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1.
邢晓为  李麓芸  卢光琇 《遗传》2007,29(6):699-704
研究小鼠生精新基因SRG4在出生后小鼠睾丸及手术隐睾中的表达特性, 为了解SRG4在精子发生中的作用奠定基础。取出生后1, 3, 12 w小鼠睾丸进行免疫组化检测, 观察SRG4蛋白在出生后小鼠不同发育阶段睾丸中的表达; 制备单侧手术隐睾模型, 取术后0~18 d 的隐睾组织进行半定量RT-PCR检测, 观察SRG4 mRNA在隐睾病变过程中的表达变化, 并对隐睾术后18 d 睾丸进行组织原位杂交分析。免疫组化分析结果表明, SRG4蛋白在出生1 w的小鼠睾丸中几乎检测不到, 在出生3 w的小鼠睾丸中有明显表达, 在出生12 w的小鼠中大量表达, 主要分布在精母细胞和圆形精子细胞胞浆及胞膜, 呈不均匀分布。半定量RT-PCR结果发现, SRG4 mRNA在小鼠隐睾术后0~6 d表达没有明显下调, 9 d 开始表达下调, 第18 d表达最低。组织原位杂交结果表明, 术后18 d隐睾睾丸生殖细胞大量凋亡, 精曲小管中仅见到个别的SRG4阳性信号, 而对照则不受影响。上述结果说明, SRG4蛋白表达受小鼠生长发育调控; 隐睾模型中, 随着生殖细胞的大量凋亡, SRG4基因表达下调, 提示SRG4基因可作为一个精子发生特定阶段的分子标记用以研究精子发生过程。  相似文献   

2.
在Balb/c小鼠精子发生过程中,许多基因都具有严格的时空表达特性.实验利用半定量RT-PCR验证了12个小鼠精子发生相关基因的组织学分布,采用SYBR Green I荧光定量PCR分析了它们在不同发育阶段生精细胞中的差异表达.结果显示,所有基因仅在睾丸组织中高表达;Prm1、Prm2、Tnp1、Tnp2在长形精子细胞中的表达水平最高,分别是粗线期精母细胞阶段的1.9、2.8、3.2和2倍;Dnajb3呈上调表达,在长形精子细胞中的含量是粗线期精母细胞阶段的2.5倍;Akap4在长形精子细胞阶段的表达水平尤为突出,是粗线期精母细胞的5.5倍;Spata3和Spata4在圆形及长形精子细胞中的表达量相近,分别是粗线期精母细胞阶段的3倍和1.5倍;hils1和Tex24在圆形精子细胞阶段的表达水平最高,分别是粗线期精母细胞阶段的1.9和1.4倍;Spag41和Papo1b从粗线期精母细胞到长形精于细胞阶段呈明显的下调表达,分别下降了45%和34%.结果提示,被检测的基因具有明显的阶段特异性表达特征,为深入研究这些基因在小鼠精子发生过程中的作用提供了新资料,同时也为荧光定量PCR技术在精子发生相关基因定量表达研究中的可行性提供了充分例证.  相似文献   

3.
人类生精相关基因TSARG4的cDNA克隆   总被引:4,自引:1,他引:3  
为了探索精子生成的分子机制 ,从人精子外部致密纤维蛋白相关基因SPAG4(spermantigen 4)和小鼠精母细胞中表达的AK0 0 62 2 5基因出发 ,找到两个人类EST ,BG72 0 5 64和AI70 0 45 4,其中BG72 0 5 64在人睾丸中表达。运用“间隙填充法”填平这两个EST之间的间隙 ,从人睾丸文库中快速克隆了同源于SPAG4和AK0 0 62 2 5基因的人类TSARG4基因 (testisandspermatogenesisrelatedgene 4) (GenBank登录号为AF40 13 5 0 ) ,并用RT PCR对该基因阅读框进行验证。TSARG4基因全长 12 5 2bp ,开放阅读框为 94~ 12 3 3bp ,定位于 2 0q11.2 ,推定编码 3 79个氨基酸 ,预计分子量为 43 0 81.45 ,等电点为 8.61,该基因与小鼠精母细胞基因AK0 0 62 2 5编码的氨基酸序列同源性 74% ,与人类SPAG4基因编码的氨基酸序列同源性 45 %。RT PCR表明人类TSARG4基因在多个组织中均有表达 ,而同源的小鼠AK0 0 62 2 5基因仅在睾丸中表达  相似文献   

