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骨形态发生蛋白信号传导调节涡虫的背侧中线,并且是不对称再生所必需的。

BMP signaling regulates the dorsal planarian midline and is needed for asymmetric regeneration.

作者信息

Reddien Peter W, Bermange Adam L, Kicza Adrienne M, Sánchez Alvarado Alejandro

机构信息

MIT Biology, Whitehead Institute, 9 Cambridge Center, Cambridge, MA 02138, USA.

出版信息

Development. 2007 Nov;134(22):4043-51. doi: 10.1242/dev.007138. Epub 2007 Oct 17.

Abstract

Planarians can be cut into irregularly shaped fragments capable of regenerating new and complete organisms. Such regenerative capacities involve a robust ability to restore bilateral symmetry. We have identified three genes needed for bilaterally asymmetric fragments to regenerate missing body parts. These genes are candidate components of a signaling pathway that controls the dorsal-ventral patterning of many animal embryos: a BMP1/Tolloid-like gene (smedolloid-1), a SMAD4-like gene (smedsmad4-1), and a BMP2/4/DPP-like gene (smedbmp4-1). BMP signaling was involved in the formation of new tissues at the midline of regeneration, the dorsal-ventral patterning of new tissues, and the maintenance of the dorsal-ventral pattern of existing adult tissue in homeostasis. smedbmp4-1 was normally expressed at the dorsal midline. Asymmetric fragments lacking a midline displayed new smedbmp4-1 expression prior to formation of a regenerative outgrowth (blastema). Asymmetric fragments containing the midline displayed expanded smedbmp4-1 expression towards the wound. We suggest injured animals that lack left-right symmetry reset their midline through modulation of BMP activity as an early and necessary event in regeneration.

摘要

涡虫可以被切成形状不规则的碎片,这些碎片能够再生出新的完整生物体。这种再生能力涉及强大的恢复双侧对称的能力。我们已经鉴定出双侧不对称碎片再生缺失身体部位所需的三个基因。这些基因是控制许多动物胚胎背腹模式的信号通路的候选组成部分:一个BMP1/类Tolloid基因(smedolloid-1)、一个类SMAD4基因(smedsmad4-1)和一个BMP2/4/DPP类基因(smedbmp4-1)。BMP信号传导参与再生中线新组织的形成、新组织的背腹模式形成以及稳态下现有成年组织背腹模式的维持。smedbmp4-1通常在背中线表达。缺乏中线的不对称碎片在再生芽基形成之前显示出新的smedbmp4-1表达。含有中线的不对称碎片在伤口处显示出smedbmp4-1表达的扩展。我们认为,缺乏左右对称的受伤动物通过调节BMP活性来重置它们的中线,这是再生过程中早期且必要的事件。

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