heme

血红素
  • 文章类型: Journal Article
    缺铁仍然是全球最大的营养缺乏。叶绿素铁(IC),结构上类似于血红素的化合物,利用叶绿素的原卟啉环结合铁。先前已显示IC比FeSO4向Caco-2细胞递送更多的铁,FeSO4是规定用于补充的最常见形式。然而,以前的测试条件使用的是在人类中观察到的消化条件之外的消化条件。本研究旨在使用生理相关的消化液评估IC生物可及性和Caco-2细胞摄取。pH值,和孵化时间,与其他铁源(即FeSO4和血红蛋白(Hb))相比。还研究了与抗坏血酸(AA)和白蛋白的共消化。在胃病之后,十二指肠,和空肠消化,IC结合的铁的生物可及性低于以FeSO4形式递送的铁,IC结合的铁的生物可及性低于Hb结合的铁。IC结合的铁的生物可及性不受AA的影响,并且与低剂量的白蛋白共消化后可增强2x。然而,Caco-2细胞与含IC的消化物一起孵育,使细胞铁蛋白比单独的FeSO4增加2.5倍,低于Hb。含有AA或400毫克白蛋白的IC也比单独的IC增加更多的细胞铁蛋白,孵育含有ICAA400mg白蛋白的食糜后观察到最大的增加。这些结果表明,与FeSO4相比,IC可以作为补充铁的改进来源。这些结果还支持在有铁缺乏风险的人群中进行基于IC的铁递送的进一步体内研究。
    Iron deficiency remains a top nutrient deficiency worldwide. Iron chlorophyllin (IC), a compound structurally analogous to heme, utilizes the protoporphyrin ring of chlorophyll to bind iron. IC has previously been shown to deliver more iron to Caco-2 cells than FeSO4, the most common form prescribed for supplementation. However, previous test conditions used digestive conditions outside of those observed in humans. This study sought to assess IC bioaccessibility and Caco-2 cell uptake using physiologically relevant digestive solutions, pH, and incubation time, as compared to other iron sources (i.e. FeSO4, and hemoglobin (Hb)). Co-digestion with ascorbic acid (AA) and albumin was also investigated. Following gastric, duodenal, and jejunal digestion, IC-bound iron was less bioaccessible than iron delivered as FeSO4, and IC-bound iron was less bioaccessible than Hb-bound iron. IC-bound iron bioaccessibility was not affected by AA and was enhanced 2x with co-digested with a low dose of albumin. However, Caco-2 cell incubation with IC-containing digesta increased cell ferritin 2.5x more than FeSO4 alone, and less than Hb. IC with AA or with 400 mg albumin also increased cell ferritin more than IC alone, with the greatest increases observed following incubation of digesta containing IC + AA + 400 mg albumin. These results suggest IC can serve as an improved source of iron for supplementation as compared to FeSO4. These results also support further in vivo investigations of IC-based iron delivery in populations at risk of iron deficiency.
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  • 文章类型: Journal Article
    亚硝酸盐是自然界中最常见的含氮化合物。它广泛用于食品加工,如腌制食品,因此由于亚硝胺的形成引起了公众对亚硝酸盐安全性的广泛关注,致癌物,在食物过程中。最近的研究表明,亚硝酸盐具有治疗心血管疾病的潜力,因为它的功能与NO相似,然而,口服亚硝酸盐的安全性以及口服后诱导的生理和生化反应仍需进一步验证.此外,亚硝酸盐与糖脂代谢之间的关系仍有待阐明。作为水生动物,与哺乳动物相比,鱼更容易受到亚硝酸盐的影响。在这里,我们利用罗非鱼(Oreochromisniloticus)作为动物模型来探索生物体中亚硝酸盐与糖脂代谢之间的关系。在本研究中,我们发现亚硝酸盐在罗非鱼中引起低氧代谢反应,并在病原菌S.ag(无乳链球菌)的共同胁迫下加深了这种代谢反应.此外,亚硝酸盐诱导的MetHb(高铁血红蛋白)及其副产物血红素的升高参与了通过HO/CO途径对亚硝酸盐诱导的缺氧的代谢反应,这在以前的研究中还没有提到。此外,血红素通过ROS-ER应激-VLDL途径影响肝脏代谢反应。这些发现,第一次,揭示亚硝酸盐暴露通过血红素-HO途径导致硬骨鱼糖脂代谢紊乱。它不仅为亚硝酸盐对身体的影响提供了新的见解,而且有利于制定健康的鱼类养殖策略。
    Nitrite is the most common nitrogen-containing compound in nature. It is widely used in food processing like in pickled foods so it has caused widespread public concern about the safety of nitrites due to the formation of nitrosamine, a carcinogen, during the food process. Recent research has shown nitrite has therapeutic potential for cardiovascular disease due to its similar function to NO, yet the safety of oral nitrite and the physiological and biochemical responses induced after oral administration still require further validation. In addition, the relationship between nitrite and glycolipid metabolism still needs to be elucidated. As aquatic animals, fish are more susceptible