Frasca Daniela, Landin Ana Marie, Alvarez Juan P, Blackshear Perry J, Riley Richard L, Blomberg Bonnie B
Department of Microbiology and Immunology, University of Miami Miller School of Medicine, Miami, FL 33101, USA.
J Immunol. 2007 Jul 15;179(2):918-27. doi: 10.4049/jimmunol.179.2.918.
We have previously shown that the E2A-encoded transcription factor E47, which regulates class switch in splenic B cells, is down-regulated in old B cells, due to increased E47 mRNA decay. At least part of the decreased stability of E47 mRNA seen in aged B cells is mediated by proteins. We have herein looked at the specific proteins responsible for the degradation of the E47 mRNA and found that tristetraprolin (TTP), a physiological regulator of mRNA expression and stability, is involved in the degradation of the E47 mRNA. Although many studies have characterized TTP expression and function in macrophages, monocytes, mast cells, and T cells, little is known about the expression and function of TTP in primary B cells. We show herein that TTP mRNA and protein expression are induced by LPS in B cells from young and old mice, the levels of TTP in old B cells always being higher than those in young B cells. Although TTP mRNA is degraded at a significantly higher rate in old B cells, TTP mRNA expression is higher in old than in young, likely due to its increased transcription. Like in macrophages, TTP protein expression and function in B cells are dependent upon p38 MAPK. We found that there is less phospho-TTP (inactive form), as well as phospho-p38, in old than in young splenic-activated B cells. This is the first report showing that TTP is involved in the degradation of the E47 mRNA and is up-regulated in old B cells.
我们之前已经表明,E2A编码的转录因子E47可调节脾脏B细胞的类别转换,由于E47 mRNA降解增加,其在衰老B细胞中表达下调。衰老B细胞中E47 mRNA稳定性降低至少部分是由蛋白质介导的。我们在此研究了负责E47 mRNA降解的特定蛋白质,发现锌指蛋白36(TTP)这种mRNA表达和稳定性的生理调节因子参与了E47 mRNA的降解。尽管许多研究已经描述了TTP在巨噬细胞、单核细胞、肥大细胞和T细胞中的表达和功能,但对于TTP在原代B细胞中的表达和功能知之甚少。我们在此表明,TTP mRNA和蛋白表达在年轻和年老小鼠的B细胞中被脂多糖(LPS)诱导,年老B细胞中TTP的水平总是高于年轻B细胞。尽管TTP mRNA在年老B细胞中的降解速率明显更高,但年老B细胞中TTP mRNA的表达高于年轻B细胞,这可能是由于其转录增加。与巨噬细胞一样,B细胞中TTP蛋白的表达和功能依赖于p38丝裂原活化蛋白激酶(MAPK)。我们发现,与年轻的脾脏活化B细胞相比,年老的脾脏活化B细胞中磷酸化TTP(无活性形式)以及磷酸化p38更少。这是首次报道表明TTP参与E47 mRNA的降解且在年老B细胞中上调。