Nagyova E
Endocr Regul. 2015 Jan;49(1):37-45. doi: 10.4149/endo_2015_01_37.
It has been shown that following endogenous gonadotropin surge, oocyte-cumulus complexes (OCC) synthesize hyaluronan (HA) in a process called cumulus expansion. During this process, HA associates with proteins and proteoglycans to form the expanded HA-rich oocyte-cumulus extracellular matrix (ECM), where the heavy chains of the serum derived inter-α-trypsin inhibitor family (IαI) bind covalently to HA. No study has been performed on the occurrence and regulation of this process during oocyte maturation in species other than mouse and pig, although, the heavy chains (of IαI)-HA complex was purified from human amniotic membrane. The present review pointing out that: 1/ formation of expanded HA-rich oocyte-cumulus ECM is dependent on the presence of IαI molecules, 2/ the heavy chains of IαI molecules identified in the serum are covalently linked to HA during cumulus expansion in mouse and pig, 3/ the family of IαI molecules can freely cross the blood-follicle barrier, and the follicular fluid collected at any stage of folliculogenesis can be successfully used instead of serum to form expanded cumulus ECM in pig, and 4/ proteins of the IαI family can affect reproductive process by modulating the expression of a large number of cellular genes during a preovulatory period. Finally, this review provides clear evidence that IαI family members present in the serum or follicular fluid become responsible for cumulus expansion, as without these proteins, expanded cumulus HA-rich ECM is not formed and HA is released into medium.
研究表明,在内源性促性腺激素激增后,卵母细胞-卵丘复合体(OCC)会在一个称为卵丘扩展的过程中合成透明质酸(HA)。在此过程中,HA与蛋白质和蛋白聚糖结合,形成富含HA的扩展型卵母细胞-卵丘细胞外基质(ECM),血清衍生的α-胰蛋白酶抑制剂家族(IαI)的重链会与HA共价结合。除了小鼠和猪之外,尚未对其他物种卵母细胞成熟过程中这一过程的发生和调节进行研究,尽管已从人羊膜中纯化出IαI重链-HA复合物。本综述指出:1/富含HA的扩展型卵母细胞-卵丘ECM的形成依赖于IαI分子的存在;2/在小鼠和猪的卵丘扩展过程中,血清中鉴定出的IαI分子重链与HA共价连接;3/IαI分子家族可以自由穿过血-卵泡屏障,在猪卵泡发生的任何阶段收集的卵泡液都可以成功替代血清来形成扩展型卵丘ECM;4/IαI家族的蛋白质可以通过在排卵前期调节大量细胞基因的表达来影响生殖过程。最后,本综述提供了明确的证据,表明血清或卵泡液中存在的IαI家族成员负责卵丘扩展,因为没有这些蛋白质,就不会形成富含HA的扩展型卵丘ECM,HA会释放到培养基中。