Gazave Eve, Lemaître Quentin I B, Balavoine Guillaume
Institut Jacques Monod, CNRS, UMR 7592, Univ Paris Diderot, Sorbonne Paris Cité, 75205 Paris, France.
Institut Jacques Monod, CNRS, UMR 7592, Univ Paris Diderot, Sorbonne Paris Cité, 75205 Paris, France
Open Biol. 2017 Feb;7(2). doi: 10.1098/rsob.160242.
Notch is a key signalling pathway playing multiple and varied functions during development. Notch regulates the selection of cells with a neurogenic fate and maintains a pool of yet uncommitted precursors through lateral inhibition, both in insects and in vertebrates. Here, we explore the functions of Notch in the annelid Platynereis dumerilii (Lophotrochozoa). Conserved components of the pathway are identified and a scenario for their evolution in metazoans is proposed. Unexpectedly, neither Notch nor its ligands are expressed in the neurogenic epithelia of the larva at the time when massive neurogenesis begins. Using chemical inhibitors and neural markers, we demonstrate that Notch plays no major role in the general neurogenesis of larvae. Instead, we find Notch components expressed in nascent chaetal sacs, the organs that produce the annelid bristles. Impairing Notch signalling induces defects in chaetal sac formation, abnormalities in chaetae producing cells and a change of identity of chaeta growth accessory cells. This is the first bilaterian species in which the early neurogenesis processes appear to occur without a major involvement of the Notch pathway. Instead, Notch is co-opted to pattern annelid-specific organs, likely through a lateral inhibition process. These features reinforce the view that Notch signalling has been recruited multiple times in evolution due to its remarkable 'toolkit' nature.
Notch是一条关键的信号通路,在发育过程中发挥着多种不同的功能。在昆虫和脊椎动物中,Notch通过侧向抑制调节具有神经源性命运的细胞的选择,并维持一群尚未定向分化的前体细胞。在此,我们探究了Notch在多毛纲动物杜氏阔沙蚕(环节动物门)中的功能。我们鉴定了该信号通路的保守成分,并提出了其在后生动物中的进化情况。出乎意料的是,在大规模神经发生开始时,幼虫的神经源性上皮中既不表达Notch也不表达其配体。使用化学抑制剂和神经标记物,我们证明Notch在幼虫的一般神经发生中不发挥主要作用。相反,我们发现Notch成分在新生的刚毛囊中表达,刚毛囊是产生环节动物刚毛的器官。Notch信号的受损会导致刚毛囊形成缺陷、刚毛产生细胞异常以及刚毛生长辅助细胞身份的改变。这是第一个早期神经发生过程似乎在没有Notch信号通路主要参与的情况下发生的两侧对称动物物种。相反,Notch可能通过侧向抑制过程被用于构建环节动物特有的器官模式。这些特征强化了这样一种观点,即由于其显著的“工具包”性质,Notch信号在进化过程中被多次招募。