to nitrite compared to mammals. Herein, we utilized tilapia (Oreochromis niloticus) as an animal model to explore the relationship between nitrite and glycolipid metabolism in organisms. In the present study, we found that nitrite elicited a hypoxic metabolic response in tilapia and deepened this metabolic response under the co-stress of the pathogenic bacterium S.ag (Streptococcus agalactiae). In addition, nitrite-induced elevation of MetHb (Methemoglobin) and its by-product heme was involved in the metabolic response to nitrite-induced hypoxia through the HO/CO pathway, which has not yet been mentioned in previous studies. Moreover, heme affected hepatic metabolic responses through the ROS-ER stress-VLDL pathway. These findings, for the first time, reveal that nitrite exposure leads to glycolipid metabolic disorder via the heme-HO pathway in teleost. It not only provides new insights into the results of nitrite on the body but also is beneficial for developing healthy strategies for fish farming.
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  • 文章类型: Journal Article
    过氧化氢酶是去除过氧化氢的必需酶,使有氧和无氧代谢在含氧的气氛。单功能血红素过氧化氢酶,过氧化氢酶-过氧化物酶,和锰过氧化氢酶,20多亿年前独立进化,构成了收敛进化的经典例子。在这里,通过序列相似性网络分析过氧化氢酶序列的多样性,提供主要过氧化氢酶家族的序列分布的背景,并表明许多不同的过氧化氢酶家族仍有待实验研究。
    Catalases are essential enzymes for removal of hydrogen peroxide, enabling aerobic and anaerobic metabolism in an oxygenated atmosphere. Monofunctional heme catalases, catalase-peroxidases, and manganese catalases, evolved independently more than two billion years ago, constituting a classic example of convergent evolution. Herein, the diversity of catalase sequences is analyzed through sequence similarity networks, providing the context for sequence distribution of major catalase families, and showing that many divergent catalase families remain to be experimentally studied.
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  • 文章类型: Journal Article
    非常规酵母马氏克鲁维酵母具有工业生产潜力,但是缺乏用于精确工程的先进合成生物学工具阻碍了其快速发展。这里,我们介绍了一种CRISPR-Cas9介导的多位点整合方法,用于组装多个外源基因。使用SlugCas9-HF,一种高保真Cas9核酸酶,我们提高了基因编辑的精确度。鉴定易于有效整合和表达异源基因的特定基因组基因座,并将其与一组配对的CRISPR-Cas9表达质粒和供体质粒组合以建立基于CRISPR的生物合成工具包。该工具包可实现超过12kb的大型基因模块的基因组整合,并以20%的效率在单个步骤中同时实现四重基因座整合。作为一个概念证明,我们应用该工具包来筛选促进血红素产生的基因组合,揭示HEM4Km和HEM12Sc的重要性。这个基于CRISPR的工具包简化了K.marxianus复杂途径的重建,扩大其在合成生物学中的应用。
    The nonconventional yeast Kluyveromyces marxianus has potential for industrial production, but the lack of advanced synthetic biology tools for precise engineering hinders its rapid development. Here, we introduce a CRISPR-Cas9-mediated multilocus integration method for assembling multiple exogenous genes. Using SlugCas9-HF, a high-fidelity Cas9 nuclease, we enhance gene editing precision. Specific genomic loci predisposed to efficient integration and expression of heterologous genes are identified and combined with a set of paired CRISPR-Cas9 expression plasmids and donor plasmids to establish a CRISPR-based biosynthesis toolkit. This toolkit enables genome integration of large gene modules over 12 kb and achieves simultaneous quadruple-locus integration in a single step with 20% efficiency. As a proof-of-concept, we apply the toolkit to screen for gene combinations that promote heme production, revealing the importance of HEM4Km and HEM12Sc. This CRISPR-based toolkit simplifies the reconstruction of complex pathways in K. marxianus, broadening its application in synthetic biology.
