DEVELOPMENTAL EXPRESSION OF THE RELAXIN GENE IN THE PORCINE CORPUS-LUTEUM

被引:11
作者
BAGNELL, CA
ZHANG, Q
OHLETH, K
CONNOR, ML
DOWNEY, BR
TSANG, BK
AINSWORTH, L
机构
[1] UNIV MANITOBA,DEPT ANIM SCI,WINNIPEG R3T 2N2,MANITOBA,CANADA
[2] MCGILL UNIV,DEPT ANIM SCI,ST ANNE BELLEVUE H9X 3V9,PQ,CANADA
[3] UNIV OTTAWA,LOEB INST MED RES,DEPT OBSTET & GYNECOL,REPROD BIOL UNIT,OTTAWA K1Y 4E9,ONTARIO,CANADA
[4] UNIV OTTAWA,LOEB INST MED RES,DEPT PHYSIOL,REPROD BIOL UNIT,OTTAWA K1Y 4E9,ONTARIO,CANADA
[5] AGR CANADA,CTR FOOD & ANIM RES,OTTAWA K1A 0C6,ONTARIO,CANADA
关键词
D O I
10.1677/jme.0.0100087
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Northern analysis and in-situ hybridization were used to follow the development of relaxin gene expression in the newly forming corpus luteum (CL) after ovulation and throughout luteal development. Alkaline phosphatase (AP) was used as a marker of theca-derived lutein cells and the relationship between AP-positive and relaxin mRNA-containing cells was assessed. Ovaries from prepubertal pigs treated with pregnant mares serum gonadotrophin (PMSG)/human chorionic gonadotrophin (hCG) were collected during the periovulatory period and at various times during 19 days after ovulation. In addition, CL from cyclic pigs on days 10 and 16 were used to monitor relaxin gene expression in small and large luteal cells. Northern analysis revealed that relaxin gene expression increased with CL development in the PMSG/hCG-treated pig, reaching maximal levels at around day 14 post-ovulation. Thereafter, as the CL regressed, the level of relaxin mRNA declined. In CL from cyclic pigs at day 10 of the cycle, only small luteal cells expressed relaxin mRNA. However, by day 16 of the cycle, large luteal cells were the source of relaxin gene expression. In-situ hybridization studies revealed that in the early CL (up to 30 h post-ovulation), the relaxin gene transcript was observed in cells along the margins of the CL and in the core of the infolding follicle wall corresponding to the AP-positive, luteinized theca cell layer. As luteinization progressed, the theca and granulosa cell layers could no longer be distinguished morphologically (from 54 h after ovulation until day 9). However, the pattern of relaxin hybridization persisted along the periphery in bands of cells penetrating the CL, and coincided with areas of AP staining, indicating that the theca lutein cells were the site of relaxin gene expression. At day 14, relaxin hybridization and AP staining were distributed throughout the luteal tissue. With CL regression both AP staining and relaxin hybridization declined. This pattern of relaxin hybridization in the CL of the gonadotrophin-primed pig was identical to that observed in cyclic pigs on days 10 and 16 of the cycle. These findings indicate that theca interna cells retain their ability to express the relaxin gene following ovulation and luteinization. In the early CL, the small theca-derived lutein cells are the source of relaxin transcript. However, as the CL becomes fully differentiated, the large granulosa-derived lutein cells acquire the capacity to express the relaxin message.
引用
收藏
页码:87 / 97
页数:11
相关论文
共 35 条
[12]  
Cavazos L. F., 1969, Biology of Reproduction, V1, P83, DOI 10.1095/biolreprod1.1.83
[13]  
CHAYEN J, 1973, PRACTICAL HISTOCHEMI, P106
[14]  
CHOMCZYNSKI P, 1987, ANAL BIOCHEM, V162, P156, DOI 10.1016/0003-2697(87)90021-2
[15]   Alkaline phosphatase in the ovarian follicles and corpora lutea [J].
Corner, GW .
SCIENCE, 1944, 100 :270-271
[16]  
CORNER GW, 1919, AM J ANAT, V26, P117
[17]  
DENNINGKENDALL PA, 1989, J REPROD FERTIL, V85, P261, DOI 10.1530/jrf.0.0850261
[18]  
EVANS G, 1983, J REPROD FERTIL, V69, P677, DOI 10.1530/jrf.0.0690677
[19]   ULTRASTRUCTURAL-LOCALIZATION OF RELAXIN IN THE CORPUS-LUTEUM OF THE NONPREGNANT, PSEUDOPREGNANT, AND PREGNANT PIG [J].
FIELDS, PA ;
FIELDS, MJ .
BIOLOGY OF REPRODUCTION, 1985, 32 (05) :1169-1179
[20]   CHARACTERIZATION OF 2 STEROIDOGENIC CELL-TYPES IN THE OVINE CORPUS-LUTEUM [J].
FITZ, TA ;
MAYAN, MH ;
SAWYER, HR ;
NISWENDER, GD .
BIOLOGY OF REPRODUCTION, 1982, 27 (03) :703-711