Bacterial Proteins

细菌蛋白质类
  • 文章类型: Journal Article
    近年来,肺炎克雷伯菌(KP)致病型的趋同性报道越来越多。这些病原体结合了多重耐药和高毒力KP的特征。然而,临床使用的高毒力KP鉴定指标,例如高粘膜粘度,似乎在收敛的KP中差异表达,潜在的爆发克隆很难识别。我们旨在通过研究在克隆爆发期间分离出的属于高风险序列类型(ST)307的会聚KP菌株中高粘膜粘度和毒力的温度依赖性来填补这些知识空白。
    高粘膜粘度,生物膜的形成,和死亡率在不同温度下检查了Galleriamelonella幼虫(室温,28°C,37°C,40°C和42°C)以及包括电子显微镜在内的各种表型实验。通过qPCR分析探索表型变化的潜在机制,以评估质粒拷贝数,和转录组学。
    我们的结果表明,高于37°C的温度依赖性转变为高粘膜粘性表型,与增加的生物膜形成和体内死亡率一致,可能反映了细菌对发热样疾病的反应。此外,我们观察到含有碳青霉烯酶和rmpA基因的杂交质粒的质粒拷贝数增加。然而,转录组学分析显示在较高温度下rmpA表达没有变化,建议替代调节途径。
    这项研究不仅阐明了高温对会聚KP中的高粘膜粘度和毒力的影响,而且还阐明了其适应行为的先前未被认识到的方面,强调其对不断变化的环境的适应能力。
    UNASSIGNED: Convergence of Klebsiella pneumoniae (KP) pathotypes has been increasingly reported in recent years. These pathogens combine features of both multidrug-resistant and hypervirulent KP. However, clinically used indicators for hypervirulent KP identification, such as hypermucoviscosity, appear to be differentially expressed in convergent KP, potential outbreak clones are difficult to identify. We aimed to fill such knowledge gaps by investigating the temperature dependence of hypermucoviscosity and virulence in a convergent KP strain isolated during a clonal outbreak and belonging to the high-risk sequence type (ST)307.
    UNASSIGNED: Hypermucoviscosity, biofilm formation, and mortality rates in Galleria mellonella larvae were examined at different temperatures (room temperature, 28°C, 37°C, 40°C and 42°C) and with various phenotypic experiments including electron microscopy. The underlying mechanisms of the phenotypic changes were explored via qPCR analysis to evaluate plasmid copy numbers, and transcriptomics.
    UNASSIGNED: Our results show a temperature-dependent switch above 37°C towards a hypermucoviscous phenotype, consistent with increased biofilm formation and in vivo mortality, possibly reflecting a bacterial response to fever-like conditions. Furthermore, we observed an increase in plasmid copy number for a hybrid plasmid harboring carbapenemase and rmpA genes. However, transcriptomic analysis revealed no changes in rmpA expression at higher temperatures, suggesting alternative regulatory pathways.
    UNASSIGNED: This study not only elucidates the impact of elevated temperatures on hypermucoviscosity and virulence in convergent KP but also sheds light on previously unrecognized aspects of its adaptive behavior, underscoring its resilience to changing environments.
