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一种易化扩散机制建立了背侧梯度。

A facilitated diffusion mechanism establishes the Dorsal gradient.

作者信息

Carrell Sophia N, O'Connell Michael D, Jacobsen Thomas, Pomeroy Amy E, Hayes Stephanie M, Reeves Gregory T

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27605, USA.

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27605, USA

出版信息

Development. 2017 Dec 1;144(23):4450-4461. doi: 10.1242/dev.155549. Epub 2017 Nov 2.

Abstract

The transcription factor NF-κB plays an important role in the immune system, apoptosis and inflammation. Dorsal, a homolog of NF-κB, patterns the dorsal-ventral axis in the blastoderm embryo. During this stage, Dorsal is sequestered outside the nucleus by the IκB homolog Cactus. Toll signaling on the ventral side breaks the Dorsal/Cactus complex, allowing Dorsal to enter the nucleus to regulate target genes. Fluorescent data show that Dorsal accumulates on the ventral side of the syncytial blastoderm. Here, we use modeling and experimental studies to show that this accumulation is caused by facilitated diffusion, or shuttling, of the Dorsal/Cactus complex. We also show that active Toll receptors are limiting in wild-type embryos, which is a key factor in explaining global Dorsal gradient formation. Our results suggest that shuttling is necessary for viability of embryos from mothers with compromised levels. Therefore, Cactus not only has the primary role of regulating Dorsal nuclear import, but also has a secondary role in shuttling. Given that this mechanism has been found in other, independent, systems, we suggest that it might be more prevalent than previously thought.

摘要

转录因子NF-κB在免疫系统、细胞凋亡和炎症中发挥着重要作用。Dorsal是NF-κB的同源物,在胚盘胚胎中决定背腹轴的形成。在此阶段,Dorsal被IκB同源物Cactus隔离在细胞核外。腹侧的Toll信号传导打破了Dorsal/Cactus复合物,使Dorsal进入细胞核以调控靶基因。荧光数据显示,Dorsal在合胞体胚盘的腹侧积累。在这里,我们通过建模和实验研究表明,这种积累是由Dorsal/Cactus复合物的易化扩散或穿梭引起的。我们还表明,在野生型胚胎中,活性Toll受体是有限的,这是解释整体Dorsal梯度形成的关键因素。我们的结果表明,穿梭对于来自水平受损母亲的胚胎的生存能力是必要的。因此,Cactus不仅具有调节Dorsal核输入的主要作用,而且在穿梭中还具有次要作用。鉴于这种机制已在其他独立系统中被发现,我们认为它可能比以前认为的更为普遍。

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