Vikkula M, Boon L M, Carraway K L, Calvert J T, Diamonti A J, Goumnerov B, Pasyk K A, Marchuk D A, Warman M L, Cantley L C, Mulliken J B, Olsen B R
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Cell. 1996 Dec 27;87(7):1181-90. doi: 10.1016/s0092-8674(00)81814-0.
Venous malformations (VMs), the most common errors of vascular morphogenesis in humans, are composed of dilated, serpiginous channels. The walls of the channels have a variable thickness of smooth muscle; some mural regions lack smooth muscle altogether. A missense mutation resulting in an arginine-to-tryptophan substitution at position 849 in the kinase domain of the receptor tyrosine kinase TIE2 segregates with dominantly inherited VM in two unrelated families. Using proteins expressed in insect cells, we demonstrate that the mutation results in increased activity of TIE2. We conclude that an activating mutation in TIE2 causes inherited VMs in the two families and that the TIE2 signaling pathway is critical for endothelial cell-smooth muscle cell communication in venous morphogenesis.
静脉畸形(VMs)是人类血管形态发生中最常见的错误,由扩张的、蜿蜒的通道组成。这些通道的壁具有厚度可变的平滑肌;一些壁区域完全缺乏平滑肌。在两个不相关的家族中,一种错义突变导致受体酪氨酸激酶TIE2激酶结构域第849位的精氨酸被色氨酸取代,该突变与显性遗传的VM相关。利用在昆虫细胞中表达的蛋白质,我们证明该突变导致TIE2活性增加。我们得出结论,TIE2中的激活突变导致这两个家族中的遗传性VMs,并且TIE2信号通路在静脉形态发生中对内皮细胞-平滑肌细胞通讯至关重要。