Riley Heart Research Center, Wells Center for Pediatric Research, Division of Pediatric Cardiology, Department of Anatomy, Indiana Medical School, Indianapolis, Indiana 46202-5225, USA.
Dev Dyn. 2010 Nov;239(11):3086-97. doi: 10.1002/dvdy.22428.
The basic Helix-Loop-Helix (bHLH) transcription factors Hand1 and Hand2 play critical roles in the development of multiple organ systems during embryogenesis. The dynamic expression patterns of these two factors within developing tissues obfuscate their respective unique and redundant organogenic functions. To define cell lineages potentially dependent upon Hand gene expression, we generated a mutant allele in which the coding region of Hand1 is replaced by Cre recombinase. Subsequent Cre-mediated activation of β-galactosidase or eYFP reporter alleles enabled lineage trace analyses that clearly define the fate of Hand1-expressing cells. Hand1-driven Cre marks specific lineages within the extra embryonic tissues, placenta, sympathetic nervous system, limbs, jaw, and several cell types within the cardiovascular system. Comparisons between Hand1 expression and Hand1-lineage greatly refine our understanding of its dynamic spatial-temporal expression domains and raise the possibility of novel Hand1 functions in structures not thought to be Hand1-dependent.
基本螺旋-环-螺旋 (bHLH) 转录因子 Hand1 和 Hand2 在胚胎发生过程中对多个器官系统的发育起着关键作用。这两个因素在发育组织中的动态表达模式掩盖了它们各自独特和冗余的器官发生功能。为了定义可能依赖于 Hand 基因表达的细胞谱系,我们生成了一个突变等位基因,其中 Hand1 的编码区被 Cre 重组酶取代。随后 Cre 介导的β-半乳糖苷酶或 eYFP 报告基因等位基因的激活使谱系追踪分析能够明确定义 Hand1 表达细胞的命运。Hand1 驱动的 Cre 标记了胚胎外组织、胎盘、交感神经系统、四肢、颌骨和心血管系统内的几种细胞类型中的特定谱系。Hand1 表达与 Hand1 谱系之间的比较极大地完善了我们对其动态时空表达域的理解,并提出了 Hand1 在以前认为不依赖于 Hand1 的结构中发挥新功能的可能性。