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  • 文章类型: Journal Article
    SakazakiiCronobacter,机会食源性病原体,可能会污染各种食物材料,并导致婴儿出现危及生命的症状。细菌包膜结构有助于细菌环境耐受性,革兰氏阴性细菌中各种生物膜的形成和毒力。DsbA和PepP是与细菌包膜生物发生和稳固性有关的两个重要基因。在这项研究中,在Sakazakii中删除DsbA和PepP,以评估它们对病原体的胁迫耐受性和毒力的贡献。细菌环境抗性分析显示,DsbA和PepP在控制不同培养基中对热和干燥的影响是必不可少的。以及酸,渗透,氧化和胆汁盐应激。DsbA和PepP在调节生物膜形成和运动方面也起着重要作用。此外,DsbA和PepP缺失削弱了Caco-2中的Sakazakii粘附和侵袭、RAW264.7中的细胞内存活和复制。qRT-PCR结果表明,Sakazakii的DsbA和PepP在调节环境胁迫耐受性相关基因的表达中起作用,生物膜的形成,细菌运动和细胞入侵。这些发现表明,DsbA和PepP在环境抗性中起着重要的调节作用,Sakazakii的生物膜形成和毒力,这丰富了对病原体适应性和毒力的遗传决定因素的理解。
    Cronobacter sakazakii, an opportunity foodborne pathogen, could contaminate a broad range of food materials and cause life-threatening symptoms in infants. The bacterial envelope structure contribute to bacterial environment tolerance, biofilm formation and virulence in various in Gram-negative bacteria. DsbA and PepP are two important genes related to the biogenesis and stability of bacterial envelope. In this study, the DsbA and PepP were deleted in C. sakazakii to evaluate their contribution to stress tolerance and virulence of the pathogen. The bacterial environment resistance assays showed DsbA and PepP are essential in controlling C. sakazakii resistance to heat and desiccation in different mediums, as well as acid, osmotic, oxidation and bile salt stresses. DsbA and PepP also played an important role in regulating biofilm formation and motility. Furthermore, DsbA and PepP deletion weaken C. sakazakii adhesion and invasion in Caco-2, intracellular survival and replication in RAW 264.7. qRT-PCR results showed that DsbA and PepP of C. sakazakii played roles in regulating the expression of several genes associated with environment stress tolerance, biofilm formation, bacterial motility and cellular invasion. These findings indicate that DsbA and PepP played an important regulatory role in the environment resisitance, biofilm formation and virulence of C. sakazakii, which enrich understanding of genetic determinants of adaptability and virulence of the pathogen.
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  • 文章类型: Journal Article
    大环内酯类抗生素,在临床治疗中至关重要,正面临由大环内酯酯酶等酶介导的抗性挑战,分为Ere型和研究较少的Est型。在这项研究中,我们提供EstX的生化确认,一种Est型大环内酯酯酶,最初在1980年代被鉴定为未知蛋白质。EstX能够水解四种16元环大环内酯,包括两种兽药(泰乐菌素,替地吡松,和替米考星)和人用(白霉素A5)抗生素。它使用来自α/β水解酶超家族的典型催化三联体(Asp233-His261-Ser102)进行酯键水解。进一步的基因组背景分析表明,estX的传播可能是由整合子和转座子等可移动的遗传元件促进的。全球分布研究表明,携带estX基因的细菌,主要致病物种如大肠杆菌,肠沙门氏菌,和肺炎克雷伯菌,流行于6大洲的74个国家。此外,estX基因的出现时间线提示其增殖可能与大环内酯类抗生素的过度使用有关.Est型大环内酯酯酶的广泛流行和传播凸显出迫切需要加强监测和深入研究,强调其作为一个不断升级的公共卫生问题的重要性。
    Macrolide antibiotics, pivotal in clinical therapeutics, are confronting resistance challenges mediated by enzymes like macrolide esterases, which are classified into Ere-type and the less studied Est-type. In this study, we provide the biochemical confirmation of EstX, an Est-type macrolide esterase that initially identified as unknown protein in the 1980s. EstX is capable of hydrolyzing four 16-membered ring macrolides, encompassing both veterinary (tylosin, tidipirosin, and tilmicosin) and human-use (leucomycin A5) antibiotics. It uses typical catalytic triad (Asp233-His261-Ser102) from alpha/beta hydrolase superfamily for ester bond hydrolysis. Further genomic context analysis suggests that the dissemination of estX is likely facilitated by mobile genetic elements such as integrons and transposons. The global distribution study indicates that bacteria harboring the estX gene, predominantly pathogenic species like Escherichia coli, Salmonella enterica, and Klebsiella pneumoniae, are prevalent in 74 countries across 6 continents. Additionally, the emergence timeline of the estX gene suggests its proliferation may be linked to the overuse of macrolide antibiotics. The widespread prevalence and dissemination of Est-type macrolide esterase highlight an urgent need for enhanced monitoring and in-depth research, underlining its significance as an escalating public health issue.
