Skirball Institute, New York University School of Medicine, New York, New York, USA.
School of Biological Sciences, University of California, San Diego, La Jolla, California, USA.
Dev Dyn. 2024 Jan;253(1):157-172. doi: 10.1002/dvdy.595. Epub 2023 May 3.
Essential patterning processes transform the heart tube into a compartmentalized organ with distinct chambers separated by an atrioventricular canal (AVC). This transition involves the refinement of expression of genes that are first found broadly throughout the heart tube and then become restricted to the AVC. Despite the importance of cardiac patterning, we do not fully understand the mechanisms that limit gene expression to the AVC.
We show that the zebrafish gene smarcc1a, encoding a BAF chromatin remodeling complex subunit homologous to mammalian BAF155, is critical for cardiac patterning. In smarcc1a mutants, myocardial differentiation and heart tube assembly appear to proceed normally. Subsequently, the smarcc1a mutant heart fails to exhibit refinement of gene expression patterns to the AVC, and the persistence of broad gene expression is accompanied by failure of chamber expansion. In addition to their cardiac defects, smarcc1a mutants lack pectoral fins, indicating similarity to tbx5a mutants. However, comparison of smarcc1a and tbx5a mutants suggests that perturbation of tbx5a function is not sufficient to cause the smarcc1a mutant phenotype.
Our data indicate an important role for Smarcc1a-containing chromatin remodeling complexes in regulating the changes in gene expression and morphology that distinguish the AVC from the cardiac chambers.
基本模式形成过程将心脏管腔转变为具有明显腔室的分隔器官,房室管(AVC)将这些腔室分隔开。这种转变涉及到基因表达的精细调控,这些基因最初在整个心脏管腔中广泛表达,然后局限于 AVC 表达。尽管心脏模式形成非常重要,但我们并不完全了解将基因表达限制在 AVC 的机制。
我们发现斑马鱼基因 smarcc1a 编码的 BAF 染色质重塑复合物亚基与哺乳动物 BAF155 同源,对心脏模式形成至关重要。在 smarcc1a 突变体中,心肌分化和心脏管腔组装似乎正常进行。随后,smarcc1a 突变体心脏未能表现出向 AVC 精细表达模式的转变,广泛的基因表达持续存在伴随着腔室扩张的失败。除了心脏缺陷外,smarcc1a 突变体还缺乏胸鳍,表明与 tbx5a 突变体相似。然而,smarcc1a 和 tbx5a 突变体的比较表明,tbx5a 功能的扰动不足以引起 smarcc1a 突变体表型。
我们的数据表明 Smarcc1a 包含的染色质重塑复合物在调节区分 AVC 和心脏腔室的基因表达和形态变化方面起着重要作用。