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N-Sulfation of Heparan Sulfate Regulates Early Branching Events in the Developing Mammary Gland

机译:N-硫酸乙酰肝素硫酸盐调节发育中的乳腺中的早期分支事件。

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摘要

Branching morphogenesis, a fundamental process in the development of epithelial organs (e.g. breast, kidney, lung, salivary gland, prostate, pancreas), is in part dependent on sulfation of heparan sulfate proteoglycans. Proper sulfation is mediated by biosynthetic enzymes, including exostosin-2 (Ext2), N-deacetylase/N-sulfotransferases and heparan sulfate O-sulfotransferases. Recent conditional knockouts indicate that whereas primary branching is dependent on heparan sulfate, other stages are dependent upon selective addition of N-sulfate and/or 2-O sulfation (Crawford, B .E., Garner, O. B., Bishop, J. R., Zhang, D. Y., Bush, K. T., Nigam, S. K., and Esko, J. D. (2010) PLoS One 5, e10691; Garner, O .B., Bush, K. T., Nigam, S .K., Yamaguchi, Y., Xu, D., Esko, J. D., and Nigam, S. K. (2011) Dev. Biol. 355, 394–403). Here, we analyzed the effect of deleting both Ndst2 and Ndst1. Whereas deletion of Ndst1 has no major effect on primary or secondary branching, deletion of Ndst2 appears to result in a mild increase in branching. When both genes were deleted, ductal growth was variably diminished (likely due to variable Cre-recombinase activity), but an overabundance of branched structures was evident irrespective of the extent of gland growth or postnatal age. “Hyperbranching” is an unusual phenotype. The effects on N-sulfation and growth factor binding were confirmed biochemically. The results indicate that N-sulfation or a factor requiring N-sulfation regulates primary and secondary branching events in the developing mammary gland. Together with previous work, the data indicate that different stages of ductal branching and lobuloalveolar formation are regulated by distinct sets of heparan sulfate biosynthetic enzymes in an appropriate growth factor context.
机译:分支形态发生是上皮器官(例如,乳房,肾脏,肺,唾液腺,前列腺,胰腺)发育的基本过程,部分取决于硫酸乙酰肝素蛋白聚糖的硫酸化。适当的硫酸盐化作用是由生物合成酶介导的,其中包括exostosin-2(Ext2),N-脱乙酰基酶/ N-磺基转移酶和硫酸乙酰肝素O-磺基转移酶。最近的条件敲除表明,虽然主要分支取决于硫酸乙酰肝素,但其他阶段取决于选择性添加N-硫酸盐和/或2-O硫酸盐(Crawford,B.E.,Garner,OB,Bishop,JR,Zhang, DY,Bush,KT,Nigam,SK和Esko,JD(2010)PLoS One 5,e10691; Garner,O.B.,Bush,KT,Nigam,S.K.,Yamaguchi,Y.,Xu,D. ,Esko,JD和Nigam,SK(2011)Dev。Biol。355,394–403)。在这里,我们分析了删除Ndst2和Ndst1的效果。 Ndst1的删除对主要或次要分支没有重大影响,而Ndst2的删除似乎导致分支的轻度增加。当两个基因都缺失时,导管的生长会有所减少(可能是由于Cre重组酶活性的变化),但是无论腺体的生长程度或出生后的年龄如何,分支结构的丰度都是明显的。 “超支化”是一种不常见的表型。生化证实了对N-硫酸化和生长因子结合的影响。结果表明,N-硫酸化或需要N-硫酸化的因子调节发育中的乳腺的一级和二级分支事件。与以前的工作一起,数据表明,在适当的生长因子环境中,不同组的硫酸乙酰肝素生物合成酶可调节导管分支和肺小泡形成的不同阶段。

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