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  • 文章类型: Journal Article
    肠道元蛋白质组学可以提供在结肠环境中活跃表达的微生物功能的直接证据。有助于阐明肠道微生物群在人体生理中的作用。在这项研究中,我们重新分析了来自不同大陆和国家的健康个体的10个粪便元蛋白质组学数据集,目的是鉴定稳定和可变的肠道微生物功能,并确定特定细菌类群对主要代谢途径的贡献。“核心”元蛋白质组包括182种微生物功能和83种途径,这些途径在所有分析的个体中得到鉴定。参与葡萄糖和丙酮酸代谢的几种酶,还有谷氨酸脱氢酶,醋酸盐激酶,伸长因子G和Tu和DnaK,是所研究队列中丰度变异性最低的蛋白质。相反,参与趋化性的蛋白质,对压力的反应和细胞粘附是最可变的功能之一。分类群之间相关趋势的随机效应荟萃分析,功能和途径揭示了肠道微生物群内的关键生态和分子关联。还研究了特定细菌类群对主要生物过程的贡献,发现粪杆菌是最稳定的属,也是健康肠道微生物群中抗炎丁酸产生的最大贡献者。观察到促进宿主耐受的其他粘膜免疫调节剂的主动产生,包括Roseburia鞭毛蛋白和由拟杆菌成员表达的脂多糖生物合成酶。我们的研究提供了健康人类肠道微生物群的详细图片,有助于揭示其功能机制及其与营养的关系,豁免权,和环境压力。
    Gut metaproteomics can provide direct evidence of microbial functions actively expressed in the colonic environments, contributing to clarify the role of the gut microbiota in human physiology. In this study, we re-analyzed 10 fecal metaproteomics datasets of healthy individuals from different continents and countries, with the aim of identifying stable and variable gut microbial functions and defining the contribution of specific bacterial taxa to the main metabolic pathways. The \"core\" metaproteome included 182 microbial functions and 83 pathways that were identified in all individuals analyzed. Several enzymes involved in glucose and pyruvate metabolism, along with glutamate dehydrogenase, acetate kinase, elongation factors G and Tu and DnaK, were the proteins with the lowest abundance variability in the cohorts under study. On the contrary, proteins involved in chemotaxis, response to stress and cell adhesion were among the most variable functions. Random-effect meta-analysis of correlation trends between taxa, functions and pathways revealed key ecological and molecular associations within the gut microbiota. The contribution of specific bacterial taxa to the main biological processes was also investigated, finding that Faecalibacterium is the most stable genus and the top contributor to anti-inflammatory butyrate production in the healthy gut microbiota. Active production of other mucosal immunomodulators facilitating host tolerance was observed, including Roseburia flagellin and lipopolysaccharide biosynthetic enzymes expressed by members of Bacteroidota. Our study provides a detailed picture of the healthy human gut microbiota, contributing to unveil its functional mechanisms and its relationship with nutrition, immunity, and environmental stressors.
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  • 文章类型: English Abstract
    细胞外膜囊泡的产生在细菌种群的通讯和细菌-宿主相互作用中起重要作用。作为各种调节和信号分子的载体的囊泡可能潜在地用作疾病生物标志物和有前途的治疗剂。包括疫苗制剂。对于有限数量的革兰氏阴性和革兰氏阳性细菌,已经破译了膜囊泡的组成。在这项工作中,第一次,链霉素抗性菌株的细胞外膜囊泡短小芽孢杆菌3-19,细胞外鸟苷酸偏好核糖核酸酶的生产者,是孤立的,可视化,并以它们的基因组和蛋白质组组成为特征。已经确定,囊泡中没有遗传物质,并且蛋白质的光谱根据菌株培养基中的磷酸盐含量而有所不同。来自缺乏磷酸盐的培养基的囊泡携带49种独特的蛋白质,而来自高磷酸盐含量的培养基的囊泡则携带101种。这两种类型的囊泡具有140个相互的蛋白质。鞭毛蛋白,RNaseJ,它是RNA降解体的主要酶,磷酸酶,肽酶,铁运输机,信号肽,在囊泡中被发现。其基因存在于短小芽孢杆菌3-19细胞中的抗生素抗性蛋白和淀粉样蛋白不存在。仅在磷酸盐缺乏培养基的囊泡中发现了磷酸盐缺乏诱导的结合酶。
    Production of extracellular membrane vesicles plays an important role in communication in bacterial populations and in bacteria-host interactions. Vesicles as carriers of various regulatory and signaling molecules may be potentially used as disease biomarkers and promising therapeutic agents, including vaccine preparations. The composition of membrane vesicles has been deciphered for a limited number of Gram-negative and Gram-positive bacteria. In this work, for the first time, extracellular membrane vesicles of a streptomycin-resistant strain Bacillus pumilus 3-19, a producer of extracellular guanyl-preferring ribonuclease binase, are isolated, visualized, and characterized by their genome and proteome composition. It has been established that there is no genetic material in the vesicles and the spectrum of the proteins differs depending on the phosphate content in the culture medium of the strain. Vesicles from a phosphate-deficient medium carry 49 unique proteins in comparison with 101 from a medium with the high phosphate content. The two types of vesicles had 140 mutual proteins. Flagellar proteins, RNase J, which is the main enzyme of RNA degradosomes, phosphatases, peptidases, iron transporters, signal peptides, were identified in vesicles. Antibiotic resistance proteins and amyloid-like proteins whose genes are present in B. pumilus 3-19 cells are absent. Phosphate deficiency-induced binase was found only in vesicles from a phosphate-deficient medium.
