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Tissue-specific transcriptional regulation of the cholesterol biosynthetic pathway leads to accumulation of testis meiosis-activating sterol (T-MAS).

Lanosterol 14alpha-demethylase (CYP51) produces follicular fluid meiosis-activating sterol (FF-MAS), which is converted further to testis meiosis-activating sterol (T-MAS). MAS are intermediates in the cholesterol biosynthetic pathway, with the ability to trigger resumption of oocyte meiosis in vitro. In contrast to the liver, where pre- and post-MAS genes are upregulated coordinately at the level of transcription by a cholesterol feedback mechanism through sterol regulatory element-binding proteins (SREBP), regulation differs in the testis. Genes encoding pre-MAS enzymes [HMG-CoA synthase (SYN), HMG-CoA reductase (RED), farnesyl diphosphate synthase (FPP), squalene synthase (SS), and CYP51] are upregulated during sexual development of the testis, although not all genes are turned on at the same time. Furthermore, two post-MAS genes, C-4 sterol methyl oxidase and sterol Delta(7)-reductase, are expressed at low levels and are not upregulated either in rat or human. This transcriptional discrepancy seems to be SREBP independent. Besides cAMP/cAMP-responsive element modulator, other unknown transcription factors control expression of individual cholesterogenic genes during spermatogenesis. HPLC analysis shows an 8-fold increase in T-MAS during development of rat testis whereas MAS is barely detectable in livers of the same animals. We propose that the lack of a coordinate transcriptional control over the cholesterol biosynthetic pathway contributes importantly to overproduction of the signaling sterol T-MAS in testis.

Animals↗

Correlation of expression of preprothyrotropin-releasing hormone and receptor with rat testis development.

OBJECTIVE: To investigate the expression regulation of thyrotrophin-releasing hormone (TRH) and TRH receptor (TRH-R), and their role in the development of rat testis. METHODS: Oligonucleotide primers were designed from the sequences of rat hypothalamus prepro TRH (ppTRH) and pituitary TRH-R cDNA for reverse transcription polymerase chain reaction (RT-PCR). Specific fragments of ppTRH and TRH-R cDNA were cloned and sequenced. Expression plasmids containing ppTRH and TRH-R genes were then constructed, and expression was found in E. coli DH5-alpha. ppTRH and TRH-R mRNA in the testis was quantitated in RNA samples prepared from rats at different developmental stages by real time quantitative RT-PCR. RESULTS: The quantitative analyses demonstrated that no ppTRH and TRH mRNA could be detected at the earliest stage (day 8). ppTRH and TRH mRNA signals were detected on day 15 and increased progressively on days 20, 35, 60 and 90. CONCLUSION: Our results suggest that rat testis could specifically express TRH and TRH-R, and the transcriptions of ppTRH and TRH-R genes in the rat testis were development-dependent. The acquirement of expressed products for ppTRH and TRH-R can be used for further research on the physiological significance of TRH and TRH-R expression in rat testis.

Age Factors↗

Osteotesticular protein tyrosine phosphatase expression in rodent testis.

PURPOSE: In the last decade the novel receptor-like protein tyrosine phosphatase was identified and termed osteotesticular tyrosine phosphatase (OST-PTP) due to its restricted expression in bone and testis. OST-PTP expression is regulated during osteoblast differentiation and it shows stage specific expression in the testis. Confined OST-PTP expression in the basal compartment of the seminiferous tubules suggests that this protein may be a good candidate for a rodent germ stem cell marker. To test this hypothesis we determined the exact pattern of OST-PTP expression in the rodent testis. MATERIALS AND METHODS: Adult mouse and rat paraffinized testis sections were subjected to in situ hybridization using riboprobes against the receptor and catalytic domains of the protein OST-PTP. RESULTS: OST-PTP testicular expression in rodents is not confined to the spermatogonia, as previously suggested, but is also present in Sertoli cells in a stage independent pattern. This finding excludes the hypothesis that OST-PTP is a germ stem cell identification marker in rodents. In addition, we report the identification of a testicular OST-PTP isoform lacking part of a catalytic domain that is widely expressed during spermatogenesis in all cell types. CONCLUSIONS: This finding implies tight control over OST-PTP expression in the testis, which in turn suggests an important role for OST-PTP and its isoform in male germ cell differentiation.

Animals↗

[Transverse ectopic testis].

