程和线粒体自噬的特定蛋白来恢复线粒体形态.这与我们先前的数据一致,该数据显示,在相同的药物治疗下,TazKD小鼠的线粒体呼吸效率与超复合物组织增加相关。总而言之,我们的发现证实了SS-31在BTHS动物模型中改善tafazzin缺陷的功能失调线粒体的有益作用。
    Barth syndrome (BTHS) is a lethal rare genetic disorder, which results in cardiac dysfunction, severe skeletal muscle weakness, immune issues and growth delay. Mutations in the TAFAZZIN gene, which is responsible for the remodeling of the phospholipid cardiolipin (CL), lead to abnormalities in mitochondrial membrane, including alteration of mature CL acyl composition and the presence of monolysocardiolipin (MLCL). The dramatic increase in the MLCL/CL ratio is the hallmark of patients with BTHS, which is associated with mitochondrial bioenergetics dysfunction and altered membrane ultrastructure. There are currently no specific therapies for BTHS. Here, we showed that cardiac mitochondria isolated from TAFAZZIN knockdown (TazKD) mice presented abnormal ultrastructural membrane morphology, accumulation of vacuoles, pro-fission conditions and defective mitophagy. Interestingly, we found that in vivo treatment of TazKD mice with a CL-targeted small peptide (named SS-31) was able to restore mitochondrial morphology in tafazzin-deficient heart by affecting specific proteins involved in dynamic process and mitophagy. This agrees with our previous data showing an improvement in mitochondrial respiratory efficiency associated with increased supercomplex organization in TazKD mice under the same pharmacological treatment. Taken together our findings confirm the beneficial effect of SS-31 in the amelioration of tafazzin-deficient dysfunctional mitochondria in a BTHS animal model.
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