Luck Ashley N, Yuan Xiaojing, Voronin Denis, Slatko Barton E, Hamza Iqbal, Foster Jeremy M
New England BioLabs, Incorporated, Genome Biology Division, Ipswich, Massachusetts, USA.
Department of Animal and Avian Sciences, University of Maryland, College Park, Maryland, USA; Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, Maryland, USA; and.
FASEB J. 2016 Oct;30(10):3501-3514. doi: 10.1096/fj.201600603R. Epub 2016 Jun 30.
Nematodes lack a heme biosynthetic pathway and must acquire heme from exogenous sources. Given the indispensable role of heme, this auxotrophy may be exploited to develop drugs that interfere with heme uptake in parasites. Although multiple heme-responsive genes (HRGs) have been characterized within the free-living nematode Caenorhabditis elegans, we have undertaken the first study of heme transport in Brugia malayi, a causative agent of lymphatic filariasis. Through functional assays in yeast, as well as heme analog, RNAi, and transcriptomic experiments, we have shown that the heme transporter B. malayi HRG-1 (BmHRG-1) is indeed functional in B. malayi In addition, BmHRG-1 localizes both to the endocytic compartments and cell membrane when expressed in yeast cells. Transcriptomic sequencing revealed that BmHRG-1, BmHRG-2, and BmMRP-5 (all orthologs of HRGs in C. elegans) are down-regulated in heme-treated B. malayi, as compared to non-heme-treated control worms. Likely because of short gene lengths, multiple exons, other HRGs in B. malayi (BmHRG-3-6) remain unidentified. Although the precise mechanisms of heme homeostasis in a nematode with the ability to acquire heme remains unknown, this study clearly demonstrates that the filarial nematode B. malayi is capable of transporting exogenous heme.-Luck, A. N., Yuan, X., Voronin, D., Slatko, B. E., Hamza, I., Foster, J. M. Heme acquisition in the parasitic filarial nematode Brugia malayi.
线虫缺乏血红素生物合成途径,必须从外源获取血红素。鉴于血红素的不可或缺作用,这种营养缺陷型可被用于开发干扰寄生虫血红素摄取的药物。尽管在自由生活的线虫秀丽隐杆线虫中已鉴定出多个血红素反应基因(HRGs),但我们首次对线虫马来布鲁线虫(淋巴丝虫病的病原体)的血红素转运进行了研究。通过酵母中的功能测定以及血红素类似物、RNA干扰和转录组实验,我们已证明血红素转运蛋白马来布鲁线虫HRG-1(BmHRG-1)在马来布鲁线虫中确实具有功能。此外,BmHRG-1在酵母细胞中表达时定位于内吞区室和细胞膜。转录组测序显示,与未用血红素处理的对照线虫相比,在经血红素处理的马来布鲁线虫中,BmHRG-1、BmHRG-2和BmMRP-5(均为秀丽隐杆线虫中HRGs的直系同源物)表达下调。可能由于基因长度短、外显子多,马来布鲁线虫中的其他HRGs(BmHRG-3 - 6)仍未被鉴定。尽管具有获取血红素能力的线虫中血红素稳态的确切机制尚不清楚,但这项研究清楚地表明丝虫马来布鲁线虫能够转运外源血红素。-勒克,A.N.,袁,X.,沃罗宁,D.,斯拉特科,B.E.,哈姆扎,I.,福斯特,J.M. 寄生丝虫马来布鲁线虫中的血红素获取