首页> 美国卫生研究院文献>Biochemical Journal >Seminal vesicle autoantigen a novel phospholipid-binding protein secreted from luminal epithelium of mouse seminal vesicle exhibits the ability to suppress mouse sperm motility.
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Seminal vesicle autoantigen a novel phospholipid-binding protein secreted from luminal epithelium of mouse seminal vesicle exhibits the ability to suppress mouse sperm motility.

机译:精囊自身抗原是一种从小鼠精囊腔上皮分泌的新型磷脂结合蛋白具有抑制小鼠精子运动的能力。

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摘要

Seminal vesicle autoantigen (SVA) is a 19 kDa glycoprotein purified from mouse seminal vesicle secretion. It was quantified to be 0.9% (w/v) in the seminal vesicle fluid. We examined its distribution in the accessory sexual gland, characterized its binding sites on the sperm surface and assessed its effect on sperm motility. It was immunolocalized on the epithelium of the primary and secondary folds in the tissue. Mouse spermatozoa collected from caudal epididymis were devoid of SVA. A cytochemical study illustrated the presence of SVA-binding region on the entire cells. The cytochemical staining intensity for the binding of SVA to spermatozoa remained even when the cells were pretreated with protease digestion, acid or heat at 100 degrees C for 10 min. Moreover, the SVA-sperm binding could be inhibited by the dispersed sperm lipid. The specificity of interaction between (125)I-SVA and phospholipids was studied by TLC overlay techniques. The radiolabelled protein showed strong binding to purified phosphatidylcholine and phosphatidylserine and weak binding to purified sphingomyelin, lysophosphatidylcholine and phosphatidylethanolamine, but did not interact with phosphatidic acid, lysophosphatidic acid or phosphatidylinositol. Among the lipids extracted from spermatozoa, SVA showed strong binding to phosphatidylcholine and weak binding to sphingomyelin and neutral lipids. The assay for SVA-sperm binding with (125)I-SVA determined the IC(50) as being (3.89+/-0.65)x10(-5) M(-1), which is compatible with an apparent dissociation constant of (9.10+/-0.02)x10(-5) M(-1) estimated by fitting the data of phosphatidylcholine-perturbed SVA fluorescence to a modified Scatchard plot. SVA showed an ability to suppress sperm motility. The average path velocity, straight-line velocity and curvilinear velocity of sperm were not detectable by computer-assisted sperm assay after incubation of the cells in the presence of 0.3% SVA at 37 degrees C for more than 40 min.
机译:精囊自身抗原(SVA)是一种从小鼠精囊分泌物中纯化的19 kDa糖蛋白。在精囊液中定量为0.9%(w / v)。我们检查了其在附属性腺中的分布,表征了其在精子表面的结合位点,并评估了其对精子活力的影响。将其免疫定位在组织的第一和第二折的上皮上。从尾附睾中收集的小鼠精子缺乏SVA。细胞化学研究表明,整个细胞上均存在SVA结合区。即使将细胞用蛋白酶消化,酸或100摄氏度的高温预处理10分钟,SVA与精子结合的细胞化学染色强度仍保持不变。而且,SVA-精子结合可以被分散的精子脂质抑制。通过TLC覆盖技术研究了(125)I-SVA与磷脂之间相互作用的特异性。放射性标记的蛋白质显示出与纯化的磷脂酰胆碱和磷脂酰丝氨酸的强结合,而与纯化的鞘磷脂,溶血磷脂酰胆碱和磷脂酰乙醇胺的结合较弱,但不与磷脂酸,溶血磷脂酸或磷脂酰肌醇相互作用。在从精子中提取的脂质中,SVA与磷脂酰胆碱的结合力强,与鞘磷脂和中性脂质的结合力弱。 SVA-精子与(125)I-SVA结合的测定确定IC(50)为(3.89 +/- 0.65)x10(-5)M(-1),与表观解离常数(通过将磷脂酰胆碱扰动的SVA荧光数据拟合到修改后的Scatchard图来估计9.10 +/- 0.02)x10(-5)M(-1)。 SVA具有抑制精子活力的能力。在0.3%SVA存在下于37°C孵育细胞40分钟以上后,通过计算机辅助精子测定法无法检测到精子的平均路径速度,直线速度和曲线速度。

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