Transverse ectopic testis (TET) is a rare form of ectopic testis. The authors report the case of a 2-month-old infant presenting with right inguinoscrotal hernia and ectopic left testis with an impalpable testis. Opening of the hernia sac revealed two testes with two distally fused vasa deferentes. The contralateral testis was easily descended by translocation through the other inguinal canal. A favourable result was obtained with two testes situated in a normal position. In the light of this case, the authors emphasize the clinical and therapeutic features of this anomaly.

Choristoma↗

[Correlation between tissue ultrastructure changes of small testis and sex hormone].

OBJECTIVES: To investigate the tissue ultrastructure changes of small testis and sex hormone and their correlation. METHODS: The patients were divided into small tests (n = 8) and control group(n = 12). FSH, LH, T were determined by radioimmunassay. Diameter and wall thickness of convoluted seminiferous tubule were investigated with light microscope and electro microscopy on small testis tissue morphology and ultrastructure. RESULTS: FSH, LH, T of small testis and control group were (21.05 +/- 9.15) IU/L vs (6.74 +/- 3.52) IU/L, (22.88 +/- 6.25) IU/L vs (6.60 +/- 1.48) IU/L and (0.30 +/- 0.04) nmol/L vs (17.55 +/- 9.25) nmol/L, respectively. Seminiferous tubule diameter and wall thickness were(37.33 +/- 6.80) microns vs (198.46 +/- 29.84) microns and (10.30 +/- 1.82) microns vs (2.95 +/- 0.20) microns. Small testis tissue ultrastructure changed significantly. CONCLUSIONS: Pathologic changes of small testis tissue in many parts such as seminiferous tubule, germinal epithelium, Sertoli cell, Leydig cell, limiting membrance and blood vessel may relate with genetics and immunoreaction.

Adult↗

Male reproductive toxic effects of carbendazim: hitherto unreported targets in testis.

Carbendazim (MBC), a widely used fungicide, is toxic to male reproductive mechanisms. Various cellular targets in the testis for MBC action are being understood only recently and still more targets have been conceived. The present study was aimed at finding such newer targets. Male rats were administered through oral route a single dose of carbendazim (400 mg/kg) and the testis was studied adopting routine histological technique. It has been observed that pachytene spermatocytes could also be targets for MBC action in the testis. The study also reports selective loss of step 14 spermatids, asynchrony of the stages in the spermatogenic cycle and development of Sertoli cell fibrosis of the seminiferous tubules of carbendazim-treated rats. From the different kinds of responses seen in the seminiferous tubules in the same testis to MBC, particularly in the Sertoli cell, MBC action in the testis appears dependent on the stage in the spermatogenic cycle at first exposure.

Administration, Oral↗

[Dynamic observation of carbofuran on symbolic enzymes in testis of rats].

To examine the effects of carbofuran on the testis of male rats. The activities of beta-glucuronidase (beta-G), glucose-6-phosphate dehydrogenase(G-6-PD) and lactate dehydrogenase isoenzyme-x (LDHx) in serum and testis homogenate were determined for the rats given carbofuran at the dises of 0.3, 1.5 and 3.0 mg/kg orally for 7, 35 and 77 days. The results showed that after 7 days, the activities of beta-G in serum in all exposed groups were lower than those in control (P < 0.05). The activities of beta-G in testis homogenate in 0.3 mg/kg and 3.0 mg/kg were higher or lower than those in control (P < 0.05), respectively. After 77 days, the activities of G-6-PD in serum both in 1.5 mg/kg and 3.0 mg/kg were lower than those in control (P < 0.05). The activities of LDHx in testis homogenate in 3.0 mg/kg were lower than those in control (P < 0.05). It suggested that exposure to carbofuran could testis damage.

Animals↗

[Studies on the testis regression related gene profile in aged male].

OBJECTIVE: To understand the mechanism of testis regression in aging male. METHODS: Human testis tissues were obtained during related operation with informed consent (normal young male 3 cases and aged male 3 cases). Total RNA was isolated by QIAGEN RNAeasy kit. Differentiations of gene expression were studied by Clon-Tech cDNA microarray methods and the differential expression gene in aged male were classified by Venter's classify system and the candidate genes were investigated by RT-PCR analysis. RESULTS: In the results of cDNA microarray we found 117(1.46%) gene differentiations in aged male at least more than 1.0 fold. Among them, the 83 genes were down-regulated and the 34 genes up-regulated. The down expressed genes related to metabolism were 16(19.3%), gene or protein expression 18(21.7%), cell signaling or cell communication 16(19.3%), cell division 19(22.9%), cell structure or motility 6(7.2%) and unknown function 4 genes (4.8%). The up expressed genes related to cell division were 11 (32.4%), gene or protein expression 10(29.4%) and metabolism 3 (8.8%). It is interesting to find that respiratory chain related gene cox7a2 was up-regulated and atp50 down-regulated significantly which as further confirmed by RT-PCR analysis with sequence analysis in the products of the RT-PCR by T-A cloning. CONCLUSION: The gene expression profile in aged male testis was changed significantly as compared with that in normal young controls; testis regression in aging male may relate multi-gene differentiations, especially the differentiations of respiratory chain related gene cox7a2, atp50, which may be an important candidate gene in the study of the mechanism of testis regression in aging male.

