Rodgers H F, Irvine C M, van Wezel I L, Lavranos T C, Luck M R, Sado Y, Ninomiya Y, Rodgers R J
a Department of Medicine, Flinders University of South Australia, Bedford Park, South Australia 5042, Australia.
Biol Reprod. 1998 Dec;59(6):1334-41. doi: 10.1095/biolreprod59.6.1334.
During follicular development the proliferative and differentiated state of the epithelioid granulosa cells changes, and the movement of fluid across the follicular basal lamina enables the formation of an antrum. Type IV collagen is an important component of many basal laminae. Each molecule is composed of three alpha chains; however, six different type IV collagen chains have been identified. It is not known which of these chains are present in the follicular basal lamina and whether the type IV collagen composition of the basal lamina changes during follicular development. Therefore, we immunolocalized each of the six chains in bovine ovaries using antibodies directed to the nonconserved non-collagenous (NC) domains. Additionally, dissected follicles were digested with collagenase to release the NC domains, and the NC1 domains were then detected by standard Western immunoblot methods. The follicular basal lamina of almost all primordial and preantral follicles was positive for all type IV collagen alpha chains. Colocalization of type IV collagen and factor VIII-related antigen allowed for discrimination between the follicular and endothelial basal laminae. Type IV collagen alpha1, alpha2, alpha3, alpha4, and alpha5 chains were present within the follicular basal lamina of only a proportion of antral follicles (17 of 22, 20 of 21, 15 of 18, 14 of 28, and 12 of 23, respectively), and staining was less intense than in the preantral follicles. Staining for the alpha1 and alpha2 chains was diffusely distributed throughout the theca in regions not associated with recognized basal laminae. The specificity of this immunostaining for alpha1 and alpha2 chains of type IV collagen was confirmed by Western immunoblots. As well as being detected in the basal lamina of approximately half of the antral follicles examined, type IV collagen alpha4 also colocalized with 3beta-hydroxysteroid dehydrogenase-immunopositive cells in the theca interna. Type IV collagen alpha6 was detected in the basal lamina of only one of the 16 antral follicles examined. Thus, the follicular basal lamina changes in composition during follicular development, with immunostaining levels being reduced for all type IV collagen chains and immunoreactivity for type IV collagen alpha6 being lost as follicle size increases. Additionally, immunoreactivity for alpha1 and alpha2 appears in the extracellular matrix of the theca as it develops.
在卵泡发育过程中,上皮样颗粒细胞的增殖和分化状态会发生变化,液体穿过卵泡基膜的运动促使卵泡腔形成。IV型胶原是许多基膜的重要组成部分。每个分子由三条α链组成;然而,已鉴定出六种不同的IV型胶原链。目前尚不清楚这些链中哪些存在于卵泡基膜中,以及基膜的IV型胶原组成在卵泡发育过程中是否会发生变化。因此,我们使用针对非保守非胶原(NC)结构域的抗体,对牛卵巢中的六种链进行了免疫定位。此外,用胶原酶消化解剖后的卵泡以释放NC结构域,然后通过标准的Western免疫印迹法检测NC1结构域。几乎所有原始卵泡和腔前卵泡的卵泡基膜对所有IV型胶原α链均呈阳性。IV型胶原与VIII因子相关抗原的共定位有助于区分卵泡基膜和内皮基膜。仅一部分腔卵泡(分别为22个中的17个、21个中的20个、18个中的15个、28个中的14个和23个中的12个)的卵泡基膜中存在IV型胶原α1链、α2链、α3链、α4链和α5链,且染色强度低于腔前卵泡。α1链和α2链的染色在与公认基膜无关的区域中弥漫分布于整个卵泡膜。这种对IV型胶原α1链和α2链免疫染色的特异性通过Western免疫印迹得到证实。除了在大约一半检查的腔卵泡的基膜中被检测到外,IV型胶原α4还与卵泡膜内层中3β-羟基类固醇脱氢酶免疫阳性细胞共定位。在检查 的16个腔卵泡中,仅在其中一个的基膜中检测到IV型胶原α6。因此,卵泡基膜在卵泡发育过程中组成会发生变化,随着卵泡大小增加,所有IV型胶原链的免疫染色水平降低,IV型胶原α6的免疫反应性丧失。此外,随着卵泡膜的发育,α1链和α2链的免疫反应性出现在卵泡膜的细胞外基质中。