Laboratorio de Biología del Desarrollo-BIOLDES, Departamento de Ciencias Biológicas, Facultad de Ciencias, Universidad de los Andes, Bogotá, Colombia.
Departamento de Biología, Universidad Nacional de Colombia-Sede Bogotá, Bogotá, Colombia.
PLoS One. 2024 Sep 6;19(9):e0307390. doi: 10.1371/journal.pone.0307390. eCollection 2024.
Worldwide incidence of kidney diseases has been rising. Thus, recent research has focused on zebrafish, whose fast development and innate regeneration capacity allow identifying factors influencing renal processes. Among these poorly studied factors are extracellular matrix (ECM) proteins like Fibronectin (Fn) essential in various tissues but not yet evaluated in a renal context. We utilized early nat and han zebrafish mutant embryos and carrier adults to investigate Fn's role during kidney development and regeneration. The locus natter (nat) encodes Fn and the locus han encodes Hand2, which results in increased Fn deposition. Our results show that Fn impacts identity maintenance and morphogenesis during development and influences conditions for neonephrogenic cluster formation during regeneration. Histological analysis revealed disrupted pronephric structures and increased blood cell accumulation in Fn mutants. Despite normal expression of specification markers (pax2, ATPα1a.1), structural abnormalities were evident. Differences between wild-type and mutation-carriers suggest a haploinsufficiency scenario. These findings reveal a novel function for ECM in renal development and regeneration, with potential implications for understanding and treating kidney diseases.
全球范围内肾脏疾病的发病率一直在上升。因此,最近的研究集中在斑马鱼身上,斑马鱼的快速发育和先天再生能力使其成为鉴定影响肾脏过程的因素的理想选择。在这些研究较少的因素中,细胞外基质(ECM)蛋白如纤连蛋白(Fn)是必不可少的,它们在各种组织中发挥作用,但尚未在肾脏环境中进行评估。我们利用早期 nat 和 han 斑马鱼突变胚胎和携带型成年鱼来研究 Fn 在肾脏发育和再生过程中的作用。natter(nat)基因座编码 Fn,hand2 基因座编码 Hand2,导致 Fn 沉积增加。我们的结果表明,Fn 在发育过程中影响身份维持和形态发生,并影响再生过程中新肾发生簇形成的条件。组织学分析显示,Fn 突变体的前肾结构受损,血细胞积聚增加。尽管特异性标志物(pax2、ATPα1a.1)的表达正常,但结构异常明显。野生型和突变携带者之间的差异表明存在杂合不足的情况。这些发现揭示了 ECM 在肾脏发育和再生中的新功能,这可能对理解和治疗肾脏疾病具有重要意义。