首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A sonic hedgehog signaling domain in the arterial adventitia supports resident Sca1~+ smooth muscle progenitor cells
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A sonic hedgehog signaling domain in the arterial adventitia supports resident Sca1~+ smooth muscle progenitor cells

机译:动脉外膜中的声波刺猬信号域支持常驻Sca1〜+平滑肌祖细胞

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摘要

We characterize a sonic hedgehog (Shh) signaling domain restricted to the adventitial layer of artery wall that supports resident Sca1-positive vascular progenitor cells (AdvSca1). Using patched-1 (Ptc1~(lacZ)) and patched-2 (Ptc2~(lacZ)) reporter mice, adventitial Shh signaling activity was first detected at embryonic day (E) 15.5, reached the highest levels between postnatal day 1 (P1) and P10, was diminished in adult vessels, and colocalized with a circumferential ring of Shh protein deposited between the media and adventitia. In Shh~(-/-) mice, AdvScal cells normally found at the aortic root were either absent or greatly diminished in number. Using a Wnt1-cre lineage marker that identifies cells of neural crest origin, we found that neither the adventitia nor AdvScal cells were labeled in arteries composed of neural crest-derived smooth muscle cells (SMCs). Although AdvScal cells do not express SMC marker proteins in vivo, they do express transcription factors thought to be required for SMC differentiation, including serum response factor (SRF) and myocardin family members, and readily differentiate to SMC-like cells in vitro. However, AdvScal cells also express potent repressors of SRF-dependent transcription, including Klf4, Msx1, and FoxO4, which may be critical for maintenance of the SMC progenitor phenotype of AdvScal cells in vivo. We conclude that a restricted domain of Shh signaling is localized to the arterial adventitia and may play important roles in maintenance of resident vascular SMC progenitor cells in the artery wall.
机译:我们的特征是声波刺猬(Shh)信号域仅限于支持居民Sca1阳性血管祖细胞(AdvSca1)的动脉壁外膜层。使用patched-1(Ptc1〜(lacZ))和patched-2(Ptc2〜(lacZ))报告基因小鼠,在胚胎第(E)15.5天首次检测到外膜Shh信号传导活性,在出生后第1天达到最高水平(P1 )和P10在成年血管中减少,并与沉积在培养基和外膜之间的Shh蛋白的圆周环共定位。在Shh〜(-/-)小鼠中,通常在主动脉根部发现的AdvScal细胞缺失或数量大大减少。使用识别神经1-起源细胞的Wnt1-cre谱系标记,我们发现外膜和AdvScal细胞均未在由神经c衍生的平滑肌细胞(SMCs)组成的动脉中标记。尽管AdvScal细胞在体内不表达SMC标记蛋白,但它们确实表达了SMC分化所必需的转录因子,包括血清反应因子(SRF)和心肌素家族成员,并在体外易于分化为SMC样细胞。但是,AdvScal细胞还表达强效的SRF依赖性转录阻遏物,包括Klf4,Msx1和FoxO4,这对于在体内维持AdvScal细胞的SMC祖细胞表型可能至关重要。我们得出的结论是,Shh信号传导的受限域位于动脉外膜,并且可能在动脉壁中驻留的血管SMC祖细胞的维持中起重要作用。

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