Magnúsdóttir Erna, Kalachikov Sergey, Mizukoshi Koji, Savitsky David, Ishida-Yamamoto Akemi, Panteleyev Andrey A, Calame Kathryn
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Proc Natl Acad Sci U S A. 2007 Sep 18;104(38):14988-93. doi: 10.1073/pnas.0707323104. Epub 2007 Sep 10.
The cornified layer is a compacted lattice of lipid-embedded corneocytes that provides an organism's barrier to the external environment. Cornification is the final differentiative step for epidermal keratinocytes and involves dramatic cell condensation before death. Using conditional gene deletion in mice, we identified the transcriptional repressor Blimp-1 (B lymphocyte-induced maturation protein-1) as an important regulator of keratinocyte transition from the granular to the cornified layer. More than 250 genes are misregulated in conditional knockout epidermis, including those encoding transcription factors, signal transduction components, proteinases, and enzymes involved in lipid metabolism. Steady-state mRNA and ChIP analyses of a subset of these genes provide evidence that nfat5, fos, prdm1, and dusp16 are novel direct targets of Blimp-1. Identifying nfat5 as a target of Blimp-1 repression indicates that cornification involves suppression of normal osmotic regulation in granular cells. Consistently, conditional knockout mice have delayed barrier formation as embryos, enlarged granular layer cells and corneocytes, and a morphologically abnormal cornified layer. These studies provide insight into cornification, identifying transcriptional regulatory circuitry and indicating the importance of blocking osmotic homeostasis.
角质层是由嵌入脂质的角质形成细胞构成的紧密晶格结构,为机体提供对外界环境的屏障。角质化是表皮角质形成细胞的最终分化步骤,涉及细胞在死亡前的显著浓缩。通过在小鼠中进行条件性基因缺失,我们确定转录抑制因子Blimp-1(B淋巴细胞诱导成熟蛋白-1)是角质形成细胞从颗粒层向角质层转变的重要调节因子。在条件性敲除表皮中,超过250个基因的表达失调,包括那些编码转录因子、信号转导成分、蛋白酶以及参与脂质代谢的酶的基因。对这些基因的一个子集进行稳态mRNA和染色质免疫沉淀分析,结果表明nfat5、fos、prdm1和dusp16是Blimp-1的新直接靶点。将nfat5鉴定为Blimp-1抑制的靶点表明角质化涉及对颗粒细胞正常渗透压调节的抑制。一致地,条件性敲除小鼠胚胎的屏障形成延迟,颗粒层细胞和角质形成细胞增大,角质层形态异常。这些研究为角质化提供了深入了解,确定了转录调控回路,并表明阻断渗透稳态的重要性。