Inhibition of in vitro enteric neuronal development by endothelin-3: mediation by endothelin B receptors.

IF 3.7 2区 生物学 Q1 DEVELOPMENTAL BIOLOGY Development Pub Date : 1999-03-01 DOI:10.1242/dev.126.6.1161
J J Wu, J X Chen, T P Rothman, M D Gershon
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Abstract

The terminal colon is aganglionic in mice lacking endothelin-3 or its receptor, endothelin B. To analyze the effects of endothelin-3/endothelin B on the differentiation of enteric neurons, E11-13 mouse gut was dissociated, and positive and negative immunoselection with antibodies to p75(NTR )were used to isolate neural crest- and non-crest-derived cells. mRNA encoding endothelin B was present in both the crest-and non-crest-derived cells, but that encoding preproendothelin-3 was detected only in the non-crest-derived population. The crest- and non-crest-derived cells were exposed in vitro to endothelin-3, IRL 1620 (an endothelin B agonist), and/or BQ 788 (an endothelin B antagonist). Neurons and glia developed only in cultures of crest-derived cells, and did so even when endothelin-3 was absent and BQ 788 was present. Endothelin-3 inhibited neuronal development, an effect that was mimicked by IRL 1620 and blocked by BQ 788. Endothelin-3 failed to stimulate the incorporation of [3H]thymidine or bromodeoxyuridine. Smooth muscle development in non-crest-derived cell cultures was promoted by endothelin-3 and inhibited by BQ 788. In contrast, transcription of laminin alpha1, a smooth muscle-derived promoter of neuronal development, was inhibited by endothelin-3, but promoted by BQ 788. Neurons did not develop in explants of the terminal bowel of E12 ls/ls (endothelin-3-deficient) mice, but could be induced to do so by endothelin-3 if a source of neural precursors was present. We suggest that endothelin-3/endothelin B normally prevents the premature differentiation of crest-derived precursors migrating to and within the fetal bowel, enabling the precursor population to persist long enough to finish colonizing the bowel.

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内皮素-3对体外肠内神经元发育的抑制作用:内皮素B受体介导。
在缺乏内皮素-3或其受体内皮素B的小鼠中,终末结肠呈神经节结。为了分析内皮素-3/内皮素B对肠神经元分化的影响,我们分离了E11-13小鼠肠道,采用p75(NTR)抗体进行阳性和阴性免疫选择,分离神经嵴和非嵴来源的细胞。编码内皮素B的mRNA在冠源细胞和非冠源细胞中均存在,但编码内皮素3前原的mRNA仅在非冠源细胞中检测到。将冠源性和非冠源性细胞在体外暴露于内皮素-3、IRL 1620(内皮素B激动剂)和/或BQ 788(内皮素B拮抗剂)。神经元和胶质细胞仅在培养的冠源性细胞中发育,即使在内皮素-3缺失和bq788存在的情况下也能发育。内皮素-3抑制神经元发育,IRL 1620能模拟这一作用,BQ 788能阻断这一作用。内皮素-3不能刺激[3H]胸腺嘧啶或溴脱氧尿嘧啶的掺入。内皮素-3可促进非冠源性细胞的平滑肌发育,bq788可抑制平滑肌发育。相比之下,层粘连蛋白α 1(平滑肌来源的神经元发育启动子)的转录被内皮素-3抑制,但被bq788促进。在E12 ls/ls(内皮素-3缺陷)小鼠的末端肠外植体中,神经元不能发育,但如果存在神经前体来源,内皮素-3可以诱导神经元发育。我们认为内皮素-3/内皮素B通常可以阻止迁移到胎儿肠道内的冠源前体过早分化,使前体群体能够持续足够长的时间来完成肠道的定植。
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来源期刊
Development
Development 生物-发育生物学
CiteScore
6.70
自引率
4.30%
发文量
433
审稿时长
3 months
期刊介绍: Development’s scope covers all aspects of plant and animal development, including stem cell biology and regeneration. The single most important criterion for acceptance in Development is scientific excellence. Research papers (articles and reports) should therefore pose and test a significant hypothesis or address a significant question, and should provide novel perspectives that advance our understanding of development. We also encourage submission of papers that use computational methods or mathematical models to obtain significant new insights into developmental biology topics. Manuscripts that are descriptive in nature will be considered only when they lay important groundwork for a field and/or provide novel resources for understanding developmental processes of broad interest to the community. Development includes a Techniques and Resources section for the publication of new methods, datasets, and other types of resources. Papers describing new techniques should include a proof-of-principle demonstration that the technique is valuable to the developmental biology community; they need not include in-depth follow-up analysis. The technique must be described in sufficient detail to be easily replicated by other investigators. Development will also consider protocol-type papers of exceptional interest to the community. We welcome submission of Resource papers, for example those reporting new databases, systems-level datasets, or genetic resources of major value to the developmental biology community. For all papers, the data or resource described must be made available to the community with minimal restrictions upon publication. To aid navigability, Development has dedicated sections of the journal to stem cells & regeneration and to human development. The criteria for acceptance into these sections is identical to those outlined above. Authors and editors are encouraged to nominate appropriate manuscripts for inclusion in one of these sections.
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