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MBTPS1/SKI-1/S1P proprotein convertase is required for ECM signaling and axial elongation during somitogenesis and vertebral development

机译:MBPTS1 / SKI-1 / S1P前蛋白转化酶是促细胞生成和椎体发育过程中ECM信号传导和轴向伸长所必需的

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摘要

Caudal regression syndrome (sacral agenesis), which impairs development of the caudal region of the body, occurs with a frequency of about 2 live births per 100 000 newborns although this incidence rises to 1 in 350 infants born to mothers with gestational diabetes. The lower back and limbs can be affected as well as the genitourinary and gastrointestinal tracts. The axial skeleton is formed during embryogenesis through the process of somitogenesis in which the paraxial mesoderm periodically segments into bilateral tissue blocks, called somites. Somites are the precursors of vertebrae and associated muscle, tendons and dorsal dermis. Vertebral anomalies in caudal regression syndrome may arise through perturbation of somitogenesis or, alternatively, could result from defective bone formation and patterning. We discovered that MBTPS1/SKI-1/S1P, which proteolytically activates a class of transmembrane transcription factors, plays a critical role in somitogenesis and the pathogenesis of lumbar/sacral vertebral anomalies. Conditional deletion of Mbtps1 yields a viable mouse with misshapen, fused and reduced number of lumbar and sacral vertebrae, under-developed hind limb bones and a kinky, shortened tail. We show that Mbtps1 is required to (i) maintain the Fgf8 ‘wavefront’ in the presomitic mesoderm that underpins axial elongation, (ii) sustain the Lfng oscillatory ‘clock’ activity that governs the periodicity of somite formation and (iii) preserve the composition and character of the somitic extracellular matrix containing fibronectin, fibrillin2 and laminin. Based on this spinal phenotype and known functions of MBTPS1, we reason that loss-of-function mutations in Mbtps1 may cause the etiology of caudal regression syndrome.
机译:尾鳍退化综合征(a骨发育不全)会损害身体尾鳍区域的发育,每10万新生儿中约有2例活产,但这种发病率上升至妊娠糖尿病母亲的350例婴儿中的1例。下背部和四肢以及泌尿生殖道和胃肠道均可受到影响。轴向骨骼是在胚发生过程中通过体发生的过程而形成的,在该过程中,旁轴中胚层周期性地分成双侧组织块,称为体节。体节是椎骨和相关的肌肉,肌腱和背部真皮的前体。尾椎退化综合征的椎骨异常可能是由于体细胞的发生紊乱引起的,或者是由于骨形成和图案的缺陷引起的。我们发现MBTPS1 / SKI-1 / S1P蛋白水解激活一类跨膜转录因子,在体发生和腰/ s椎异常的发病机理中起关键作用。有条件地删除Mbtps1可以使小鼠的腰椎和椎骨变形,融合和减少,后肢骨骼发育不全,尾巴变短。我们表明,Mbtps1需要(i)维持基础轴向伸长的方波中胚层中的Fgf8“波前”,(ii)维持Lfng振荡的“时钟”活动,该活动控制着so石形成的周期性,并且(iii)保留了成分含有纤连蛋白,纤连蛋白2和层粘连蛋白的体细胞外基质的特性和特征。基于这种脊柱表型和MBTPS1的已知功能,我们认为Mbtps1的功能丧失突变可能引起尾椎退化综合征的病因。

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