Cell Differentiation↗

Undescended testis: evaluation by magnetic resonance imaging.

We describe our experience of prospective magnetic resonance imaging (MRI) study in patients of undescended testis, with a 1.5 T equipment using body coil. There were thirty two patients, aged 1.5 to 14 years with a mean age of nine years. Surgical follow up was obtained for thirty one patients. We were able to indicate the position of 26 testes in 22 patients and absence of five testes in three patients. MRI was falsely positive and negative for five and two testes, respectively. Testicular tissue at ectopic site was identified by presence of characteristic signal intensity pattern, mediastinum testis and its location along empty spermatic canal in cases of inguinal testis either singly or in combination. MRI was able to detect atrophic changes in four testes, confirmed on surgery. The study concludes that MR imaging is useful in the localization and tissue characterization of a non palpable testis. However, it is not sensitive enough for complete exclusion of the diagnosis of an undescended testis. Thus a surgical or laproscopic exploration may be needed further in selective cases for the management of patient.

Abdomen↗

Immunohistochemical detection of glucose transporters class I subfamily in the mouse, rat and human testis.

A family of glucose transporters (GLUT) mediates the cellular uptake of glucose at the plasma membrane by facilitated diffusion. We investigated the presence of isoforms GLUT1-4 of class I subfamilies in different types of cells in the mouse, rat and human testis by indirect immunofluorescence technique. Immunocytochemical analyses demonstrated that GLUT1 was expressed in the rat testis, GLUT2 in the mouse and rat testis, GLUT3 in the mouse, rat and human testis and GLUT4 was not presented in the testis at all. A very intensive positive immunoreaction for GLUT3 was found in Sertoli cells, peritubular myoid cells, macrophage-like interstitial cells, testicular endothelial cells and early spermatocytes. GLUT3 positive cells were not found in the luminal part of Sertoli cells, spermatids or Leydig cells. The present results suggest that glucose uptake in different testicular cells is mediated by GLUT1, GLUT2 and GLUT3 and the GLUT3 was the prominent glucose transporter type in the testicular cells.

Animals↗

Vitamin E prevents nonylphenol-induced oxidative stress in testis of rats.

In the present study we have investigated if administration of nonylphenol-induced oxidative stress in various subcellular fractions of adult rat testis and the effect of vitamin E on reactive oxygen species mediated nonylphenol toxicity. Male rats were administered orally with nonylphenol at 1, 10 and 100 microg/kg body weight per day for 45 days with and without supplementation of vitamin E (20 mg/kg body weight). In nonylphenol-treated rats the activities of antioxidant enzymes superoxide dismutase and glutathione reductase decreased significantly while the levels of lipid peroxidation increased significantly in the crude homogenate and in the mitochondrial and microsome-rich fractions of testis. Co-administration of nonylphenol and vitamin E did not cause changes in the activities of antioxidant enzymes in various subcellular fractions of rat testis. The results suggest that graded doses of nonylphenol elicit depletion of antioxidant defence system in rat testis, indicating nonylphenol induced oxidative stress in the testis of rats which could be reversed by the administration of vitamin E.

Animals↗

Demonstration of a testis-specific trans-acting factor Tet-1 in vitro that binds to the promoter of the mouse protamine 1 gene.

We have established testis-specific in vitro transcription of the mouse protamine 1 (MP1) gene using rat testis nuclear extracts. Addition of testis nuclear extracts to brain extracts enhanced transcription from the MP1 upstream sequence-carrying adenovirus major late promoter. Moreover, the MP1 upstream region from positions -92 to -41 alone exhibited transcriptional activation in a tissue-specific manner. DNase I footprinting demonstrated the presence of a DNA-binding factor around position -60 (Tet-1) in testis nuclear extracts, but not in other tissues. Gel shift analysis also revealed the presence of testis-specific Tet-1. Since mutational analysis in transcriptional and binding assays demonstrates that the Tet-1 site is responsible for transcriptional activation, we suggest that Tet-1 is a novel tissue-specific trans-acting factor. The Tet-1-recognizing sequence was delineated to the 11-mer TGACTTCATAA at position -64. Although the first 8-mer in the Tet-1 11-mer shares homology with the cyclic AMP-responsive element, Tet-1 is demonstrated to be distinct from known cAMP-responsive element-binding factors.

