血管祖细胞命运的驱动因素通过抑制肾脏祖细胞的规范化来确定中间中胚层的尺寸

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Elliot A. Perens , Deborah Yelon
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引用次数: 0

摘要

器官的正确形成取决于器官区域的精确划分,这些区域包含数量明确的祖细胞。肾脏祖细胞位于被称为中间中胚层(IM)的后中胚层的双侧条带中。此前,我们曾发现转录因子 Hand2 和 Osr1 在中间层肾脏祖细胞和侧邻区域血管祖细胞的规格化之间起到平衡作用。最近,转录因子Npas4l--血管和血液祖细胞形成的早期重要驱动因子--被证明会抑制肾脏的发育。在这里,我们证明了肾脏祖细胞的分化是如何通过 hand2、osr1 和 npas4l 协调的。我们发现 npas4l 和 IM 标记 pax2a 在后侧中胚层瞬时共表达,并且 npas4l 是抑制 IM 形成所必需的。我们的研究结果表明,npas4l 在 IM 的内侧和外侧均有表达,这与 npas4l 在 IM 内侧和外侧边界的表达一致。在IM外侧边界,hand2促进而osr1抑制表达npas4l的外侧血管祖细胞的形成,hand2需要npas4l来抑制IM的形成并促进血管的形成。同时,npas4l 在抑制内侧边界 IM 的命运方面似乎还有另外一个作用:npas4l 功能缺失会增强 hand2 突变体 IM 的缺陷,并导致在 hand2 表达的外侧区域之外产生过多的 IM。总之,我们的研究结果表明,IM 内侧和外侧边界的建立需要血管祖细胞命运的邻近驱动因子对肾脏祖细胞规范的抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Drivers of vessel progenitor fate define intermediate mesoderm dimensions by inhibiting kidney progenitor specification

Drivers of vessel progenitor fate define intermediate mesoderm dimensions by inhibiting kidney progenitor specification
Proper organ formation depends on the precise delineation of organ territories containing defined numbers of progenitor cells. Kidney progenitors reside in bilateral stripes of posterior mesoderm that are referred to as the intermediate mesoderm (IM). Previously, we showed that the transcription factors Hand2 and Osr1 act to strike a balance between the specification of the kidney progenitors in the IM and the vessel progenitors in the laterally adjacent territory. Recently, the transcription factor Npas4l – an early and essential driver of vessel and blood progenitor formation – was shown to inhibit kidney development. Here we demonstrate how kidney progenitor specification is coordinated by hand2, osr1, and npas4l. We find that npas4l and the IM marker pax2a are transiently co-expressed in the posterior lateral mesoderm, and npas4l is necessary to inhibit IM formation. Consistent with the expression of npas4l flanking the medial and lateral sides of the IM, our findings suggest roles for npas4l in defining the IM boundaries at each of these borders. At the lateral IM border, hand2 promotes and osr1 inhibits the formation of npas4l-expressing lateral vessel progenitors, and hand2 requires npas4l to inhibit IM formation and to promote vessel formation. Meanwhile, npas4l appears to have an additional role in suppressing IM fate at the medial border: npas4l loss-of-function enhances hand2 mutant IM defects and results in excess IM generated outside of the lateral hand2-expressing territory. Together, our findings reveal that establishment of the medial and lateral boundaries of the IM requires inhibition of kidney progenitor specification by the neighboring drivers of vessel progenitor fate.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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