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  • 文章类型: Journal Article
    创伤和热损伤导致全身免疫抑制状态,然而,人们对其发展背后的机制知之甚少。从受伤的肌肉和溶解的红细胞中释放出来,血红素是一种与损伤相关的分子模式,具有有效的免疫调节特性。这里,我们测量了200多名创伤和热损伤患者的血浆总血红素浓度,以研究其与临床结局和损伤后免疫抑制的关系.
    在超早期(≤1小时)和急性(4-72小时)损伤后设置中,从98例烧伤(全身表面积≥15%)和147例外伤(损伤严重程度评分≥8)患者中收集了血液样本。研究了由脂多糖(LPS)攻击的全血白细胞产生的促炎细胞因子,和血浆总血红素浓度,和它的清除剂结合珠蛋白,血色素结合蛋白和白蛋白测量,血红素加氧酶-1(HO-1)在外周血单核细胞(PBMC)中的表达。还检查了体外血红素处理后THP-1细胞和单核细胞产生的LPS诱导的肿瘤坏死因子-α(TNF-α)。
    烧伤和外伤导致血浆血红素浓度显著升高,这与血红蛋白和白蛋白水平降低同时发生,并与促炎和抗炎细胞因子的循环水平呈正相关。从创伤患者伤后4-12和48-72小时分离的PBMC表现出增加的HO-1基因表达。烧伤的非幸存者和发生败血症的患者,在第1天呈现显著升高的血红素水平,血红素浓度差异为6.5µM,相当于烧伤后死亡率的相对增加52%。烧伤后第1天,血红素水平与离体LPS诱导的全血白细胞产生TNF-α和白细胞介素-6呈负相关。用血红素预处理的THP-1细胞和单核细胞在LPS刺激后表现出显著降低的TNF-α产生。这种损伤与基因转录降低有关,细胞外信号调节激酶1/2的激活减少和糖酵解反应受损。
    严重损伤导致血浆总血红素浓度升高,这可能有助于内毒素耐受性的发展,并增加不良临床结局的风险。血红素清除系统的恢复可能是改善损伤后免疫功能的治疗方法。
    UNASSIGNED: Traumatic and thermal injuries result in a state of systemic immune suppression, yet the mechanisms that underlie its development are poorly understood. Released from injured muscle and lysed red blood cells, heme is a damage associated molecular pattern with potent immune modulatory properties. Here, we measured plasma concentrations of total heme in over 200 traumatic and thermally-injured patients in order to examine its relationship with clinical outcomes and post-injury immune suppression.
    UNASSIGNED: Blood samples were collected from 98 burns (≥15% total body surface area) and 147 traumatically-injured (injury severity score ≥8) patients across the ultra-early (≤1 hour) and acute (4-72 hours) post-injury settings. Pro-inflammatory cytokine production by lipopolysaccharide (LPS) challenged whole blood leukocytes was studied, and plasma concentrations of total heme, and its scavengers haptoglobin, hemopexin and albumin measured, alongside the expression of heme-oxygenase-1 (HO-1) in peripheral blood mononuclear cells (PBMCs). LPS-induced tumour necrosis factor-alpha (TNF-α) production by THP-1 cells and monocytes following in vitro heme treatment was also examined.
    UNASSIGNED: Burns and traumatic injury resulted in significantly elevated plasma concentrations of heme, which coincided with reduced levels of hemopexin and albumin, and correlated positively with circulating levels of pro and anti-inflammatory cytokines. PBMCs isolated from trauma patients 4-12 and 48-72 hours post-injury exhibited increased HO-1 gene expression. Non-survivors of burn injury and patients who developed sepsis, presented on day 1 with significantly elevated heme levels, with a difference of 6.5 µM in heme concentrations corresponding to a relative 52% increase in the odds of post-burn mortality. On day 1 post-burn, heme levels were negatively associated with ex vivo LPS-induced TNF-α and interleukin-6 production by whole blood leukocytes. THP-1 cells and monocytes pre-treated with heme exhibited significantly reduced TNF-α production following LPS stimulation. This impairment was associated with decreased gene transcription, reduced activation of extracellular signal-regulated kinase 1/2 and an impaired glycolytic response.
    UNASSIGNED: Major injury results in elevated plasma concentrations of total heme that may contribute to the development of endotoxin tolerance and increase the risk of poor clinical outcomes. Restoration of the heme scavenging system could be a therapeutic approach by which to improve immune function post-injury.
