Putaporntip C, Jongwutiwes S, Seethamchai S, Kanbara H, Tanabe K
Department of Parasitology, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.
Mol Biochem Parasitol. 2000 Jul;109(2):111-9. doi: 10.1016/s0166-6851(00)00238-3.
To date, little has been known about the extent of sequence variation in the C-terminal part of the Plasmodium vivax merozoite surface protein 1 (PvMSP1) which has been considered to be a potential vaccine candidate. Here, we examined the variation in the region encompassing interspecies conserved blocks (ICBs) 8 and 10 of PvMSP1 by DNA sequencing of 14 Thai isolates and three Brazilian isolates. Eighteen different alleles were detected. Three new sequence types had been identified in polymorphic region between ICB8 and CB9: one was possibly a result of intragenic recombination between the Belem and Salvador I alleles and the others displayed unique repeats. A striking variation was observed in a stretch of 38 codons in polymorphic block between conserved block CB9 and ICB10, resulting in eight different sequence types, probably generated by interallelic recombination at a single or multiple sites. There is no apparent linkage between these two polymorphic sites. On the other hand, a single or stretches of nucleotide substitutions are dimorphic like in Plasmodium falciparum MSP1 (PfMSP1) in the remaining parts, creating microheterogeneity of sequences. The C-terminal 19 kDa-encoding region was extremely conserved with a single dimorphic exchange at a known position. Thus, this study provides evidence of intragenic recombination occurring in the 3' portion of PvMSP1 and suggests that the 3' portion of PvMSP1 is more diverse than that in PfMSP1.
迄今为止,对于间日疟原虫裂殖子表面蛋白1(PvMSP1)C端的序列变异程度了解甚少,而该蛋白被认为是一种潜在的疫苗候选物。在此,我们通过对14株泰国分离株和3株巴西分离株进行DNA测序,研究了PvMSP1包含种间保守区(ICB)8和10的区域的变异情况。共检测到18种不同的等位基因。在ICB8和CB9之间的多态性区域鉴定出三种新的序列类型:一种可能是贝伦I等位基因和萨尔瓦多I等位基因之间基因内重组的结果,其他的则显示出独特的重复序列。在保守区CB9和ICB10之间的多态性区域的一段38个密码子中观察到显著变异,产生了8种不同的序列类型,可能是由单个或多个位点的等位基因间重组产生的。这两个多态性位点之间没有明显的连锁关系。另一方面,在其余部分,单个或一段核苷酸替换像恶性疟原虫MSP1(PfMSP1)一样呈双态性,造成序列的微异质性。编码19 kDa的C端区域极其保守,在一个已知位置有单个双态性交换。因此,本研究提供了PvMSP1 3'部分发生基因内重组的证据,并表明PvMSP1的3'部分比PfMSP1的3'部分更多样化。