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  • 文章类型: Journal Article
    铜稳态是生物体内的一个基本过程,以独特的途径为特征,这些途径已经进化以满足特定需求,同时保留核心抗性机制。虽然这些系统在模型细菌中有很好的记录,有关适应寒冷环境的物种中铜抗性的信息很少。本研究调查了阿根廷白菊(JUB59-T)基因组中与铜稳态相关的潜在基因,一种从南极海水中分离出的精神耐受细菌。我们确定了几个编码类似于对铜稳态至关重要的蛋白质的基因,包括三个铜转运P1B型ATP酶序列。其中一个,被称为BaCopA1,被选择用于在酿酒酵母中克隆和表达。BaCopA1成功整合到酵母膜中,随后用洗涤剂提取。纯化的BaCopA1证明了在低温下催化ATP水解的能力。生成了各种BaCopA1构象的结构模型,并将其与嗜中和嗜热同源结构进行了比较。关键残基的显着保守性和这些蛋白质之间的结构相似性表明了铜转运的共同反应机制。这项研究首次报道了一种精神耐受性P1B-ATPase,该酶已以功能形式表达和纯化。
    Copper homeostasis is a fundamental process in organisms, characterised by unique pathways that have evolved to meet specific needs while preserving core resistance mechanisms. While these systems are well-documented in model bacteria, information on copper resistance in species adapted to cold environments is scarce. This study investigates the potential genes related to copper homeostasis in the genome of Bizionia argentinensis (JUB59-T), a psychrotolerant bacterium isolated from Antarctic seawater. We identified several genes encoding proteins analogous to those crucial for copper homeostasis, including three sequences of copper-transport P1B-type ATPases. One of these, referred to as BaCopA1, was chosen for cloning and expression in Saccharomyces cerevisiae. BaCopA1 was successfully integrated into yeast membranes and subsequently extracted with detergent. The purified BaCopA1 demonstrated the ability to catalyse ATP hydrolysis at low temperatures. Structural models of various BaCopA1 conformations were generated and compared with mesophilic and thermophilic homologous structures. The significant conservation of critical residues and structural similarity among these proteins suggest a shared reaction mechanism for copper transport. This study is the first to report a psychrotolerant P1B-ATPase that has been expressed and purified in a functional form.
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  • 文章类型: Journal Article
    背景:产生碳青霉烯酶的肺炎克雷伯菌(CRKP)对抗菌治疗提出了重大挑战,尤其是对粘菌素的抗性复合时。这项研究的目的是探索对产生碳青霉烯酶并表现出对粘菌素抗性的临床肺炎克雷伯菌菌株的分子流行病学见解。从德黑兰的Milad医院获得了80种CRKP临床分离株,伊朗。确定了抗菌药物敏感性和粘菌素肉汤圆盘洗脱。进行PCR检测以检查耐药相关基因的流行情况,包括BlaKPC,blaIMP,BlaVIM,blaOXA-48、blaNDM和mcr-1至-10。分子分型(PFGE)用于评估其传播。
    结果:使用肉汤盘洗脱方法在27个分离株(33.7%)中观察到粘菌素抗性。在碳青霉烯酶基因阳性分离株中,最常见的基因是blaOXA-48,在36株(45%)中鉴定。3.7%的分离株检测到mcr-1基因,在研究的分离株中没有检测到其他mcr基因。
    结论:为了阻止耐药肺炎克雷伯菌的传播和防止mcr基因的进化,必须加强监视,严格遵守感染预防协议,并实施抗生素管理实践。
    BACKGROUND: Carbapenemase-producing Klebsiella pneumoniae (CRKP) presents a significant challenge to antimicrobial therapy, especially when compounded by resistance to colistin. The objective of this study was to explore molecular epidemiological insights into strains of clinical K. pneumoniae that produce carbapenemases and exhibit resistance to colistin. Eighty clinical isolates of CRKP were obtained from Milad Hospital in Tehran, Iran. Antimicrobial susceptibility and colistin broth disk elution were determined. PCR assays were conducted to examine the prevalence of resistance-associated genes, including blaKPC, blaIMP, blaVIM, blaOXA-48, blaNDM and mcr-1 to -10. Molecular typing (PFGE) was used to assess their spread.
