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Development of chromaffin cells depends on MASH1 function.

机译:嗜铬细胞的发育取决于MASH1功能。

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The sympathoadrenal (SA) cell lineage is a derivative of the neural crest (NC), which gives rise to sympathetic neurons and neuroendocrine chromaffin cells. Signals that are important for specification of these two types of cells are largely unknown. MASH1 plays an important role for neuronal as well as catecholaminergic differentiation. Mash1 knockout mice display severe deficits in sympathetic ganglia, yet their adrenal medulla has been reported to be largely normal suggesting that MASH1 is essential for neuronal but not for neuroendocrine differentiation. We show now that MASH1 function is necessary for the development of the vast majority of chromaffin cells. Most adrenal medullary cells in Mash1(-/-) mice identified by Phox2b immunoreactivity, lack the catecholaminergic marker tyrosine hydroxylase. Mash1 mutant and wild-type mice have almost identical numbers of Phox2b-positive cells in their adrenal glands at embryonic day (E) 13.5; however, only one-third of the Phox2b-positive adrenal cell population seen in Mash1(+/+) mice is maintained in Mash1(-/-) mice at birth. Similar to Phox2b, cells expressing Phox2a and Hand2 (dHand) clearly outnumber TH-positive cells. Most cells in the adrenal medulla of Mash1(-/-) mice do not contain chromaffin granules, display a very immature, neuroblast-like phenotype, and, unlike wild-type adrenal chromaffin cells, show prolonged expression of neurofilament and Ret comparable with that observed in wild-type sympathetic ganglia. However, few chromaffin cells in Mash1(-/-) mice become PNMT positive and downregulate neurofilament and Ret expression. Together, these findings suggest that the development of chomaffin cells does depend on MASH1 function not only for catecholaminergic differentiation but also for general chromaffin cell differentiation.
机译:交感肾上腺(SA)细胞谱系是神经c(NC)的衍生物,可产生交感神经元和神经内分泌嗜铬细胞。对于这两种类型的细胞的规格重要的信号在很大程度上是未知的。 MASH1在神经元以及儿茶酚胺能的分化中起重要作用。 Mash1基因敲除小鼠在交感神经节中表现出严重缺陷,但据报道它们的肾上腺髓质基本正常,这表明MASH1对神经元至关重要,但对神经内分泌分化却不是必需的。现在我们表明,MASH1功能对于绝大多数嗜铬细胞的发展是必需的。通过Phox2b免疫反应识别的Mash1(-/-)小鼠中的大多数肾上腺髓质细胞缺乏儿茶酚胺能标记酪氨酸羟化酶。 Mash1突变小鼠和野生型小鼠在胚胎天(E)13.5时,其肾上腺的Phox2b阳性细胞数量几乎相同;但是,在Mash1(+ / +)小鼠中看到的Phox2b阳性肾上腺细胞总数只有三分之一在出生时就保持在Mash1(-/-)小鼠中。与Phox2b相似,表达Phox2a和Hand2(dHand)的细胞明显超过TH阳性细胞。 Mash1(-/-)小鼠的肾上腺髓质中的大多数细胞不含有嗜铬粒细胞颗粒,表现出非常不成熟的成神经细胞样表型,并且与野生型肾上腺嗜铬细胞不同,其神经丝和Ret的表达与之相当。在野生型交感神经节中观察到。但是,Mash1(-/-)小鼠中很少有嗜铬细胞变成PNMT阳性,并下调了神经丝和Ret表达。在一起,这些发现表明,chomaffin细胞的发育确实依赖于MASH1功能,不仅对儿茶酚胺能的分化而且对一般的嗜铬细胞的分化也有依赖性。

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