Davis J N, Bargmann W, Bose H R
Department of Microbiology, University of Texas, Austin 78712.
Oncogene. 1990 Aug;5(8):1109-15.
The c-rel proto-oncogene product has been identified as a 75 kDa protein expressed in lymphoid cells transformed by REV-T and Marek's disease virus. A 4.0 kb c-rel transcript is expressed in the bursa, spleen and thymus of chickens with highest levels of expression at 10 days post hatch. Using antiserum specific for the v-rel oncogene product, P75c-rel has been precipitated from [35S]methionine-labeled extracts of bursal, splenic and thymic lymphocytes. Additionally, proteins with the molecular mass of 40 kDa, 115 kDa, and 124 kDa co-immunoprecipitate. These proteins co-migrate with the proteins found associated with pp59v-rel in REV-T transformed lymphoid cells. Antiserum specific for pp40, the most abundant cellular protein associated with pp59v-rel, co-precipitates p75c-rel verifying the existence of p75c-rel/pp40 complexes in normal avian lymphocytes. Antiserum directed against the amino-terminal region of pp59v-rel fails to precipitate native p75c-rel complexes from normal lymphoid cells. In the presence of ionic detergents, antisera directed against the amino, middle and carboxy-regions precipitate equivalent amounts of p75v-rel. These results suggest that the amino-terminal region of p75c-rel is active in binding other proteins or is inaccessible to the antiserum due to the conformation of p75c-rel in the complex. Two p75c-rel complexes exist in the cytosol of normal lymphocytes. The most abundant complex contains 60% of the p75c-rel associated with p115 and p124. The remaining p75c-rel is associated with pp40.
c-rel原癌基因产物已被鉴定为一种75kDa的蛋白质,在由REV-T和马立克氏病病毒转化的淋巴细胞中表达。一个4.0kb的c-rel转录本在鸡的法氏囊、脾脏和胸腺中表达,在孵化后10天表达水平最高。使用针对v-rel癌基因产物的抗血清,已从法氏囊、脾脏和胸腺淋巴细胞的[35S]甲硫氨酸标记提取物中沉淀出P75c-rel。此外,分子量为40kDa、115kDa和124kDa的蛋白质共免疫沉淀。这些蛋白质与在REV-T转化的淋巴细胞中发现的与pp59v-rel相关的蛋白质共迁移。针对与pp59v-rel相关的最丰富细胞蛋白pp40的抗血清共沉淀p75c-rel,证实了正常禽淋巴细胞中存在p75c-rel/pp40复合物。针对pp59v-rel氨基末端区域的抗血清无法从正常淋巴细胞中沉淀天然p75c-rel复合物。在离子去污剂存在的情况下,针对氨基、中间和羧基区域的抗血清沉淀等量的p75v-rel。这些结果表明,p75c-rel氨基末端区域在结合其他蛋白质方面具有活性,或者由于复合物中p75c-rel的构象而无法被抗血清识别。正常淋巴细胞的细胞质中存在两种p75c-rel复合物。最丰富的复合物包含与p115和p124相关的60%的p75c-rel。其余的p75c-rel与pp40相关。