Rings E H, Boudreau F, Taylor J K, Moffett J, Suh E R, Traber P G
Division of Gastroenterology, Department of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Gastroenterology. 2001 Dec;121(6):1437-50. doi: 10.1053/gast.2001.29618.
BACKGROUND & AIMS: Cdx2 is critical in intestinal proliferation and differentiation. Modulation of Cdx2 function in response to cellular signaling is to be elucidated. We hypothesize that phosphorylation of the Cdx2 activation domain can modulate its function.
The Cdx2 activation domain was delineated in transient transfections using different portions of Cdx2 fused to the Gal4-DNA binding domain. In vivo phosphorylation was studied by metabolic labeling with (32)P-orthophosphate. To study a potential phosphorylation site, polyclonal antibodies were generated: CNL was raised against amino acids 54-66 of Cdx2 and P-Cdx2-S60 against the same epitope in which serine 60 was phosphorylated.
A critical region for transactivation resides within amino acids 60-70. Substitution of serine 60 with alanine reduces incorporation of (32)P-orthophosphate substantially. S60-phosphorylation decreases Cdx2 transactivation. Phosphorylation of serine 60 can be inhibited with the mitogen-activated protein kinase inhibitors PD98059 or UO126. P-Cdx2-S60 recognizes phosphorylated serine 60 mainly in proliferative compartment of the intestinal epithelial layer. In contrast, CNL recognizes Cdx2 predominantly in the differentiated compartment.
The Cdx2 activation domain is phosphorylated at serine 60 via the mitogen-activated protein kinase pathway. S60-phosphorylated and S60-nonphosphorylated Cdx2 have different transcriptional activity, as well as different spatial expression patterns in the intestinal epithelium.
Cdx2在肠道增殖和分化过程中至关重要。Cdx2功能如何响应细胞信号传导进行调节仍有待阐明。我们推测Cdx2激活域的磷酸化可调节其功能。
通过将Cdx2的不同部分与Gal4-DNA结合域融合进行瞬时转染来确定Cdx2激活域。通过用(32)P-正磷酸盐进行代谢标记来研究体内磷酸化。为了研究一个潜在的磷酸化位点,制备了多克隆抗体:CNL是针对Cdx2的氨基酸54 - 66产生的,而P-Cdx2-S60是针对丝氨酸60被磷酸化的相同表位产生的。
反式激活的关键区域位于氨基酸60 - 70内。将丝氨酸60替换为丙氨酸会显著减少(32)P-正磷酸盐的掺入。S60磷酸化降低Cdx2反式激活。丝氨酸60的磷酸化可被丝裂原活化蛋白激酶抑制剂PD98059或UO126抑制。P-Cdx2-S60主要在肠上皮层的增殖区识别磷酸化的丝氨酸60。相比之下,CNL主要在分化区识别Cdx2。
Cdx2激活域通过丝裂原活化蛋白激酶途径在丝氨酸60处被磷酸化。S60磷酸化的Cdx2和S60未磷酸化的Cdx2在转录活性以及肠上皮中的空间表达模式上均不同。