Grammatopoulos G A, Bell E, Toole L, Lumsden A, Tucker A S
MRC Centre for Developmental Neurobiology, King's College, Guy's Campus, London SE1 1UL, UK.
Development. 2000 Dec;127(24):5355-65. doi: 10.1242/dev.127.24.5355.
Overexpression of Hoxa2 in the chick first branchial arch leads to a transformation of first arch cartilages, such as Meckel's and the quadrate, into second arch elements, such as the tongue skeleton. These duplicated elements are fused to the original in a similar manner to that seen in the Hoxa2 knockout, where the reverse transformation of second to first arch morphology is observed. This confirms the role of Hoxa2 as a selector gene specifying second arch fate. When first arch neural crest alone is targeted, first arch elements are lost, but the Hoxa2-expressing crest is unable to develop into second arch elements. This is not due to Hoxa2 preventing differentiation of cartilages. Upregulation of a second arch marker in the first arch, and homeotic transformation of cartilage elements is only produced after global Hoxa2 overexpression in the crest and the surrounding tissue. Thus, although the neural crest appears to contain some patterning information, it needs to read cues from the environment to form a coordinated pattern. Hoxa2 appears to exert its effect during differentiation of the cartilage elements in the branchial arches, rather than during crest migration, implying that pattern is determined quite late in development.
鸡第一鳃弓中Hoxa2的过表达会导致第一鳃弓软骨(如梅克尔软骨和方骨)转变为第二鳃弓元素,如舌骨。这些复制的元素以与Hoxa2基因敲除中观察到的类似方式与原始元素融合,在Hoxa2基因敲除中观察到第二鳃弓形态向第一鳃弓形态的反向转变。这证实了Hoxa2作为指定第二鳃弓命运的选择基因的作用。当仅靶向第一鳃弓神经嵴时,第一鳃弓元素会丢失,但表达Hoxa2的嵴无法发育成第二鳃弓元素。这不是因为Hoxa2阻止软骨分化。只有在嵴和周围组织中全局过表达Hoxa2后,第一鳃弓中第二鳃弓标记物的上调和软骨元素的同源转化才会产生。因此,尽管神经嵴似乎包含一些模式形成信息,但它需要从环境中读取线索以形成协调的模式。Hoxa2似乎在鳃弓软骨元素的分化过程中发挥作用,而不是在嵴迁移过程中,这意味着模式在发育后期才确定。