van de Wetering M, Oosterwegel M, van Norren K, Clevers H
Department of Immunology, University Hospital Utrecht, The Netherlands.
EMBO J. 1993 Oct;12(10):3847-54. doi: 10.1002/j.1460-2075.1993.tb06063.x.
Previous studies in lymphocytes have described two DNA-binding HMG box proteins, TCF-1 and LEF-1, with affinity for the A/TA/TCAAAG motif found in several T cell-specific enhancers. Evaluation of cotransfection experiments in non-T cells and the observed inactivity of an AACAAAG concatamer in the TCF-1/LEF-1-expressing T cell line BW5147, led us to conclude that these two proteins did not mediate the observed enhancer effect. We therefore searched for additional HMG box proteins. By a PCR-aided strategy, we cloned Sox-4, a gene with homology to the HMG box region of the sex determining gene SRY. Sox-4 was expressed in T and pre-B lymphocyte lines and in the murine thymus. Significantly, BW5147 T cells did not express Sox-4. Recombinant Sox-4 bound with high affinity (Kd 3 x 10(-11) M) to the minor groove of the AACAAAG motif, most likely contacting all seven base pairs. In contrast with observations on TCF-1 and LEF-1, cotransfection with Sox-4 unveiled a transactivating capacity, which mapped to its serine-rich C terminus. This region remained functional upon grafting onto a GAL4 DNA-binding domain. Sox-4 is thus the first 'classical' transcription factor in the Sox gene family with separable DNA-binding and transactivation domains. Our observations indicate that a detailed understanding of T cell-specific gene control must integrate the concerted activity of at least three tissue-specific HMG box genes.
先前针对淋巴细胞的研究描述了两种DNA结合HMG盒蛋白,即TCF-1和LEF-1,它们对在几种T细胞特异性增强子中发现的A/TA/TCAAAG基序具有亲和力。对非T细胞中共转染实验的评估以及在表达TCF-1/LEF-1的T细胞系BW5147中观察到的AACAAAG串联体无活性,使我们得出结论,这两种蛋白并未介导所观察到的增强子效应。因此,我们寻找其他HMG盒蛋白。通过一种PCR辅助策略,我们克隆了Sox-4,这是一个与性别决定基因SRY的HMG盒区域具有同源性的基因。Sox-4在T淋巴细胞系、前B淋巴细胞系和小鼠胸腺中表达。值得注意的是,BW5147 T细胞不表达Sox-4。重组Sox-4以高亲和力(Kd 3×10⁻¹¹ M)结合到AACAAAG基序的小沟,很可能与所有七个碱基对都有接触。与对TCF-1和LEF-1的观察结果相反,与Sox-4共转染揭示了一种反式激活能力,该能力定位于其富含丝氨酸的C末端。将该区域嫁接到GAL4 DNA结合结构域上时仍保持功能。因此,Sox-4是Sox基因家族中第一个具有可分离的DNA结合结构域和反式激活结构域的“经典”转录因子。我们的观察结果表明,对T细胞特异性基因调控的详细理解必须整合至少三个组织特异性HMG盒基因的协同活性。