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  • 文章类型: Journal Article
    来自大肠杆菌的细胞色素bd-I属于原核bd型氧还原酶的超家族。它包含三个血红素,b558,b595和d,并将双氧对喹啉的氧化与质子动力的产生耦合。该酶表现出对各种应激源的抗性,被认为是下一代抗菌剂的靶蛋白。通过使用电子吸收和MCD光谱,这项工作表明,氰化物与分离的完全还原的细胞色素bd-I中的血红素d2结合。氰化物诱导的差异吸收光谱显示血红素d2α带附近的变化,最小值为633nm,最大值为600nm左右,以及Soret地区的W形响应。血红素d2+的氰化物络合物的表观解离常数(Kd)为0.052M。氰化物结合的动力学是单相的,表明酶中存在单个配体结合位点。始终如一,MCD数据显示氰化物结合血红素d2+但不结合b5582+或b5952+。这与已发表的结构数据一致,即酶的活性位点不是双血红素位点。观察到的结合率(kobs)随着氰化物浓度的增加而增加,给出二阶速率常数(kon)为0.1M-1s-1。
    Cytochrome bd-I from Escherichia coli belongs to the superfamily of prokaryotic bd-type oxygen reductases. It contains three hemes, b558, b595 and d, and couples oxidation of quinol by dioxygen with the generation of a proton-motive force. The enzyme exhibits resistance to various stressors and is considered as a target protein for next-generation antimicrobials. By using electronic absorption and MCD spectroscopy, this work shows that cyanide binds to heme d2+ in the isolated fully reduced cytochrome bd-I. Cyanide-induced difference absorption spectra display changes near the heme d2+ α-band, a minimum at 633 nm and a maximum around 600 nm, and a W-shaped response in the Soret region. Apparent dissociation constant (Kd) of the cyanide complex of heme d2+ is ∼0.052 M. Kinetics of cyanide binding is monophasic, indicating the presence of a single ligand binding site in the enzyme. Consistently, MCD data show that cyanide binds to heme d2+ but not to b5582+ or b5952+. This agrees with the published structural data that the enzyme\'s active site is not a di-heme site. The observed rate of binding (kobs) increases as the concentration of cyanide is increased, giving a second-order rate constant (kon) of ∼0.1 M-1 s-1.
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  • 文章类型: Journal Article
    牙龈卟啉单胞菌和根管卟啉单胞菌属于类杆菌门。这两种物种都栖息在口腔中,并且可能与牙周病有关。为了生存,它们必须从宿主中摄取血红素作为铁和原卟啉IX来源。在类杆菌门成员中鉴定出的特征最好的血红素采集系统是牙龈卟啉单胞菌Hmu系统,由血细胞样HmuY(HmuYPg)蛋白起主导作用。
    选择的HmuY蛋白的理论分析和分光光度法用于确定牙周假单胞菌HmuY同系物(HmuYPe)的血红素结合模式及其螯合血红素的能力。采用牙髓多糖的生长表型和基因表达分析来揭示HmuYPe和Hmu系统对该细菌的重要性。
    与牙龈卟啉单胞菌不同,HmuYPg使用两个组氨酸进行血红素-铁协调,其他已知的HmuY同系物在此过程中使用两种蛋氨酸。牙髓假单胞菌HmuYPe是使用组氨酸-甲硫氨酸对结合血红素的HmuY家族的第一个表征代表。它允许HmuYPe直接从血清白蛋白和连翘单纳菌HmuYTf中分离血红素,HmuY同系物,使用两个蛋氨酸进行血红素-铁配位。与HmuYPg相比,从高铁血红蛋白中直接螯合血红素,HmuYPe可能仅在血红蛋白的蛋白水解消化后结合血红素。
    我们假设Hmu系统的组成部分和HmuY蛋白的基于结构的特性的差异可能会进化,从而使卟啉单胞菌物种适应不断变化的宿主环境。这可能增加牙龈卟啉单胞菌优于类杆菌门的其他成员的毒力潜力。
    UNASSIGNED: Porphyromonas gingivalis and Porphyromonas endodontalis belong to the Bacteroidota phylum. Both species inhabit the oral cavity and can be associated with periodontal diseases. To survive, they must uptake heme from the host as an iron and protoporphyrin IX source. Among the best-characterized heme acquisition systems identified in members of the Bacteroidota phylum is the P. gingivalis Hmu system, with a leading role played by the hemophore-like HmuY (HmuYPg) protein.
