Hornyak Thomas J, Jiang Shunlin, Guzmán Esther A, Scissors Beth N, Tuchinda Chinisada, He Hongbin, Neville James D, Strickland Faith M
Dermatology Branch, Center for Cancer Research, National Cancer Institute, NIH, Bethesda, MD, USA.
Pigment Cell Melanoma Res. 2009 Jun;22(3):307-18. doi: 10.1111/j.1755-148X.2009.00551.x. Epub 2009 Feb 3.
Microphthalmia-associated transcription factor (Mitf) is essential for melanocyte development and function and regulates anti-apoptotic Bcl2 expression. We hypothesized that cellular deficiency of Mitf can influence melanocyte survival in response to ultraviolet (UV) radiation. Primary melanocyte cultures were prepared from neonatal wild-type mice and congenic animals heterozygous for Mitf mutations Mitf (mi-vga9/+) and Mitf(Mi-wh/+) and exposed to UV irradiation. Wild-type melanocytes were more resistant to UV-induced apoptosis than melanocytes partially deficient in Mitf activity, as determined by relative levels of intracellular melanin and relative activation of Mitf target genes Tyr, Tyrp1, Dct, and Cdk2. Comparative experiments with wild-type cells and congenic albino melanocytes demonstrated that these differences are not due to differences in melanin content, implicating Mitf as a primary determinant of UV-dependent melanocyte survival. Mitf activity correlated directly with resistance to UV-induced apoptosis in melanocytes. Mitf was important not only for regulating the expression of anti-apoptotic Bcl-2 following UV irradiation, but also the expression of the pro-apoptotic BH3-only Bad protein and activation of the extrinsic apoptotic pathway. Hence, Mitf is a multifaceted regulator of UV-induced apoptosis in melanocytes.
小眼畸形相关转录因子(Mitf)对于黑素细胞的发育和功能至关重要,并调节抗凋亡蛋白Bcl2的表达。我们推测,Mitf的细胞缺陷可能会影响黑素细胞对紫外线(UV)辐射的反应能力。从新生野生型小鼠以及Mitf突变(Mitf(mi-vga9/+)和Mitf(Mi-wh/+))的同基因杂合动物中制备原代黑素细胞培养物,并使其暴露于紫外线辐射下。通过细胞内黑色素的相对水平以及Mitf靶基因Tyr、Tyrp1、Dct和Cdk2的相对激活情况来确定,野生型黑素细胞比Mitf活性部分缺陷的黑素细胞对紫外线诱导的凋亡更具抗性。野生型细胞与同基因白化病黑素细胞的对比实验表明,这些差异并非由于黑色素含量的不同,这表明Mitf是紫外线依赖性黑素细胞存活的主要决定因素。Mitf活性与黑素细胞对紫外线诱导凋亡的抗性直接相关。Mitf不仅对于紫外线照射后抗凋亡蛋白Bcl-2的表达调节很重要,而且对于促凋亡的仅含BH3结构域的Bad蛋白的表达以及外源性凋亡途径的激活也很重要。因此,Mitf是黑素细胞中紫外线诱导凋亡的多方面调节因子。