4.
运用正常可育男性和无精症病人睾丸组织的mRNA差异显示和cDNA末端快速扩增(PACE)等方法,从人睾丸组织中分离了一个同时含有指环结构和C2H2结构域的新型锌指蛋白基因——人ZNF313。运用荧光原位杂交(FISH)方法,将该基因定位到人染色体20q13。该基因含6个外显子,编码228个氨基酸。基因组结构分析显示,外显子6含有的2个加尾信号,产生2种不同的3‘端非翻译区。Northern杂交及多组织RT-PCR的结果显示该基因含有0.75kb和2.4kb两种转录本,其中0.75kb转录本在正常睾丸中高表达,而其他组织、无精症患者及胎儿睾丸组织中该基因代表达。结果提示:人ZNF313基因对精子发生和男性可育性可能起重要作用。  相似文献   

5.
运用数字差异展示方法,克隆一个与生精相关的睾丸高表达基因。借助公共ESTs数据库,利用DDD软件比较分析各种睾丸文库与其他组织或细胞系文库有差异表达的ESTs,成功克隆到一个在人类睾丸中高表达的新基因。结合实验获得新基因cDNA全长,该基因被国际人类基因命名委员会命名为ZNF474(GeneBank登陆号AY461732)。ZNF474的cDNA全长为1 972 bp,定位在5 q23.2。通过RT-PCR及测序验证,其开放阅读框的位置在377 bp~1 471 bp处,编码364个氨基酸,在氨基酸水平与小鼠同源基因有66%的一致性,而与其他已知蛋白质无明显同源性。Northern杂交分析显示ZNF474在成体睾丸组织特异高表达,卵巢组织弱表达,在多种其他组织中不表达,为单一转录本。原位杂交显示ZNF474基因在正常成人睾丸组织各级生精细胞、隐睾组织以及精原细胞癌组织中均有较高表达。综上考虑,推测ZNF474作为生殖细胞中特异的转录因子,对人类的精子发生和卵母细胞的发育可能起重要作用。  相似文献   

6.
从已获得的在隐睾和正常睾丸对照中表达量有明显差异的EST片段(GenBank登录号:BE644538)出发,利用生物信息学和实验技术,克隆了小鼠睾丸生精细胞凋亡相关新基因Mtsarg1及相应的人类新基因TSARG1,Gen-Bank登录号分别为AF399971和AY032925。小鼠Mtsargl与人类TSARGl基因在氨基酸水平有55%的一致性和61%相似性,与其他已知蛋白质无明显同源性。小鼠10种组织的RT-PCR分析结果表明,Mtsargl基因在睾丸中高表达,在附睾中呈微弱表达,在其他组织不表达,提示Mtsargl和TSARGl基因在生精细胞凋亡或精子发生中具有潜在的重要作用。  相似文献   