    UNASSIGNED: Theoretical analysis of selected HmuY proteins and spectrophotometric methods were employed to determine the heme-binding mode of the P. endodontalis HmuY homolog (HmuYPe) and its ability to sequester heme. Growth phenotype and gene expression analysis of P. endodontalis were employed to reveal the importance of the HmuYPe and Hmu system for this bacterium.
    UNASSIGNED: Unlike in P. gingivalis, where HmuYPg uses two histidines for heme-iron coordination, other known HmuY homologs use two methionines in this process. P. endodontalis HmuYPe is the first characterized representative of the HmuY family that binds heme using a histidine-methionine pair. It allows HmuYPe to sequester heme directly from serum albumin and Tannerella forsythia HmuYTf, the HmuY homolog which uses two methionines for heme-iron coordination. In contrast to HmuYPg, which sequesters heme directly from methemoglobin, HmuYPe may bind heme only after the proteolytic digestion of hemoglobin.
    UNASSIGNED: We hypothesize that differences in components of the Hmu system and structure-based properties of HmuY proteins may evolved allowing different adaptations of Porphyromonas species to the changing host environment. This may add to the superior virulence potential of P. gingivalis over other members of the Bacteroidota phylum.
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  • 文章类型: Journal Article
    地狱门珠蛋白-I(HGb-I)是来自好氧甲烷菌的热稳定珠蛋白。在这里,我们报告了HGb-I与脂质化学计量相互作用,以诱导血红素口袋的结构变化,血红素铁远端结扎协调从六坐标变为五坐标。血红素几何结构的这种变化以前只报道了细胞色素c和细胞球蛋白,与细胞凋亡调节和增强的脂质过氧化活性有关,分别。然而,与细胞球蛋白和细胞色素C不同,HGb-I的血红素铁被亚铁和三价铁氧化态的脂质改变。在这种热稳定的珠蛋白中对脂质的表观亲和力是高度pH依赖性的,但在20-60°C的范围内基本上与温度无关。我们提出了一种机制来解释这些观察结果,其中远端内源性配体的脂质结合和稳定性作为温度的函数并置。此外,我们认为,这些耦合平衡可能构成一种机制,通过这种机制,这种嗜酸嗜热菌可以感知其环境的pH值。
    Hell\'s Gate globin-I (HGb-I) is a thermally stable globin from the aerobic methanotroph Methylacidiphilium infernorum. Here we report that HGb-I interacts with lipids stoichiometrically to induce structural changes in the heme pocket, changing the heme iron distal ligation coordination from hexacoordinate to pentacoordinate. Such changes in heme geometry have only been previously reported for cytochrome c and cytoglobin, linked to apoptosis regulation and enhanced lipid peroxidation activity, respectively. However, unlike cytoglobin and cytochrome c, the heme iron of HGb-I is altered by lipids in ferrous as well as ferric oxidation states. The apparent affinity for lipids in this thermally stable globin is highly pH-dependent but essentially temperature-independent within the range of 20-60 °C. We propose a mechanism to explain these observations, in which lipid binding and stability of the distal endogenous ligand are juxtaposed as a function of temperature. Additionally, we propose that these coupled equilibria may constitute a mechanism through which this acidophilic thermophile senses the pH of its environment.
