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Genome-Wide Mapping of Targets of Maize Histone Deacetylase HDA101 Reveals Its Function and Regulatory Mechanism during Seed Development

机译:玉米组蛋白脱乙酰基酶HDA101靶标的全基因组定位揭示了其在种子发育过程中的功能和调控机制

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Histone deacetylases (HDACs) regulate histone acetylation levels by removing the acetyl group from lysine residues. The maize (Zea mays) HDAC HDA101 influences several aspects of development, including kernel size; however, the molecular mechanism by which HDA101 affects kernel development remains unknown. In this study, we find that HDA101 regulates the expression of transfer cell-specific genes, suggesting that their misregulation may be associated with the defects in differentiation of endosperm transfer cells and smaller kernels observed in hda101 mutants. To investigate HDA101 function during the early stages of seed development, we performed genome-wide mapping of HDA101 binding sites. We observed that, like mammalian HDACs, HDA101 mainly targets highly and intermediately expressed genes. Although loss of HDA101 can induce histone hyperacetylation of its direct targets, this often does not involve variation in transcript levels. A small subset of inactive genes that must be negatively regulated during kernel development is also targeted by HDA101 and its loss leads to hyperacetylation and increased expression of these inactive genes. Finally, we report that HDA101 interacts with members of different chromatin remodeling complexes, such as NFC103/MSI1 and SNL1/SIN3-like protein corepressors. Taken together, our results reveal a complex genetic network regulated by HDA101 during seed development and provide insight into the different mechanisms of HDA101-mediated regulation of transcriptionally active and inactive genes.
机译:组蛋白脱乙酰基酶(HDAC)通过去除赖氨酸残基上的乙酰基来调节组蛋白的乙酰化水平。玉米(Zea mays)HDAC HDA101影响发育的几个方面,包括籽粒大小;然而,HDA101影响内核发育的分子机制仍然未知。在这项研究中,我们发现HDA101调节转移细胞特异性基因的表达,这表明它们的失调可能与在hda101突变体中观察到的胚乳转移细胞分化和较小颗粒的缺陷有关。为了研究种子发育早期的HDA101功能,我们进行了HDA101结合位点的全基因组定位。我们观察到,与哺乳动物HDAC一样,HDA101主要靶向高度和中间表达的基因。尽管HDA101的丢失可以诱导其直接靶标的组蛋白超乙酰化,但这通常不涉及转录水平的变化。 HDA101还可靶向一小部分在内核发育过程中必须受到负调控的非活性基因,其丢失会导致过度乙酰化并增加这些非活性基因的表达。最后,我们报道了HDA101与不同染色质重塑复合物(例如NFC103 / MSI1和SNL1 / SIN3样蛋白共加压物)的成员相互作用。两者合计,我们的结果揭示了在种子发育过程中受HDA101调控的复杂遗传网络,并提供了对HDA101介导的转录活性和非活性基因调控的不同机制的见解。

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