7.
精子发生过程中的相关基因   总被引:4,自引:1,他引:3  
在哺乳动物精子发生过程中, 原生殖细胞发育成为精原细胞, 再发育为精母细胞, 精母细胞经过两次减数分裂成为圆形精细胞, 这些圆形精细胞经过细胞变态形成精子。精子发生过程经历了复杂的细胞分化阶段, 这一阶段受许多因素的调控作用, 其中生精细胞内的基因调节起着决定作用。精子发生中的重要基因与一系列精子发生过程中阶段性的细胞事件密切相关, 例如减数分裂重组、联会丝复合物的形成、姊妹染色体的结合、减数分裂后精子的变态以及减数分裂周期中的关键点和必需因子等。生精细胞许多特异基因的阶段特异性表达, 参与了精子发生这一特殊的细胞分化过程。近年来随着基因克隆、表达和功能研究技术的发展和应用, 发现了许多与精子发生相关的基因, 而且有的被证明在精子发生过程中具有重要作用。文章较全面综述了这一研究领域的一些进展, 着重讨论了与精子发生相关的周期蛋白基因、原癌基因、无精子因子基因、细胞骨架基因、热休克基因、核蛋白转型基因、中心体蛋白基因和细胞凋亡相关基因等。  相似文献   

8.
运用同源比较和PCR法 ,从人睾丸组织中分离了人受精促进肽受体TCP11基因的一个新的剪切体TCP11b ,它编码 5 0 3个氨基酸的蛋白质 ,与TCP11a相比 ,在基因组的 5′端存在复杂的外显子剪接现象。运用荧光原位杂交 (FISH)方法 ,显示该基因定位到人染色体 6p2 1。Northern杂交及多组织RT PCR的结果显示该转录本在正常睾丸中表达 ,而其他组织、无精症患者及胎儿睾丸组织中未见该基因的表达。该结果结合mTcp 11功能的提示 ,TCP11b这种转录本对精子发生和人受精过程可能起重要作用。  相似文献   

9.
运用正常可育男性和无精症病人睾丸组织的mRNA差异显示和cDNA末端快速扩增 (RACE)等方法 ,从人睾丸组织中分离了一个同时含有指环结构和C2 H2 结构域的新型锌指蛋白基因———人ZNF3 13。运用荧光原位杂交 (FISH)方法 ,将该基因定位到人染色体 2 0q13。该基因含 6个外显子 ,编码 2 2 8个氨基酸。基因组结构分析显示 ,外显子 6含有的 2个加尾信号 ,产生 2种不同的 3′端非翻译区。Northern杂交及多组织RT PCR的结果显示该基因含有 0 .75kb和 2 .4kb两种转录本 ,其中0 .75kb转录本在正常睾丸中高表达 ,而其他组织、无精症患者及胎儿睾丸组织中该基因低表达。结果提示 :人ZNF3 13基因对精子发生和男性可育性可能起重要作用  相似文献   

10.
运用数据库消减杂交筛选出一个在小鼠睾丸中特异表达的新基因--mtIQ2 (Genbank Accession No: DQ153247), Northern blot结果表明该基因的cDNA序列全长为1.2kb,小鼠多组织RT-PCR结果表明:该基因在睾丸中特异表达,而在其他组织中没有表达.运用隐睾模型对该基因的表达研究表明:在手术后第9d,该基因表达急剧下降,到18d完全消失.这些实验提示该基因在睾丸的发育和性成熟过程中可能起重要作用.  相似文献   

11.
Summary The human rete testis was examined with regard to 1) the number and distribution of entrances of seminiferous tubules, 2) the light microscopic topography and 3) details of the passages as revealed by scanning and transmission electron microscopy. In a newborn 1474 entrances were counted, approximately 50 % entering from the right and 50 % from the left of the central long axis. Three major subdivisions of the rete were distinguished and described: a septal (or interlobular) part represented by tubuli recti, a tunical (or mediastinal) part which is a true network of channels, and an extratesticular part characterized by dilatations (up to 3 mm wide) which we have called bullae retis. In SEM, cylindrical strands running from wall to wall in the tunical and extratesticular rete spaces are a prominent feature. We have called these chordae retis. They are covered by epithelium and are 5–40 m wide and 15 to more than 100 m long. They contain a peculiar tissue consisting of central myoid cells in a fibroelastic matrix. The smaller chordae are avascular. In the light of these findings the rete is interpreted as a highly complex myoelastic sponge. Its function is discussed.Supported in part by USPHS Grant HD-03752 and by a Senior Scientist Award from the Alexander von Humboldt-Stiftung which made the co-authorship possibleSupported by a grant from the Deutsche ForschungsgemeinschaftFor their kind support in supplying us with material, we are indebted to Dr. Janssen (Institut für Rechtsmedizin, Universität Hamburg), Dr. Mairose (Zentralkrankenhaus der Justizbehörde, Hamburg) and Dr. Hubman (Allgemeines Krankenhaus St. Georg, Hamburg). We thank Dr. Kaiser (Zoologisches Institut, Universität Hamburg) for his friendly, generous and competent help with the scanning electron microscopy. Ms. Joanna Davis gave invaluable help with the laborious reconstruction of the rete entrances  相似文献   

