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MIT 家族转录因子在免疫细胞功能中的作用。

MiT Family Transcriptional Factors in Immune Cell Functions.

机构信息

Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea.

These authors contributed equally to this work.

出版信息

Mol Cells. 2021 May 31;44(5):342-355. doi: 10.14348/molcells.2021.0067.

Abstract

The microphthalmia-associated transcription factor family (MiT family) proteins are evolutionarily conserved transcription factors that perform many essential biological functions. In mammals, the MiT family consists of MITF (microphthalmia-associated transcription factor or melanocyte-inducing transcription factor), TFEB (transcription factor EB), TFE3 (transcription factor E3), and TFEC (transcription factor EC). These transcriptional factors belong to the basic helix-loop-helix-leucine zipper (bHLH-LZ) transcription factor family and bind the E-box DNA motifs in the promoter regions of target genes to enhance transcription. The best studied functions of MiT proteins include lysosome biogenesis and autophagy induction. In addition, they modulate cellular metabolism, mitochondria dynamics, and various stress responses. The control of nuclear localization via phosphorylation and dephosphorylation serves as the primary regulatory mechanism for MiT family proteins, and several kinases and phosphatases have been identified to directly determine the transcriptional activities of MiT proteins. In different immune cell types, each MiT family member is shown to play distinct or redundant roles and we expect that there is far more to learn about their functions and regulatory mechanisms in host defense and inflammatory responses.

摘要

小眼畸形相关转录因子家族(MiT 家族)蛋白是进化上保守的转录因子,它们具有许多重要的生物学功能。在哺乳动物中,MiT 家族包括 MITF(小眼畸形相关转录因子或黑素细胞诱导转录因子)、TFEB(转录因子 EB)、TFE3(转录因子 E3)和 TFEC(转录因子 EC)。这些转录因子属于碱性螺旋-环-螺旋亮氨酸拉链(bHLH-LZ)转录因子家族,结合靶基因启动子区域的 E 盒 DNA 基序,增强转录。MiT 蛋白的研究最充分的功能包括溶酶体发生和自噬诱导。此外,它们还调节细胞代谢、线粒体动力学和各种应激反应。通过磷酸化和去磷酸化控制核定位是 MiT 家族蛋白的主要调节机制,已经确定了几种激酶和磷酸酶来直接决定 MiT 蛋白的转录活性。在不同的免疫细胞类型中,每个 MiT 家族成员都表现出不同或冗余的作用,我们预计,在宿主防御和炎症反应中,MiT 家族成员的功能和调节机制还有待进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5925/8175148/7f25471aa3ff/molce-44-5-342-f1.jpg

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