研究报告

Muted蛋白介导CD63在嗜铬细胞大致密核粒的定位

展开
  • 首都医科大学附属北京儿童医院,北京市儿科研究所医学遗传中心,教育部儿科重大疾病研究重点实验室,北京 100045
郝振华,博士,助理研究员,研究方向:医学遗传学与细胞生物学。E-mail: nanshayu@163.com

收稿日期: 2016-05-03

  修回日期: 2016-06-06

  网络出版日期: 2016-06-21

基金资助

北京市自然科学基金项目(编号:5164032)资助

Muted protein is involved in the targeting of CD63 to large dense-core vesicles of chromaffin cells

Expand
  • Key Laboratory of Major Diseases in Children, Ministry of Education, Center for Medical Genetics, Beijing Pediatric Research Institute, Beijing Children’s Hospital, Capital Medical University, Beijing 100045, China

Received date: 2016-05-03

  Revised date: 2016-06-06

  Online published: 2016-06-21

Supported by

Supported by Beijing Natural Science Foundation (No; 5164032)

摘要

大致密核心颗粒(Large dense-core vesicles,LDCVs)是一种溶酶体相关细胞器(Lysosome-related organelles,LROs),在细胞受到刺激时快速释放其内含物,从而调节机体生长发育、物质代谢和能量代谢等,维持机体的稳态。Muted蛋白是溶酶体相关细胞器生物发生复合体-1(Biogenesis of lysosomal organelles complex-1,BLOC-1)的一个亚基,参与调控溶酶体和多种细胞特异性LROs的生物学发生。四联体跨膜蛋白CD63最初被定位在内体-溶酶体系统,后来发现它也参与部分LROs膜的组成。CD63是否存在于LDCVs尚不清楚,其靶向运输过程是否依赖Muted蛋白也不明确。本研究以肾上腺嗜铬细胞为细胞模型,采用荧光共定位、活细胞追踪和密度梯度离心等实验鉴定CD63蛋白为LDCVs的膜组分,并探讨了其生物学功能。活细胞实验显示CD63-YFP特异性定位在NPY-dsRed标记的LDCVs上,并动态参与LDCVs膜的组成;密度梯度离心实验表明高密度区的CD63与LDCVs的标记蛋白VMAT1共同出峰;Muted蛋白缺乏的小鼠(Bloc1s5基因突变)是一种理想的Hermansky-Pudlak综合征(HPS)小鼠模型, 免疫印迹实验显示该突变体小鼠肾上腺组织中CD63蛋白含量明显减少,暗示Muted蛋白可能参与CD63的分选。以上结果表明CD63是LDCVs的膜成分,CD63在胞内的稳态水平依赖于Muted蛋白,为HPS的病理发生机制提供一定的理论依据。

本文引用格式

郝振华, 李巍 . Muted蛋白介导CD63在嗜铬细胞大致密核粒的定位[J]. 遗传, 2016 , 38(8) : 718 -723 . DOI: 10.16288/j.yczz.16-156

Abstract

Large dense-core vesicles (LDCVs) are characterized as a class of lysosome-related organelles (LROs), which undergo regulated release and play important roles in development, metabolism and homeostasis. The Muted protein is a subunit of the biogenesis of lysosome-related organelles complex-1 (BLOC-1), which functions in the biogenesis of lysosomes and LROs. CD63 is a membrane component of lysosomes and LROs. Whether and how CD63 is sorted into LDCVs is largely unknown. In this study, we aim to identify the localization of CD63 in chromaffin cells by colocalization, living cell imaging and cell fractionation. We found that a proportion of CD63-YFP colocalized with NPY-dsRed labeled LDCVs. By sucrose density gradient fractionation, a proportion of CD63 was found to be highly enriched in LDCVs fractions. The Muted mutant mouse is a model of Hermansky-Pudlak syndrome (HPS). We also found that the level of CD63 was significantly decreased in Muted-deficient adrenal glands, suggesting that the Muted protein is important for the steady-state level of CD63. Our results suggest that CD63 is a membrane component of LDCVs and the stability of CD63 is dependent on the Muted protein, which provides a clue to the pathogenesis of LRO defects in HPS.

