Yeste Marc, Holt William V, Bonet Sergi, Rodríguez-Gil Joan E, Lloyd Rhiannon E
Institute of Zoology, Zoological Society of London, London, United Kingdom; Department of Animal Medicine and Surgery, Autonomous University of Barcelona, Bellaterra (Cerdanyola del Vallès, Barcelona), Spain.
Mol Reprod Dev. 2014 Sep;81(9):805-19. doi: 10.1002/mrd.22350. Epub 2014 Aug 4.
The principal aim of this study was to determine if boar spermatozoa influence the expression of four selected chaperone and heat-shock protein (HSP) genes-namely clusterin (CLU), HSP90AA1, HSPA5, and HSPA8-in oviductal epithelial cells (OECs) during in vitro co-culture. All corresponding proteins of these genes were previously identified in a sperm-interacting, 70-kDa soluble fraction derived from apical plasma membranes of OECs. The present study also sought to determine whether or not: (i) spermatozoa must directly bind to OEC for an effect on gene expression to be elicited and (ii) reproductive and nonreproductive epithelial cell types (LLC-PK1, pig kidney) respond equivalently, in terms of alterations in chaperone and HSP gene expression, during co-culture with sperm. Spermatozoa induced a significant upregulation (P < 0.05) in HSP90AA1 and HSPA5 in OECs after 3 hr, and in HSPA8 after 6 hr of co-culture when they were in direct contact with epithelial cells. Conversely, no upregulation of HSP transcription was observed when spermatozoa did not directly bind to OECs. Spermatozoa also induced a significant upregulation (P < 0.05) of the same three genes when in direct contact with LLC-PK1 cells, but the timing occurred later than with OECs. Interestingly, the extent of HSP gene upregulation induced by direct contact of spermatozoa with epithelial cells was dependent on sperm-binding index and on the viability and morphological quality of the bound sperm population. In conclusion, the upregulation of HSP genes caused by direct contact between spermatozoa and OECs, rather than nonreproductive epithelial cells, suggests HSPs could play an integral role in the modulation of sperm function in the oviductal reservoir.
本研究的主要目的是确定在体外共培养过程中,公猪精子是否会影响输卵管上皮细胞(OECs)中四个选定的伴侣蛋白和热休克蛋白(HSP)基因,即簇集蛋白(CLU)、HSP90AA1、HSPA5和HSPA8的表达。这些基因的所有相应蛋白质先前已在源自OECs顶端质膜的与精子相互作用的70 kDa可溶性组分中鉴定出来。本研究还试图确定:(i)精子是否必须直接与OEC结合才能引发对基因表达的影响;(ii)在与精子共培养期间,生殖和非生殖上皮细胞类型(LLC-PK1,猪肾)在伴侣蛋白和HSP基因表达变化方面是否有相同反应。精子与上皮细胞直接接触后,在共培养3小时后,OECs中HSP90AA1和HSPA5显著上调(P<0.05),共培养6小时后HSPA8显著上调。相反,当精子不直接与OECs结合时,未观察到HSP转录上调。精子与LLC-PK1细胞直接接触时,相同的三个基因也显著上调(P<0.05),但时间比与OECs接触时晚。有趣的是,精子与上皮细胞直接接触诱导的HSP基因上调程度取决于精子结合指数以及结合精子群体的活力和形态质量。总之,精子与OECs而非非生殖上皮细胞直接接触导致的HSP基因上调表明,HSPs可能在输卵管储存库中精子功能的调节中发挥不可或缺的作用。