Bonnin Marie-Ange, Laclef Christine, Blaise Régis, Eloy-Trinquet Sophie, Relaix Frédéric, Maire Pascal, Duprez Delphine
Biologie du Développement, CNRS UMR 7622, Université P. et M. Curie, 9 Quai Saint-Bernard, Bât. C, 6(e) E, Case 24, Paris Cedex 05 75252, France.
Mech Dev. 2005 Apr;122(4):573-85. doi: 10.1016/j.mod.2004.11.005. Epub 2004 Dec 9.
Mice deficient for the homeobox gene Six1 display defects in limb muscles consistent with the Six1 expression in myogenic cells. In addition to its myogenic expression domain, Six1 has been described as being located in digit tendons and as being associated with connective tissue patterning in mouse limbs. With the aim of determining a possible involvement of Six1 in tendon development, we have carefully characterised the non-myogenic expression domain of the Six1 gene in mouse and chick limbs. In contrast to previous reports, we found that this non-myogenic domain is distinct from tendon primordia and from tendons defined by scleraxis expression. The non-myogenic domain of Six1 expression establishes normally in the absence of muscle, in Pax3-/- mutant limbs. Moreover, the expression of scleraxis is not affected in early Six1-/- mutant limbs. We conclude that the expression of the Six1 gene is not related to tendons and that Six1, at least on its own, is not involved in limb tendon formation in vertebrates. Finally, we found that the posterior domain of Six1 in connective tissue is adjacent to that of the secreted factor Sonic hedgehog and that Sonic hedgehog is necessary and sufficient for Six1 expression in posterior limb regions.
缺乏同源框基因Six1的小鼠在肢体肌肉中表现出缺陷,这与Six1在肌源性细胞中的表达一致。除了其肌源性表达结构域外,Six1还被描述为位于指肌腱中,并与小鼠肢体的结缔组织模式形成有关。为了确定Six1是否可能参与肌腱发育,我们仔细表征了Six1基因在小鼠和鸡肢体中的非肌源性表达结构域。与先前的报道相反,我们发现这个非肌源性结构域与肌腱原基以及由scleraxis表达定义的肌腱不同。Six1表达的非肌源性结构域在没有肌肉的情况下,在Pax3-/-突变体肢体中正常建立。此外,scleraxis的表达在早期Six1-/-突变体肢体中不受影响。我们得出结论,Six1基因的表达与肌腱无关,并且Six1至少单独不参与脊椎动物肢体肌腱的形成。最后,我们发现Six1在结缔组织中的后部结构域与分泌因子Sonic hedgehog的结构域相邻,并且Sonic hedgehog对于Six1在后肢区域的表达是必要且充分的。