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小鼠Char10基因座调节丙酮酸激酶缺乏症的严重程度和对疟疾的易感性。

The mouse Char10 locus regulates severity of pyruvate kinase deficiency and susceptibility to malaria.

作者信息

Laroque Aurélie, Min-Oo Gundula, Tam Mifong, Ponka Prem, Stevenson Mary M, Gros Philippe

机构信息

Biochemistry Department, McGill University, Montreal, Quebec, Canada.

Department of Microbiology and Immunology, McGill University, Montreal, Quebec, Canada.

出版信息

PLoS One. 2017 May 18;12(5):e0177818. doi: 10.1371/journal.pone.0177818. eCollection 2017.

Abstract

Pyruvate kinase (PKLR) deficiency protects mice and humans against blood-stage malaria. Although mouse strain AcB62 carries a malaria-protective PklrI90N genetic mutation, it is phenotypically susceptible to blood stage malaria induced by infection with Plasmodium chabaudi AS, suggesting a genetic modifier of the PklrI90N protective effect. Linkage analysis in a F2 cross between AcB62 (PklrI90N) and another PK deficient strain CBA/Pk (PklrG338D) maps this modifier (designated Char10) to chromosome 9 (LOD = 10.8, 95% Bayesian CI = 50.7-75Mb). To study the mechanistic basis of the Char10 effect, we generated an incipient congenic line (Char10C) that harbors the Char10 chromosome 9 segment from AcB62 fixed on the genetic background of CBA/Pk. The Char10 effect is shown to be highly penetrant as the Char10C line recapitulates the AcB62 phenotype, displaying high parasitemia following P. chabaudi infection, compared to CBA/Pk. Char10C mice also display a reduction in anemia phenotypes associated with the PklrG338D mutation including decreased splenomegaly, decreased circulating reticulocytes, increased density of mature erythrocytes, increased hematocrit, as well as decreased iron overload in kidney and liver and decreased serum iron. Erythroid lineage analyses indicate that the number of total TER119+ cells as well as the numbers of the different CD71+/CD44+ erythroblast sub-populations were all found to be lower in Char10C spleen compared to CBA/Pk. Char10C mice also displayed lower number of CFU-E per spleen compared to CBA/Pk. Taken together, these results indicate that the Char10 locus modulates the severity of pyruvate kinase deficiency by regulating erythroid responses in the presence of PK-deficiency associated haemolytic anemia.

摘要

丙酮酸激酶(PKLR)缺乏可保护小鼠和人类免受血液期疟疾感染。尽管小鼠品系AcB62携带疟疾保护性PklrI90N基因突变,但在表型上它对感染查巴迪疟原虫AS诱导的血液期疟疾敏感,这表明存在PklrI90N保护作用的遗传修饰因子。在AcB62(PklrI90N)和另一个PK缺陷品系CBA/Pk(PklrG338D)之间的F2杂交中的连锁分析将此修饰因子(命名为Char10)定位到9号染色体(LOD = 10.8,95%贝叶斯可信区间 = 50.7 - 75Mb)。为了研究Char10效应的机制基础,我们构建了一个初始近交系(Char10C),其在CBA/Pk的遗传背景上固定了来自AcB62的Char10 9号染色体片段。与CBA/Pk相比,Char10C品系重现了AcB62的表型,在感染查巴迪疟原虫后表现出高寄生虫血症,这表明Char10效应具有高度的外显率。Char10C小鼠还表现出与PklrG338D突变相关的贫血表型减少,包括脾肿大减轻、循环网织红细胞减少、成熟红细胞密度增加、血细胞比容增加,以及肾脏和肝脏中铁过载减少和血清铁减少。红系谱系分析表明,与CBA/Pk相比,Char10C脾脏中总TER119 +细胞数量以及不同CD71 + /CD44 +幼红细胞亚群的数量均较低。与CBA/Pk相比,Char10C小鼠每个脾脏中的CFU - E数量也较低。综上所述,这些结果表明Char10基因座通过在存在PK缺乏相关溶血性贫血的情况下调节红系反应来调节丙酮酸激酶缺乏的严重程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eee/5436716/4359ba9b44ff/pone.0177818.g001.jpg

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