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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Identification of rat cysteine-rich secretory protein 4 (Crisp4) as the ortholog to human CRISP1 and mouse Crisp4
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Identification of rat cysteine-rich secretory protein 4 (Crisp4) as the ortholog to human CRISP1 and mouse Crisp4

机译:鉴定大鼠富含半胱氨酸的分泌蛋白4(Crisp4)作为人类CRISP1和小鼠Crisp4的直系同源物

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摘要

Cysteine-rich secretory proteins (CRISPs) are present in a diverse population of organisms and are defined by 16 conserved cysteine residues spanning a plant pathogenesis related-1 and a C-terminal cysteine-rich domain. To date, the diversification of mammalian CRISPs is evidenced by the existence of two, three, and four paralogous genes in the rat, human, and mouse, respectively. The current study identifies a third rat Crisp paralog we term Crisp4. The gene for Crisp4 is on rat chromosome 9 within 1 Mb of both the Crisp1 and Crisp2 genes. The full-length transcript for this gene was cloned from rat epididymal RNA and encodes a protein that shares 69% and 91% similarity with human CRISP1 and mouse CRISP4, respectively. Expression of rat Crisp4 is most abundant in the epididymis, with the highest levels of transcription observed in the caput and corpus epididymis. In contrast, rat CRISP4 protein is most abundant in the corpus and cauda regions of the epididymis. Rat CRISP4 protein is also present in caudal sperm extracts, appearing as a detergent-soluble form at the predicted MW (26 kDa). Our data identify rat Crisp4 as the true ortholog to human CRISP1 and mouse Crisp4, and demonstrate its interaction with spermatozoa in the epididymis.
机译:富含半胱氨酸的分泌蛋白(CRISP)存在于各种生物体中,并由跨越植物致病相关1和C端富含半胱氨酸的16个保守半胱氨酸残基定义。迄今为止,哺乳动物CRISP的多样化已通过大鼠,人类和小鼠中分别存在两个,三个和四个旁系同源基因来证明。当前的研究确定了我们称为Crisp4的第三只大鼠Crisp旁系同源物。 Crisp4的基因在Crisp1和Crisp2基因的1 Mb内的大鼠9号染色体上。该基因的全长转录本从大鼠附睾RNA中克隆,编码的一种蛋白质与人CRISP1和小鼠CRISP4分别具有69%和91%的相似性。大鼠Crisp4的表达在附睾中最丰富,在附睾和附体中观察到最高水平的转录。相反,大鼠CRISP4蛋白在附睾的主体和尾部区域最丰富。大鼠CRISP4蛋白也存在于尾部精子提取物中,在预测的分子量(26 kDa)下以洗涤剂可溶的形式出现。我们的数据确定大鼠Crisp4是人类CRISP1和小鼠Crisp4的真正直系同源物,并证明其与附睾中的精子相互作用。

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