Adenoviridae↗

[Peroxidative damage induced by cumene hydroperoxide in testis and epididymis of rats in vivo].

OBJECTIVE: To establish an oxidative stress model induced by cumene hydroperoxide (cHP) in testis and epididymis of rats in vivo, and to understand the peroxidative damage of oxidative stress in testis, epididymal sperm and its propensity to induce nuclear DNA damage during spermatogenesis and sperm maturation in vivo. METHODS: An organic hydroperoxide, cHP, 70% aqueous, diluted by 0.9% NaCl, was employed as model prooxidant. Ninety-day-old male Wistar rats were divided into a control and three cHP groups, and were administered intraperitoneally 0, 1/10, 1/6 and 1/4 LD50 cHP per day respectively at a dose of 2 ml/kg, for 7 consecutive days and were observed for any toxic symptoms and mortality. Twenty-four hours after the last dose, rats were sacrificed and induction of oxidative stress was ascertained by monitoring the degree of lipid peroxidation expressed as nano molar of malondialdehyde (MDA) in testicular homogenate and epididymal sperm. Nuclear DNA damage in testes and epididymal sperms was determined by comet assay. Motility of caudal sperms was counted and the morphology of testes and epididymis was observed under light microscope. RESULTS: Rats of cHP administered groups were less vigorous than those of the control, but there were not death of rats during treatment. 1/10 LD50 per day for 7 consecutive days resulted in only a marginal increase in testicular MDA levels. However, 1/6 and 1/ 4 LD50 per day for 7 days of cHP administered to adult rats induced marked oxidative stress in testis and epididymal sperms as evidenced by a marked increase in MDA or nuclear DNA damage in testis and caput sperms, as well as significant decreases both in the body weight-and motility of caudal sperms. While the nuclear DNA damage caput sperms of 1/6 and 1/4 LD50 cHP administered rats increased significantly, nuclear DNA damage in caudal sperms showed no treatment related alterations. CONCLUSION: Oxidative stress in testis and epididymal sperms can be safely induced by applying multiple doses of cHP (1/6 and 1/4 LD50 per day for seven consecutive days). DNA damage caused by cHP induced oxidative stress may occurred mainly in testes.

Animals↗

[The effect of hyperprolactinemia on morphology and function of androgen receptor expressing cells in rat testis, epididymis and prostate].

UNLABELLED: The effects of hyperprolactinemia on the testis, epididymis and prostate are not fully understood. The aim of this study was to determine the influence of hyperprolactinemia induced with metoclopramide (MCP) on expression of the androgen receptor (AR) in the testis, epididymis and the lateral and dorsal lobes of the prostate in rats. Male, sexually mature, inbred Wistar rats were divided into two groups of ten rats each. Hyperprolactynemia was induced in the study group with metoclopramide intraperitoneally at 2.2 mg/kg b. w. for 14 days. Rats of the control group were given saline. Prolactin (PRL) levels in serum were measured with an enzyme immunoassay. Serum levels of testosterone (T) were measured with a radioimmunoassay. The testis, epididymis and lateral and dorsal lobes of the prostate were obtained for light and electron microscopy. The immunohistochemical reaction to AR was assessed by optical density measurements with a computer image analyzer. Ultrastructural studies of androgen receptor expressing cells were carried out with transmission and scanning electron microscopes. RESULTS: PRL concentrations in MCP rats were increased by more than twice, while T concentrations were reduced by half. The intensity of the immunohistochemical reaction to AR in the testis, epididymis and lateral and dorsal lobes of the prostate differed significantly in the study and control groups. Hyperprolactinemia produced structural changes in cells expressing the androgen receptor in the testis, epididymis and the lateral and dorsal lobes of prostate.

Animals↗

[Effects of nonylphenol on testis tissue development and apoptosis of F1 generation male SD rats in weaning].