参考文献

[1] Kim T, Gondré-Lewis MC, Arnaoutova I, Loh YP. Dense-core secretory granule biogenesis. Physiology (Bethesda) , 2006, 21(2): 124-133.
[2] Crivellato E, Nico B, Ribatti D. The chromaffin vesicle: advances in understanding the composition of a versatile, multifunctional secretoryorganelle. Anat Rec (Hoboken) , 2008, 291(12): 1587-1602.
[3] Hook V, Funkelstein L, Lu D, Bark S, Wegrzyn J, Hwang SR. Proteases for processing proneuropeptides into peptide neurotransmitters and hormones. Annu Rev Pharmacol Toxicol , 2008, 48: 393-423.
[4] Fei H, Grygoruk A, Brooks ES, Chen A, Krantz DE. Trafficking of vesicular neurotransmitter transporters. Traffic , 2008, 9(9): 1425-1436.
[5] Matsuoka H, Harada K, Nakamura J, Fukuda M, Inoue M. Differential distribution of synaptotagmin-1, -4, -7, and -9 in rat adrenal chromaffin cells. Cell Tissue Res , 2011, 344(1): 41-50.
[6] Chang CW, Hui EF, Bai JH, Bruns D, Chapman ER, Jackson MB. A structural role for the synaptobrevin 2 transmembrane domain in dense-core vesicle fusion pores. J Neurosci , 2015, 35(14): 5772-5780.
[7] Li TM, Lan WJ, Huang C, Zhang C, Liu XM. Establishment and identification of the near-infrared fluorescence labeled exosomes in breast cancer cell lines. Hereditas (Beijing) , 2016, 38(5): 427-435. 李泰明, 蓝文俊, 黄灿, 张春, 刘晓玫. 近红外荧光蛋白标记乳腺癌细胞外泌体的构建及鉴定. 遗传, 2016, 38(5): 427-435.
[8] Mantegazza AR, Barrio MM, Moutel S, Bover L, Weck M, Brossart P, Teillaud JL, Mordoh J. CD63 tetraspanin slows down cell migration and translocates to the endosomallysosomal-MIICs route after extracellular stimuli in human immature dendritic cells. Blood , 2004, 104(4): 1183- 1190.
[9] Zhang Z, Li W. Formation and function of Weibel- Palade bodies. Hereditas (Beijing) , 2009, 31(9): 882-888. 张喆, 李巍. Weibel-Palade小体形成和功能研究进展. 遗传, 2009, 31(9): 882-888.
[10] Vischer UM, Wagner DD. CD63 is a component of Weibel-Palade bodies of human endothelial cells. Blood , 1993, 82(4): 1184-1191.
[11] Nishibori M, Cham B, McNicol A, Shalev A, Jain N, Gerrard JM. The protein CD63 is in platelet dense granules, is deficient in a patient with Hermansky-Pudlak syndrome, and appears identical to granulophysin. J Clin Invest , 1993, 91(4): 1775-1782.
[12] Pols MS, Klumperman J. Trafficking and function of the tetraspanin CD63. Exp Cell Res , 2009, 315(9): 1584-1592.
[13] Wei AH, Li W. Hermansky-Pudlak syndrome: pigmentary and non-pigmentary defects and their pathogenesis. Pigment Cell Melanoma Res , 2013, 26(2): 176-192.
[14] Hao ZH, Li W. Cellular functions of the lysosomal transport. Chin Bull Life Sci , 2010, 22(11): 1138-1146. 郝振华, 李巍. 内体—溶酶体运输及其细胞功能. 生命科学, 2010, 22(11): 1138-1146.
[15] Hao ZH, Wei LS, Feng YQ, Chen XW, Du W, Ma J, Zhou Z, Chen LY, Li W. Impaired maturation of large dense-core vesicles in muted-deficient adrenal chromaffin cells. J Cell Sci , 2015, 128(7): 1365-1374.
[16] Zhang Q, Li W, Novak EK, Karim A, Mishra VS, Kingsmore SF, Roe BA, Suzuki T, Swank RT. The gene for the muted ( mu ) mouse, a model for Hermansky-Pudlak syndrome, defines a novel protein which regulates vesicle trafficking. Hum Mol Genet , 2002, 11(6): 697-706.
[17] Flannery AR, Czibener C, Andrews NW. Palmitoylation-dependent association with CD63 targets the Ca 2+ sensor synaptotagmin VII to lysosomes. J Cell Biol , 2010, 191(3): 599-613.
[18] van Niel G, Charrin S, Simoes S, Romao M, Rochin L, Saftig P, Marks MS, Rubinstein E, Raposo G. The tetraspanin CD63 regulates ESCRT-independent and -dependent endosomal sorting during melanogenesis. Dev Cell , 2011, 21(4): 708-721.
[19] Källquist L, Hansson M, Persson AM, Janssen H, Calafat J, Tapper H, Olsson I. The tetraspanin CD63 is involved in granule targeting of neutrophil elastase. Blood , 2008, 112(8): 3444-3454.
(责任编委: 史岸冰)
文章导航

/