    RESULTS: Colistin resistance was observed in 27 isolates (33.7%) using the Broth Disk Elution method. Among positive isolates for carbapenemase genes, the most frequent gene was blaOXA-48, identified in 36 strains (45%). The mcr-1 gene was detected in 3.7% of the obtained isolates, with none of the other of the other mcr genes detected in the studied isolates.
    CONCLUSIONS: To stop the spread of resistant K. pneumoniae and prevent the evolution of mcr genes, it is imperative to enhance surveillance, adhere rigorously to infection prevention protocols, and implement antibiotic stewardship practices.
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  • 文章类型: Journal Article
    支原体免疫球蛋白结合/蛋白酶(MIB-MIP)系统是一种候选的毒力因子,包括快速生长的阿氏支原体。MIB-MIP系统切割宿主免疫球蛋白的重链,因此影响抗原-抗体相互作用并可能促进免疫逃避。在这项工作中,使用-组学技术和5'RACE,我们表明,四个拷贝的费氏支原体MIB-MIP系统具有不同的表达水平,并被转录为由四个不同启动子控制的操纵子。在不含MIB-MIP基因的工程化费氏支原体菌株中引入了费氏支原体和其他Mollicutes的单个MIB-MIP基因对,并使用新开发的基于oriC的质粒测试了它们的功能。这两种蛋白质在费氏支原体的表面功能性表达,这证实了在这种细菌中展示大型膜相关蛋白的可能性。然而,无法实现从系统发育上遥远的猪毛囊,例如猪肺炎中支原体或猪肺炎中支原体,在该工程菌株中引入的异源MIB-MIP系统的功能表达。最后,由于费氏支原体是生物医学应用的候选药物,如药物递送,我们证实了它在家养山羊体内的安全性,它们是它的本土寄主阿尔卑斯山牛最亲密的牲畜亲戚。
    The Mycoplasma Immunoglobulin Binding/Protease (MIB-MIP) system is a candidate \'virulence factor present in multiple pathogenic species of the Mollicutes, including the fast-growing species Mycoplasma feriruminatoris. The MIB-MIP system cleaves the heavy chain of host immunoglobulins, hence affecting antigen-antibody interactions and potentially facilitating immune evasion. In this work, using -omics technologies and 5\'RACE, we show that the four copies of the M. feriruminatoris MIB-MIP system have different expression levels and are transcribed as operons controlled by four different promoters. Individual MIB-MIP gene pairs of M. feriruminatoris and other Mollicutes were introduced in an engineered M. feriruminatoris strain devoid of MIB-MIP genes and were tested for their functionality using newly developed oriC-based plasmids. The two proteins are functionally expressed at the surface of M. feriruminatoris, which confirms the possibility to display large membrane-associated proteins in this bacterium. However, functional expression of heterologous MIB-MIP systems introduced in this engineered strain from phylogenetically distant porcine Mollicutes like Mesomycoplasma hyorhinis or Mesomycoplasma hyopneumoniae could not be achieved. Finally, since M. feriruminatoris is a candidate for biomedical applications such as drug delivery, we confirmed its safety in vivo in domestic goats, which are the closest livestock relatives to its native host the Alpine ibex.
