生物
细胞外基质
肌发生
卡哈尔间质细胞
细胞生物学
基底膜
心肌细胞
层粘连蛋白
骨骼肌
解剖
内分泌学
病理
医学
平滑肌
作者
Hideaki Sumiyoshi,Niv Mor,Sui Y. Lee,Stephen B. Doty,Scott C. Henderson,Shizuko Tanaka,Hidekatsu Yoshioka,Satish Rattan,Francesco Ramirez
标识
DOI:10.1083/jcb.200402054
摘要
Collagen XIX is an extremely rare extracellular matrix component that localizes to basement membrane zones and is transiently expressed by differentiating muscle cells. Characterization of mice harboring null and structural mutations of the collagen XIX (Col19a1) gene has revealed the critical contribution of this matrix protein to muscle physiology and differentiation. The phenotype includes smooth muscle motor dysfunction and hypertensive sphincter resulting from impaired swallowing-induced, nitric oxide–dependent relaxation of the sphincteric muscle. Muscle dysfunction was correlated with a disorganized matrix and a normal complement of enteric neurons and interstitial cells of Cajal. Mice without collagen XIX exhibit an additional defect, namely impaired smooth-to-skeletal muscle cell conversion in the abdominal segment of the esophagus. This developmental abnormality was accounted for by failed activation of myogenic regulatory factors that normally drive esophageal muscle transdifferentiation. Therefore, these findings identify collagen XIX as the first structural determinant of sphincteric muscle function, and as the first extrinsic factor of skeletal myogenesis in the murine esophagus.
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