OBJECTIVE: To study the mechanism of nonylphenol on testis tissue development and apoptosis of F1 generation male SD rats in weaning period. METHODS: Nonylphenol was administrated via gastropipe to pregnant rats at doses of 50, 100 and 200 mg/kg, respectively, from the 7th day of preganacy to weaning. F1 generation male SD rats were sacrificed in the weaning period; their serum levels of nonylpheol were determined. The histopathological examination and immunohistochemical analysis(Bax,Bcl-2,Caspase-3) on testis were also carried out. RESULTS: Compared with control, a higher serum nonylpheol level was found in F1 generation rats treated with nonylpheol 100 and 200 mg/kg. Histopathological examination revealed that rats treated with 200 mg/kg nonylphenol had much smaller diameter of testis seminiferous tubules when compared with those in the control group. Immunohistological analysis showed that the expression of Caspase-3 and Bax in the testis seminiferous tubules increased while the expression of Bcl-2 decreased in three experiment groups. CONCLUSION: All the above data proved that nonylphenol, after being given to pregnant rats, caused apparent damage to the development of testis of F1 generation male SD rats in weaning period.

Animals↗

High androgen receptor immunoexpression in human "Sertoli cell only" testis.

Our purpose was to evaluate cellular androgen receptor (AR) distribution and intensity of immunostaining in the human azoospermic testis. Thirty six biopsy specimens from azoospermic men were immunostained, using a monoclonal antibody of human AR. The localization and the intensity of AR immunostaining was evaluated in Sertoli Cell Only (SCO) testis (G1, n = 21), in spermatogenesis arrest testis (G2, n = 11) and in histologically normal testis (G3, n = 4). We found an AR immunostaining in Sertoli, peritubular myoid and Leydig cells, but not in germ cells. The intensity of the immunostaining varied substantially between biopsy specimens of different patients. Sertoli and Leydig cells AR immunostaining (score and intensity) in SCO group was higher than in the other groups. For Sertoli cells, the score means of AR immunoreactivity were 20 +/- 2.36, 10.18 +/- 1.0 and 1 +/- 1, for G1, G2 and G3 groups, respectively. For Leydig cells, the score means were 10.24 +/- 1.37, 6 +/- 0.71 and 0, for G1, G2 and G3 groups, respectively. We found significant differences between G1 and G2 (p = 0.0008), between G1 and G3 (p = 1.54 10-7) and G2 and G3 (p = 0.00032). These results suggest that in the testis AR is located exclusively in somatic cells and its expression is higher in SCO syndrome than in normal and in arrest spermatogenesis testes.

Androgens↗

[Structure of the rete testis of the cat (Felis domestica, L)].

The rete testis of the cat consists of 3 parts: a septal or interlobular part; a mediastinal part and a tunical part. The septal part contains the septal or transitory tubuli recti and the tubuli recti. The transitory tubules are formed as a confluence of the seminiferous tubules at the apex of the testicular lobules and the tubuli recti. The mediastinal rete is formed of long, straight channels which increase in size and become more irregular and anastomotic below the tunica albuginea at the cranial extremity of the testis. The end is characterized as the tunical part of the rete testis and communicates with the extratesticular rete testis. The channels all parts of the rete are lined by simple cuboidal or columnar epithelium. These epithelial channels are supported by a connective tissue containing smooth muscle cells. The framework tissue of the rete is more conspicuous at the cranial extremity of the testis, with a mio-connective matrix organization.

Animals↗

Changes in nuclear proteins of rat testis cells separated by velocity sedimentation.

The technique of velocity sedimentation at unit gravity has been used to separate rat testis cell suspensions into fractions enriched in particular cell types. Changes in the nuclear proteins from the various fractions have been characterized by polyacrylamide gel electrophoresis, and correlated with the changing morphology of the nucleus during spermatogenesis. The most striking alterations in both protein composition and nuclear morphology occur during spermatid maturation as both histone and non-histone proteins are replaced by highly basic, low molecular weight, spermatidal proteins. This replacement process is accompanied by a quantitative reduction in both histone and non-histone proteins. The synthesis of at least three basic proteins has been identified with late stage spermatids. One of these proteins is a highly basic sperm-specific protein containing high levels of cyst(e)ine and arginine. A second protein synthesized in late stage spermatids is lysine rich, while the third protein contains cyst(e)ine and co-migrates with histone F2a1 on acid-urea polyacrylamide gels. The changes in protein composition of rat testis nuclei after irradiation or hypophysectomy reflect the resulting changes in the cellular composition of the testis. After selective elimination of the germinal cells by irradiation, the electrophoretic pattern of acid-soluble proteins from the testis is very similar to that of somatic tissue. Thus, the cellular specificity of nuclear proteins demonstrated here using cell separation techniques is also apparent following treatments which selectively alter the cellular composition of the testis.

Amino Acids↗