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  • 文章类型: Journal Article
    鸟分枝杆菌亚种副结核(MAP)是约翰氏病的病原体,反刍动物的慢性肉芽肿性肠炎。MAP通过小肠在宿主中建立感染。这需要细菌粘附,并被内化,肠道细胞。为此目的由MAP表达的效应分子仍有待完全鉴定和理解。哺乳动物细胞进入(mce)蛋白已被证明能够使其他分枝杆菌物种附着并侵入宿主上皮细胞。这里,我们表达了Mce1A,Mce1D,来自非侵入性大肠杆菌表面的MAP的Mce3C和Mce4A蛋白表征了它们在MAP与宿主之间的初始相互作用中的作用。为此,发现mce1A的表达显着增加大肠杆菌在人单核细胞样THP-1细胞中附着和细胞内存活的能力,而mce1D的表达被发现显着增加大肠杆菌对牛上皮细胞样MDBK细胞的附着和侵袭,暗示细胞类型特异性。此外,Mce1A和Mce1D在先前非侵入性大肠杆菌表面上的表达增强了细菌感染3D牛基础出肠的能力。一起,我们的数据有助于我们理解MAP在与宿主的初始相互作用中使用的效应分子,并可能为治疗干预提供潜在的靶点。
    Mycobacterium avium subspecies paratuberculosis (MAP) is the causative agent of Johne\'s Disease, a chronic granulomatous enteritis of ruminants. MAP establishes an infection in the host via the small intestine. This requires the bacterium to adhere to, and be internalised by, cells of the intestinal tract. The effector molecules expressed by MAP for this purpose remain to be fully identified and understood. Mammalian cell entry (mce) proteins have been shown to enable other Mycobacterial species to attach to and invade host epithelial cells. Here, we have expressed Mce1A, Mce1D, Mce3C and Mce4A proteins derived from MAP on the surface of a non-invasive Escherichia coli to characterise their role in the initial interaction between MAP and the host. To this end, expression of mce1A was found to significantly increase the ability of the E. coli to attach and survive intracellularly in human monocyte-like THP-1 cells, whereas expression of mce1D was found to significantly increase attachment and invasion of E. coli to bovine epithelial cell-like MDBK cells, implying cell-type specificity. Furthermore, expression of Mce1A and Mce1D on the surface of a previously non-invasive E. coli enhanced the ability of the bacterium to infect 3D bovine basal-out enteroids. Together, our data contributes to our understanding of the effector molecules utilised by MAP in the initial interaction with the host, and may provide potential targets for therapeutic intervention.
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  • 文章类型: Journal Article
    CRISPR疗法的临床成功取决于Cas蛋白的安全性和有效性。来自Francisellanovicida(FnCas9)的Cas9非常精确,对错配底物的亲和力可忽略不计,但其低细胞靶向效率限制了治疗用途。这里,我们合理地设计蛋白质以开发增强的FnCas9(enFnCas9)变体,并将其在人类基因组位点的可及性扩大约3.5倍。具有单一错配特异性的enFnCas9蛋白扩展了基于FnCas9的CRISPR诊断的目标范围以检测致病性DNA特征。它们在目标编辑效率方面优于化脓性链球菌Cas9(SpCas9)及其工程衍生物,敲入率,和脱靶特异性。enFnCas9可以与延伸的gRNA组合,用于在PAM约束的规范碱基编辑器不可访问的位点处进行稳健的碱基编辑。最后,我们证明了使用enFnCas9腺嘌呤碱基编辑器在Leber先天性黑蒙2(LCA2)患者特异性iPSC系中的RPE65突变校正,强调其治疗效用。
    The clinical success of CRISPR therapies hinges on the safety and efficacy of Cas proteins. The Cas9 from Francisella novicida (FnCas9) is highly precise, with a negligible affinity for mismatched substrates, but its low cellular targeting efficiency limits therapeutic use. Here, we rationally engineer the protein to develop enhanced FnCas9 (enFnCas9) variants and broaden their accessibility across human genomic sites by ~3.5-fold. The enFnCas9 proteins with single mismatch specificity expanded the target range of FnCas9-based CRISPR diagnostics to detect the pathogenic DNA signatures. They outperform Streptococcus pyogenes Cas9 (SpCas9) and its engineered derivatives in on-target editing efficiency, knock-in rates, and off-target specificity. enFnCas9 can be combined with extended gRNAs for robust base editing at sites which are inaccessible to PAM-constrained canonical base editors. Finally, we demonstrate an RPE65 mutation correction in a Leber congenital amaurosis 2 (LCA2) patient-specific iPSC line using enFnCas9 adenine base editor, highlighting its therapeutic utility.
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