Department of Molecular Microbiology and Immunology, Oregon Health & Science University, Portland, Oregon 97239, USA.
J Biol Chem. 2013 Aug 2;288(31):22721-33. doi: 10.1074/jbc.M113.483461. Epub 2013 Jun 13.
The LmxGT1 glucose transporter is selectively targeted to the flagellum of the kinetoplastid parasite Leishmania mexicana, but the mechanism for targeting this and other flagella-specific membrane proteins among the Kinetoplastida is unknown. To address the mechanism of flagellar targeting, we employed in vivo cross-linking, tandem affinity purification, and mass spectrometry to identify a novel protein, KHARON1 (KH1), which is important for the flagellar trafficking of LmxGT1. Kh1 null mutant parasites are strongly impaired in flagellar targeting of LmxGT1, and trafficking of the permease was arrested in the flagellar pocket. Immunolocalization revealed that KH1 is located at the base of the flagellum, within the flagellar pocket, where it associates with the proximal segment of the flagellar axoneme. We propose that KH1 mediates transit of LmxGT1 from the flagellar pocket into the flagellar membrane via interaction with the proximal portion of the flagellar axoneme. KH1 represents the first component involved in flagellar trafficking of integral membrane proteins among parasitic protozoa. Of considerable interest, Kh1 null mutants are strongly compromised for growth as amastigotes within host macrophages. Thus, KH1 is also important for the disease causing stage of the parasite life cycle.
LmxGT1 葡萄糖转运蛋白被选择性地靶向到动基体寄生虫 Leishmania mexicana 的鞭毛中,但针对这种和其他动基体中鞭毛特异性膜蛋白的靶向机制尚不清楚。为了解决鞭毛靶向的机制,我们采用体内交联、串联亲和纯化和质谱法来鉴定一种新的蛋白 KHARON1(KH1),它对 LmxGT1 的鞭毛运输很重要。Kh1 缺失突变体寄生虫在 LmxGT1 的鞭毛靶向中受到强烈影响,并且通透酶的运输在鞭毛囊中被阻断。免疫定位显示 KH1 位于鞭毛的基部,在鞭毛囊中,它与鞭毛轴突的近端段结合。我们提出 KH1 通过与鞭毛轴突的近端部分相互作用,介导 LmxGT1 从鞭毛囊中进入鞭毛膜的运输。KH1 代表了寄生虫原生动物中完整膜蛋白鞭毛运输的第一个组成部分。值得注意的是,Kh1 缺失突变体在宿主巨噬细胞内作为无鞭毛体生长时受到严重损害。因此,KH1 对寄生虫生命周期中的致病阶段也很重要。