血色素蛋白在代谢和配子细胞发生中的作用的证据。

MalariaWorld journal Pub Date : 2017-08-01 eCollection Date: 2017-01-01
Ghazi A Jamjoom
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引用次数: 0

摘要

血色素通常被认为是一种废物沉积物,其形成的唯一目的是脱毒由疟原虫消化血红蛋白产生的游离血红素。然而,在脊椎动物和无脊椎动物宿主中对寄生虫增殖的一些观察表明,该产物具有更广泛但被忽视的代谢作用。恶性疟原虫的临床外周血样本与高寄生虫血症只含有血色素缺乏(非色素)无性形式已被反复证实。这些样品与其他主要含有色素循环滋养体和配子体的样品形成鲜明对比,表明色素积累是配子体发生的一个突出特征。恶性疟原虫的无性分裂子和环状体中血色素的大小有限,即在光镜下无法检测到,这意味着它的持续周转,支持代谢的作用。疟原虫色素与几种抗疟疾药物的显著相互作用,疟原虫色素形成过程中蛋白质的参与,以及疟原虫基因编码血红素加氧酶样蛋白的发现,表明疟原虫色素在寄生虫的代谢中具有更广泛和更积极的作用。在卵胞体发育过程中观察到的血色素蛋白与晶体的关联与它在无脊椎动物宿主中寄生虫繁殖过程中的有用功能是一致的。最后,血红素形成之外的其他机制为血红素解毒提供了替代或额外的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evidence for a role of hemozoin in metabolism and gametocytogenesis.

Evidence for a role of hemozoin in metabolism and gametocytogenesis.

Evidence for a role of hemozoin in metabolism and gametocytogenesis.

Hemozoin is generally considered a waste deposit that is formed for the sole purpose of detoxification of free heme that results from the digestion of hemoglobin by Plasmodium parasites. However, several observations of parasite multiplication, both in vertebrate and invertebrate hosts are suggestive of a wider, but overlooked, metabolic role for this product. The presence of clinical peripheral blood samples of P. falciparum with high parasitemia containing only hemozoin-deficient (non-pigmented) asexual forms has been repeatedly confirmed. Such samples stand in contrast with other samples that contain mostly pigmented circulating trophozoites and gametocytes, indicating that pigment accumulation is a prominent feature of gametocytogenesis. The restricted size, i.e. below detection by light microscopy, of hemozoin in asexual merozoites and ringforms of P. falciparum implies its continuous turnover, supporting a role in metabolism. The prominent interaction of hemozoin with several antimalarial drugs, the involvement of proteins in hemozoin formation, and the finding of plasmodial genes coding for a heme-oxygenase-like protein argue for a wider and more active role for hemozoin in the parasite's metabolism. The observed association of hemozoin with crystalloids during ookinete development is consistent with a useful function to it during parasite multiplication in the invertebrate host. Finally, alternative mechanisms, other than hemozoin formation, provide substitute or additional routes for heme detoxification.

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