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  • 文章类型: Journal Article
    铁螯合酶(FECH)是人血红素生物合成的末端酶,催化亚铁插入原卟啉IX(PPIX)以形成原血红素IX(血红素)。磷酸化增加FECH的活性,并且已经证实在T116磷酸化的FECH的活性增加。然而,目前尚不清楚T116位点和其他潜在的磷酸化修饰位点是否协同调节FECH的活性.在这项研究中,我们发现了一个新的磷酸化位点,T218,并探索了非磷酸化(UP)的变构效应,PT116、PT218和PT116+PT218使用分子动力学(MD)模拟在存在和不存在底物(PPIX和血红素)的情况下在FECH上陈述。用MM/PBSA方法评估结合自由能。我们的发现表明,PT116+PT218状态与PPIX表现出最低的结合自由能,表明最强的结合亲和力。此外,与UP相比,这种状态显示出更高的与血红素的结合自由能,这有利于血红素的释放。此外,采用多种分析方法,包括自由能源景观(FEL),主成分分析(PCA),动态互相关矩阵(DCCM)和氢键相互作用分析,我们证明磷酸化显著影响底物与FECH的动态行为和结合模式。本研究的见解为血红素代谢紊乱相关疾病的治疗提供了有价值的理论指导。如各种卟啉病和铁相关疾病。
    Ferrochelatase (FECH) is the terminal enzyme in human heme biosynthesis, catalyzing the insertion of ferrous iron into protoporphyrin IX (PPIX) to form protoheme IX (Heme). Phosphorylation increases the activity of FECH, and it has been confirmed that the activity of FECH phosphorylated at T116 increases. However, it remains unclear whether the T116 site and other potential phosphorylation modification sites collaboratively regulate the activity of FECH. In this study, we identified a new phosphorylation site, T218, and explored the allosteric effects of unphosphorylated (UP), PT116, PT218, and PT116 + PT218 states on FECH in the presence and absence of substrates (PPIX and Heme) using molecular dynamics (MD) simulations. Binding free energies were evaluated with the MM/PBSA method. Our findings indicate that the PT116 + PT218 state exhibits the lowest binding free energy with PPIX, suggesting the strongest binding affinity. Additionally, this state showed a higher binding free energy with Heme compared to UP, which facilitates Heme release. Moreover, employing multiple analysis methods, including free energy landscape (FEL), principal component analysis (PCA), dynamic cross-correlation matrix (DCCM), and hydrogen bond interaction analysis, we demonstrated that phosphorylation significantly affects the dynamic behavior and binding patterns of substrates to FECH. Insights from this study provide valuable theoretical guidance for treating conditions related to disrupted heme metabolism, such as various porphyrias and iron-related disorders.
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  • 文章类型: Journal Article
    LONP1是线粒体基质中的主要AAA+解折叠酶和散装蛋白酶,所以它的缺失会导致胚胎致死。AAA+解折酶CLPX和肽酶CLPP也在基质中起作用,尤其是在压力时期,但它们的底物定义不清。哺乳动物CLPP缺失会引发不孕症,耳聋,生长迟缓,和cGAS-STING激活的胞浆先天免疫。CLPX突变损害血红素生物合成和重金属稳态。CLPP和CLPX从细菌到人类都是保守的,尽管它们在蛋白水解中具有次要作用。基于最近来自基因敲除小鼠和患者细胞的蛋白质组学代谢组学证据,我们建议CLPP作用于相分离的核糖核蛋白颗粒,而CLPX作用于多酶缩合物,作为线粒体内膜附近的急救系统。在组件内修剪,CLPP挽救了mitoribosome中停滞的过程,线粒体RNA颗粒和核苷酸,和D-病灶介导的毒性双链mtRNA/mtDNA的降解。展开多酶缩合物,CLPX最大化PLP依赖性δ-转氨基作用并挽救畸形的新生肽。总的来说,它们的作用发生在具有多价或疏水相互作用的颗粒中,从水相中分离。因此,CLPXP在基质中的作用是区室选择性的,与其他线粒体肽酶一样:前体进口孔处的MPPs,m-AAA和i-AAA在任何一个IMM面前,在IMM内的PARL,和OMA1/HTRA2在膜间空间。
    LONP1 is the principal AAA+ unfoldase and bulk protease in the mitochondrial matrix, so its deletion causes embryonic lethality. The AAA+ unfoldase CLPX and the peptidase CLPP also act in the matrix, especially during stress periods, but their substrates are poorly defined. Mammalian CLPP deletion triggers infertility, deafness, growth retardation, and cGAS-STING-activated cytosolic innate immunity. CLPX mutations impair heme biosynthesis and heavy metal homeostasis. CLPP and CLPX are conserved from bacteria to humans, despite their secondary role in proteolysis. Based on recent proteomic-metabolomic evidence from knockout mice and patient cells, we propose that CLPP acts on phase-separated ribonucleoprotein granules and CLPX on multi-enzyme condensates as first-aid systems near the inner mitochondrial membrane. Trimming within assemblies, CLPP rescues stalled processes in mitoribosomes, mitochondrial RNA granules and nucleoids, and the D-foci-mediated degradation of toxic double-stranded mtRNA/mtDNA. Unfolding multi-enzyme condensates, CLPX maximizes PLP-dependent delta-transamination and rescues malformed nascent peptides. Overall, their actions occur in granules with multivalent or hydrophobic interactions, separated from the aqueous phase. Thus, the role of CLPXP in the matrix is compartment-selective, as other mitochondrial peptidases: MPPs at precursor import pores, m-AAA and i-AAA at either IMM face, PARL within the IMM, and OMA1/HTRA2 in the intermembrane space.
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