Lakhter Alexander J, Lahm Tim, Broxmeyer Hal E, Naidu Samisubbu R
Department of Dermatology, Indiana University School of Medicine, Indianapolis, Indiana, 46202.
Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana, 46202.
J Cell Biochem. 2016 Apr;117(4):853-9. doi: 10.1002/jcb.25381. Epub 2015 Sep 22.
Hypoxia-inducible factor-1alpha (HIF1a) is a key transcriptional regulator that enables cellular metabolic adaptation to low levels of oxygen. Multiple mechanisms, including lysosomal degradation, control the levels of HIF1a protein. Here we show that HIF1a protein degradation is resistant to lysosomal inhibition and that HIF1a is associated with the Golgi compartment in melanoma cells. Although pharmacological inhibitors of prolyl hydroxylation, neddylation and the proteasome inhibited degradation of HIF1a, attenuation of lysosomal activity with chloroquine did not alter the levels of HIF1a or its association with Golgi. Pharmacological disruption of Golgi resulted in nuclear accumulation of HIF1a. However, blockade of ER-Golgi protein transport in hypoxia reduced the transcript levels of HIF1a target genes. These findings suggest a possible role for the oxygen-dependent protein folding process from the ER-Golgi compartment in fine-tuning HIF1a transcriptional output.
缺氧诱导因子-1α(HIF1a)是一种关键的转录调节因子,可使细胞代谢适应低氧水平。包括溶酶体降解在内的多种机制控制着HIF1a蛋白的水平。在这里,我们表明HIF1a蛋白降解对溶酶体抑制具有抗性,并且HIF1a与黑色素瘤细胞中的高尔基体区室相关。尽管脯氨酰羟化、NEDD化和蛋白酶体的药理学抑制剂抑制了HIF1a的降解,但用氯喹减弱溶酶体活性并未改变HIF1a的水平或其与高尔基体的关联。高尔基体的药理学破坏导致HIF1a在细胞核中积累。然而,缺氧条件下内质网-高尔基体蛋白转运的阻断降低了HIF1a靶基因的转录水平。这些发现表明内质网-高尔基体区室中氧依赖性蛋白折叠过程在微调HIF1a转录输出中可能发挥作用。