Relaxin is a key mediator of prostate growth and male reproductive tract development

被引:78
作者
Samuel, CS
Tian, HS
Zhao, L
Amento, EP
机构
[1] Mol Med Res Inst, Sunnyvale, CA 94085 USA
[2] Stanford Univ, Sch Med, Dept Med, Stanford, CA 94305 USA
[3] Stanford Univ, Sch Med, Dept Dermatol, Stanford, CA 94305 USA
[4] Univ Melbourne, Howard Florey Inst Expt Physiol & Med, Parkville, Vic 3052, Australia
关键词
D O I
10.1097/01.LAB.0000079784.81186.B9
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Male mice deficient in relaxin showed retarded growth and marked deficiencies in the reproductive tract within 1 month of age. At 3 months of age, male reproductive organ weight (including the testis, epididymis, prostate, and seminal vesicle) from relaxin null (RLX-/-) mice were significantly (p < 0.05) smaller than those of wild-type (RLX+/+) male mice. Histologic examination of RLX-/- mouse tissues demonstrated decreased sperm maturation (testis), increased collagen, and decreased epithelial proliferation in the prostate compared with tissues obtained from RLX+/+ animals. The degree of sperm maturation in the testes of sexually mature RLX-/- mice (3 months) resembled that of immature (1 month) RLX+/+ mice and correlated with a decrease in fertility in RLX-/- mice. The marked differences in the extracellular matrix of the testis and prostate in RLX-/males also correlated with an increase in the rate of cell apoptosis. Relaxin and LGR7 (relaxin receptor) mRNA expression was demonstrated in the prostate gland and testis of the normal mouse. Data from this study demonstrate that relaxin is an important factor in the development and function of the male reproductive tract in mice and has an essential role in the growth of the prostate and maintenance of male fertility. Relaxin may mediate its effects on growth and development by serving as an antiapoptotic factor.
引用
收藏
页码:1055 / 1067
页数:13
相关论文
共 47 条
[1]  
Amento EP, 2001, ARTHRITIS RHEUM, V44, pS194
[2]   Differential expression of estrogen receptors alpha and beta mRNA during differentiation of human osteoblast SV-HFO cells [J].
Arts, J ;
Kuiper, GGJM ;
Janssen, JMMF ;
Gustafsson, JA ;
Lowik, CWGM ;
Pols, HAP ;
VanLeeuwen, JPTM .
ENDOCRINOLOGY, 1997, 138 (11) :5067-5070
[3]   Human relaxin gene 3 (H3) and the equivalent mouse relaxin (M3) gene -: Novel members of the relaxin peptide family [J].
Bathgate, RAD ;
Samuel, CS ;
Burazin, TCD ;
Layfield, S ;
Claasz, AA ;
Reytomas, IGT ;
Dawson, NF ;
Zhao, CX ;
Bond, C ;
Summers, RJ ;
Parry, LJ ;
Wade, JD ;
Tregear, GW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (02) :1148-1157
[4]   LOCALIZATION OF ESTROGEN-RECEPTORS IN LONG BONES AND VERTEBRAE OF HUMAN FETUSES [J].
BENHUR, H ;
MOR, G ;
BLICKSTEIN, I ;
LIKHMAN, I ;
KOHEN, F ;
DGANI, R ;
INSLER, V ;
YAFFE, P ;
ORNOY, A .
CALCIFIED TISSUE INTERNATIONAL, 1993, 53 (02) :91-96
[5]  
BRENNER SH, 1984, FERTIL STERIL, V42, P92
[6]   THE BINDING OF RECOMBINANT HUMAN RELAXIN TO HUMAN SPERMATOZOA [J].
CARRELL, DT ;
PETERSON, CM ;
URRY, RL .
ENDOCRINE RESEARCH, 1995, 21 (03) :697-707
[7]   THE EFFECT OF GROWTH ON COLLAGEN AND GLYCOSAMINOGLYCANS IN THE ARTICULAR DISC OF THE RAT TEMPOROMANDIBULAR-JOINT [J].
CARVALHO, RS ;
YEN, EHK ;
SUGA, DM .
ARCHIVES OF ORAL BIOLOGY, 1993, 38 (06) :457-466
[8]   RELAXIN IN HUMAN SEMINAL PLASMA [J].
ESSIG, M ;
SCHOENFELD, C ;
DELETTO, R ;
AMELAR, R ;
DUBIN, L ;
STEINETZ, BG ;
OBYRNE, EM ;
WEISS, G .
ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1982, 380 (JAN) :224-230
[9]   RELAXIN AND ITS ROLE IN PREGNANCY [J].
GOLDSMITH, LT ;
WEISS, G ;
STEINETZ, BG .
ENDOCRINOLOGY AND METABOLISM CLINICS OF NORTH AMERICA, 1995, 24 (01) :171-186
[10]   EXPRESSION OF THE RELAXIN GENE IN RAT-TISSUES [J].
GUNNERSEN, JM ;
CRAWFORD, RJ ;
TREGEAR, GW .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 1995, 110 (1-2) :55-64