首页> 外文OA文献 >日本住血吸虫ゲノムにはレクチン様でヘム結合性のSEA(ウニ精子タンパク)ドメインを有する膜型あるいは分泌型のタンパクをコードする多重遺伝子族が存在する
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日本住血吸虫ゲノムにはレクチン様でヘム結合性のSEA(ウニ精子タンパク)ドメインを有する膜型あるいは分泌型のタンパクをコードする多重遺伝子族が存在する

机译:日本血吸虫基因组包含多基因家族,其编码具有凝集素样血红素结合sEa(海胆精子蛋白)结构域的膜或分泌蛋白。

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摘要

Background We previously identified a novel gene family dispersed in the genome of Schistosoma japonicum by retrotransposon-mediated gene duplication mechanism. Although many transcripts were identified, no homolog was readily identifiable from sequence information. Methodology/Principal Findings Here, we utilized structural homology modeling and biochemical methods to identify remote homologs, and characterized the gene products as SEA (sea-urchin sperm protein, enterokinase and agrin)-domain containing proteins. A common extracellular domain in this family was structurally similar to SEA-domain. SEA-domain is primarily a structural domain, known to assist or regulate binding to glycans. Recombinant proteins from three members of this gene family specifically interacted with glycosaminoglycans with high affinity, with potential implication in ligand acquisition and immune evasion. Similar approach was used to identify a heme-binding site on the SEA-domain. The heme-binding mode showed heme molecule inserted into a hydrophobic pocket, with heme iron putatively coordinated to two histidine axial ligands. Heme-binding properties were confirmed using biochemical assays and UV-visible absorption spectroscopy, which showed high affinity heme-binding (KD = 1.605×10−6 M) and cognate spectroscopic attributes of hexa-coordinated heme iron. The native proteins were oligomers, antigenic, and are localized on adult worm teguments and gastrodermis; major host-parasite interfaces and site for heme detoxification and acquisition. Conclusions The results suggest potential role, at least in the nucleation step of heme crystallization (hemozoin formation), and as receptors for heme uptake. Survival strategies exploited by parasites, including heme homeostasis mechanism in hemoparasites, are paramount for successful parasitism. Thus, assessing prospects for application in disease intervention is warranted.
机译:背景我们之前通过逆转录转座子介导的基因复制机制鉴定了一个分布在日本血吸虫基因组中的新基因家族。尽管鉴定出许多转录物,但是从序列信息中没有容易鉴定出同源物。方法论/主要发现在这里,我们利用结构同源性建模和生化方法来鉴定远程同源物,并将基因产物表征为包含SEA(海胆精子蛋白,肠激酶和凝集素)域的蛋白。该家族中的共同细胞外结构域在结构上类似于SEA结构域。 SEA结构域主要是结构域,已知可协助或调节与聚糖的结合。来自该基因家族三个成员的重组蛋白与糖胺聚糖特异性地高亲和力相互作用,对配体获得和免疫逃逸具有潜在的影响。使用类似的方法来识别SEA域上的血红素结合位点。血红素结合模式显示血红素分子插入疏水口袋,血红素铁被推定与两个组氨酸轴向配体配位。血红素结合特性已通过生化分析和紫外可见吸收光谱法得到证实,显示出高亲和力的血红素结合(KD = 1.605×10-6 M)和六配位血红素铁的同源光谱属性。天然蛋白是寡聚体,具有抗原性,位于成虫的蠕虫皮和胃真皮中。主要的宿主-寄生虫界面和血红素的解毒和获取场所。结论结果表明,至少在血红素结晶的成核步骤(血红素形成)中,以及作为血红素摄取的受体,其潜在作用。寄生虫利用的生存策略,包括血液寄生虫的血红素稳态机制,对于成功的寄生虫至为重要。因此,有必要评估在疾病干预中的应用前景。

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