Jippo T, Lee Y M, Katsu Y, Tsujino K, Morii E, Kim D K, Kim H M, Kitamura Y
Department of Pathology, Osaka University Medical School, Suita, Japan.
Blood. 1999 Mar 15;93(6):1942-50.
The mi locus encodes a member of the basic-helix-loop-helix-leucine zipper (bHLH-Zip) protein family of transcription factors (hereafter called MITF). We reported that expression of the mouse mast cell protease 5 (MMCP-5) and MMCP-6 genes were deficient in cultured mast cells (CMC) derived from mutant mice of mi/mi genotype. Despite the reduced expression of both MMCP-5 and MMCP-6, their regulation mechanisms were different. Because MMCP-5 is a chymase and MMCP-6 a tryptase, there was a possibility that the difference in regulation mechanisms was associated with their different characteristics as proteases. We compared the regulation mechanisms of another chymase, MMCP-4, with those of MMCP-5 and MMCP-6. The expression of the MMCP-4 gene was also deficient in mi/mi CMC. The overexpression of the normal (+) MITF but not of mi-MITF normalized the poor expression of the MMCP-4 gene in mi/mi CMC, indicating the involvement of +-MITF in transactivation of the MMCP-4 gene. Although MMCP-4 is chymase as MMCP-5, the regulation of MMCP-4 expression was more similar to MMCP-6 than to MMCP-5. We also showed the deficient expression of granzyme B and cathepsin G genes in mi/mi CMC. Genes encoding granzyme B, cathepsin G, MMCP-4, and MMCP-5 are located on chromosome 14. Because all these genes showed deficient expression in mi/mi CMC, there is a possibility that MITF might regulate the expression of these genes through a locus control region.
mi基因座编码一种转录因子的碱性螺旋-环-螺旋-亮氨酸拉链(bHLH-Zip)蛋白家族成员(以下称为MITF)。我们报道,在源自mi/mi基因型突变小鼠的培养肥大细胞(CMC)中,小鼠肥大细胞蛋白酶5(MMCP-5)和MMCP-6基因的表达缺失。尽管MMCP-5和MMCP-6的表达均降低,但其调控机制不同。由于MMCP-5是一种糜蛋白酶而MMCP-6是一种组织蛋白酶,因此调控机制的差异有可能与其作为蛋白酶的不同特性相关。我们比较了另一种糜蛋白酶MMCP-4与MMCP-5和MMCP-6的调控机制。MMCP-4基因在mi/mi CMC中的表达也缺失。正常(+)MITF而非mi-MITF的过表达使mi/mi CMC中MMCP-4基因的低表达恢复正常,表明+-MITF参与了MMCP-4基因的反式激活。尽管MMCP-4与MMCP-5一样是糜蛋白酶,但MMCP-4表达的调控与MMCP-6更相似,而与MMCP-5不同。我们还显示了mi/mi CMC中颗粒酶B和组织蛋白酶G基因的表达缺失。编码颗粒酶B、组织蛋白酶G、MMCP-4和MMCP-5的基因位于14号染色体上。由于所有这些基因在mi/mi CMC中均显示表达缺失,因此有可能MITF可能通过一个基因座控制区来调控这些基因的表达。