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发情周期中牛黄体的缝隙连接蛋白连接蛋白43

Gap junctional protein connexin 43 in bovine corpora lutea throughout the estrous cycle.

作者信息

Grazul-Bilska A T, Redmer D A, Johnson M L, Jablonka-Shariff A, Bilski J J, Reynolds L P

机构信息

Department of Animal and Range Sciences, North Dakota State University, Fargo 58105, USA.

出版信息

Biol Reprod. 1996 Jun;54(6):1279-87. doi: 10.1095/biolreprod54.6.1279.

Abstract

The present study examined the pattern of expression of the gap junctional protein connexin 43 (Cx43) in bovine corpora lutea (CL) during growth, differentiation, and regression. CL from the early (n = 6), mid- (n = 6), and late (n = 6) luteal phases of the estrous cycle were weighed and divided into several portions. One portion of each CL was frozen in liquid nitrogen for evaluation of protein, DNA, progesterone, and presence of Cx43 by Western immunoblot analysis; another portion was frozen in liquid propane for immunofluorescent staining of Cx43. An additional portion of each CL was dispersed, and the luteal cells were cultured for 2 days, fixed, and used for immunofluorescent staining of Cx43. Weights and DNA, protein, and progesterone contents of CL increased (p < 0.05) from the early to mid-luteal phases and then decreased (p < 0.05) from the mid- to late luteal phases. The ratio of protein to DNA was similar in the early and mid-luteal phases and then decreased (p < 0.05) to the late luteal phase. Western immunoblot analysis revealed bands at 43 kDa that differed in volume (evaluated by densitometry); the early luteal phase volume was greater (p < 0.05) than that at the mid-luteal phase, which was greater (p < 0.05) than that at the late luteal phase. Immunofluorescent staining demonstrated that Cx43 was present in luteal tissues and cultured luteal cells throughout the estrous cycle, and the area of positive staining decreased (p < 0.05) as the estrous cycle progressed. Staining for Cx43 was punctate and localized to the cellular borders. Thus, levels of Cx43 in bovine CL are greatest early in the estrous cycle and are least late in the estrous cycle. These data demonstrate that gap junctions may be important for regulation of luteal growth, differentiation, and regression in the cow.

摘要

本研究检测了缝隙连接蛋白连接蛋白43(Cx43)在牛黄体(CL)生长、分化和退化过程中的表达模式。采集发情周期早期(n = 6)、中期(n = 6)和晚期(n = 6)的黄体,称重后分成若干部分。每只黄体的一部分在液氮中冷冻,用于通过蛋白质免疫印迹分析评估蛋白质、DNA、孕酮以及Cx43的存在情况;另一部分在液体丙烷中冷冻,用于Cx43的免疫荧光染色。每只黄体的另一部分进行分散处理,黄体细胞培养2天,固定后用于Cx43的免疫荧光染色。黄体的重量以及DNA、蛋白质和孕酮含量从发情周期早期到中期增加(p < 0.05),然后从中期到晚期减少(p < 0.05)。蛋白质与DNA的比值在发情周期早期和中期相似,然后在发情周期晚期降低(p < 0.05)。蛋白质免疫印迹分析显示在43 kDa处有条带,其体积不同(通过光密度测定评估);发情周期早期的体积大于中期(p < 0.05),中期大于晚期(p < 0.05)。免疫荧光染色表明,在整个发情周期中,Cx43存在于黄体组织和培养的黄体细胞中,随着发情周期的进展,阳性染色面积减少(p < 0.05)。Cx43染色呈点状,定位于细胞边界。因此,牛黄体中Cx43的水平在发情周期早期最高,在发情周期晚期最低。这些数据表明,缝隙连接可能对奶牛黄体的生长、分化和退化调节很重要。

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