Al-Qattan M M
King Saud University, Riyadh, Saudi Arabia.
J Hand Surg Eur Vol. 2011 Jan;36(1):9-22. doi: 10.1177/1753193410380502. Epub 2010 Aug 13.
The various Wnt pathways that are related to upper limb anomalies are reviewed. Abnormalities in the Wnt7a pathway (located in the dorsal ectoderm) produce several clinically relevant conditions such as the palmar duplication syndrome, nail patella syndrome, ulnar ray deficiency, limb hypoplasia, polysyndactyly and the palmar nail syndrome. Abnormalities of the Wnt3/3a pathway (located in the apical ectodermal ridge) include tetra-amelia and loss of the distal phalanges/nails. Abnormalities of the Wnt5/5a pathway (located in the apical ectodermal ridge as well as in the mesoderm) will affect chondrogenesis of the developing limb and experimental Wnt5a(-/-) limbs have terminal adactyly. Chondrogenesis and limb muscle differentiation are both affected by several Wnt pathways and these will be reviewed in details. Abnormalities in LRP 5/6 (a co-receptor for Wnts) lead to congenital bone disease and Wnt4 is specifically involved in joint development. Finally, the relationship between the Wnt pathway and SALL4 (mutations of which cause Okihiro/Duane-radial ray deficiency in humans) are discussed.
本文综述了与上肢异常相关的各种Wnt信号通路。Wnt7a信号通路(位于背侧外胚层)异常会导致多种临床相关病症,如手掌重复综合征、指甲髌骨综合征、尺骨射线发育不全、肢体发育不全、多指畸形和手掌指甲综合征。Wnt3/3a信号通路(位于顶端外胚层嵴)异常包括四肢完全缺失和远端指骨/指甲缺失。Wnt5/5a信号通路(位于顶端外胚层嵴以及中胚层)异常会影响发育中肢体的软骨形成,实验性Wnt5a(-/-)肢体出现末端无指畸形。软骨形成和肢体肌肉分化均受多种Wnt信号通路影响,本文将对这些通路进行详细综述。LRP 5/6(Wnt的一种共受体)异常会导致先天性骨病,Wnt4特别参与关节发育。最后,本文讨论了Wnt信号通路与SALL4(其突变在人类中导致冈本/杜安-桡骨射线发育不全)之间的关系。