Holzman Miriam A, Bergmann Jenna M, Feldman Maya, Landry-Truchon Kim, Jeannotte Lucie, Mansfield Jennifer H
Department of Biology, Barnard College, Columbia University, New York, NY, USA.
Int J Dev Biol. 2018;62(11-12):785-796. doi: 10.1387/ijdb.180214jm.
HOX proteins act during development to regulate musculoskeletal morphology. HOXA5 patterns skeletal structures surrounding the cervical-thoracic transition including the vertebrae, ribs, sternum and forelimb girdle. However, the tissue types in which it acts to pattern the skeleton, and the ultimate fates of embryonic cells that activate Hoxa5 expression are unknown. A detailed characterization of HOXA5 expression by immunofluorescence was combined with Cre/LoxP genetic lineage tracing to map the fate of Hoxa5 expressing cells in axial musculoskeletal tissues and in their precursors, the somites and lateral plate mesoderm. HOXA5 protein expression is dynamic and spatially restricted in derivatives of both the lateral plate mesoderm and somites, including a subset of the lateral sclerotome, suggesting a local role in regulating early skeletal patterning. HOXA5 expression persists from somite stages through late development in differentiating skeletal and connective tissues, pointing to a continuous and direct role in skeletal patterning. In contrast, HOXA5 expression is excluded from the skeletal muscle and muscle satellite cell lineages. Furthermore, the descendants of Hoxa5-expressing cells, even after HOXA5 expression has extinguished, never contribute to these lineages. Together, these findings suggest cell autonomous roles for HOXA5 in skeletal development, as well as non-cell autonomous functions in muscle through expression in surrounding connective tissues. They also support the notion that different Hox genes display diverse tissue specificities and locations to achieve their patterning activity.
HOX蛋白在发育过程中发挥作用,调节肌肉骨骼形态。HOXA5塑造颈椎-胸椎过渡区域周围的骨骼结构,包括椎骨、肋骨、胸骨和前肢带骨。然而,它在塑造骨骼时所作用的组织类型,以及激活Hoxa5表达的胚胎细胞的最终命运尚不清楚。通过免疫荧光对HOXA5表达进行详细表征,并结合Cre/LoxP遗传谱系追踪,以确定轴向肌肉骨骼组织及其前体(体节和侧板中胚层)中表达Hoxa5的细胞的命运。HOXA5蛋白表达在侧板中胚层和体节的衍生物中是动态的且受空间限制,包括外侧生骨节的一个子集,这表明其在调节早期骨骼模式形成中具有局部作用。HOXA5表达从体节阶段持续到发育后期的分化骨骼和结缔组织中,表明其在骨骼模式形成中具有持续且直接的作用。相比之下,HOXA5表达在骨骼肌和肌肉卫星细胞谱系中被排除。此外,即使HOXA5表达消失后,表达Hoxa5的细胞的后代也从未对这些谱系有贡献。总之,这些发现表明HOXA5在骨骼发育中具有细胞自主作用,以及通过在周围结缔组织中的表达在肌肉中具有非细胞自主功能。它们还支持这样一种观点,即不同的Hox基因表现出不同的组织特异性和定位,以实现其模式形成活性。