Applied Industrial Microbiology Laboratory, Department of Biotechnology, Indian Institute of Technology Madras, Chennai 600 036, India.
Reproduction. 2013 Jul 31;146(3):209-20. doi: 10.1530/REP-13-0121. Print 2013 Sep.
During the maturation process spermatozoa undergo a series of changes in their lateral and horizontal lipid profiles. However, lipid metabolism in spermatozoa is not clearly understood for two reasons: i) the mature spermatozoa are devoid of endoplasmic reticulum, which is the major site of phospholipid (PL) synthesis in somatic cells, and ii) studies have been superficial due to the difficulty in culturing spermatozoa. We hypothesize that spermatozoa contain biogenic membrane flippases since immense changes in lipids occur during spermatogenic differentiation. To test this, we isolated spermatozoa from bovine epididymides and reconstituted the detergent extract of sperm membranes into proteoliposomes. In vitro assays showed that proteoliposomes reconstituted with sperm membrane proteins exhibit ATP-independent flip-flop movement of phosphatidylcholine (PC), phosphatidylserine, and phosphatidylglycerol. Half-life time of PC flipping was found to be ∼3.2±1 min for whole sperm membrane, which otherwise would have taken ∼11-12 h in the absence of protein. Further biochemical studies confirm the flip-flop movement to be protein-mediated, based on its sensitivity to protease and protein-modifying reagents. To further determine the cellular localization of flippases, we isolated mitochondria of spermatozoa and checked for ATP-independent flippase activity. Interestingly, mitochondrial membranes showed flip-flop movement but were specific for PC with half-life time of ∼5±2 min. Our results also suggest that spermatozoa have different populations of flippases and that their localization within the cellular compartments depends on the type of PL synthesis.
在成熟过程中,精子经历了一系列横向和水平脂质谱的变化。然而,由于两个原因,精子中的脂质代谢尚不清楚:i)成熟精子缺乏内质网,内质网是体细胞中磷脂(PL)合成的主要部位,ii)由于精子培养困难,研究还不够深入。我们假设精子含有生物膜翻转酶,因为在精子发生分化过程中脂质会发生巨大变化。为了验证这一点,我们从牛附睾中分离精子,并将精子膜的去污剂提取物重新构建成蛋白脂质体。体外实验表明,用精子膜蛋白重建的蛋白脂质体表现出磷脂酰胆碱(PC)、磷脂酰丝氨酸和磷脂酰甘油的 ATP 非依赖性翻转运动。发现 PC 翻转的半衰期约为 3.2±1 分钟,而在没有蛋白质的情况下,这需要大约 11-12 小时。进一步的生化研究证实翻转运动是由蛋白质介导的,这是基于其对蛋白酶和蛋白质修饰试剂的敏感性。为了进一步确定翻转酶的细胞定位,我们分离了精子的线粒体,并检查了 ATP 非依赖性翻转酶活性。有趣的是,线粒体膜显示出翻转运动,但对 PC 具有特异性,半衰期约为 5±2 分钟。我们的结果还表明,精子具有不同的翻转酶群体,它们在细胞区室中的定位取决于 PL 合成的类型。