12.
13.
Testicular ethanol-metabolizing enzymes (alcohol dehydrogenase, microsomal ethanol-oxidizing system, catalase) were investigated. Alcohol dehydrogenase was purified to homogeneity and its main kinetic parameters were analyzed. It was shown that alcohol dehydrogenase corresponds to class III isozymes and does not participate in ethanol oxidation. The testicular microsomal ethanol-oxidizing activity does not exceed 0.02 nmol/min/mg of protein. The activity of catalase and its peroxidase component is far lower in the testes than in the liver. On the whole, testicular tissue is rather inactive in respect of ethanol oxidation.  相似文献   

14.
Aromatase in the human testis   总被引:2,自引:0,他引:2  
Low levels of testicular estrogen synthesis have been reported in a number of species, but the cellular localization has not been unequivocally established. To study aromatase in the human testis, we have combined immunocytochemistry with direct measurement of enzyme activity in the testicular 6μm cryosections. Thus, the functionality of the immunoreaction and its sensitivity can be assessed in quantitative terms. Testes were obtained from immediate autopsy from men aged 18–53 years, from surgery from two patients with prostatic cancer (67 and 74 years) and from two normal children aged 8 months and 3 years at autopsy. Benign testicular sex cord tumors were also examined from two unrelated patients aged 5 and 8 years with gynecomastia and diagnosed with Peutz-Jeghers syndrome. Our results consistently showed low to moderate staining intensity of immunoreactive aromatase in comparison to that of normal human placental cryosections. Immunoreactive aromatase was only present in the interstitial Leydig cells and absent from the Sertoli cells of all normal adult testes showing spermatogenesis. Aromatase activity correlated well with the intensity of the immunostain. However, there was no obvious relationship between the level of aromatase activity and increasing age. Generally higher levels were present in testes of young men (18–22 years). No immunostain in any cell type was detected in one 33-year-old patient with testicular cancer. In the testes of the two normal prepubertal boys, no immunostaining was observed. However, intensely stained Sertoli cells as well as high aromatase activity were observed in the testicular tumors of the patients with Peutz-Jeghers syndrome. Our results suggest that Leydig cells are the source of aromatase in normal men but that Sertoli cells may express this enzyme under abnormal conditions. The combined methods for measuring enzyme activity and immunoreactive aromatase are suitable for application to tissues expressing low levels of aromatase.  相似文献   

15.
The testes are where spermatogenesis, the sperm‐generating process that is unique to men, occurs. Importantly, human spermatogenesis and tumorigenesis share key similarities. Until now, only a few proteins in the human testis have been identified due to limitations of available technology. In this paper, using an advanced proteomics platform, we have identified 7346 unique proteins within the human testis with a high degree of confidence. Immunohistochemistry data from the Human Protein Atlas database show over 90% (1833/2020) of identified proteins can be detected in the human testis using specific antibodies. To make the data widely available to the scientific community, an online Human Testis Proteome Database (HTPD, http://reprod.njmu.edu.cn/htpd/ ) was built. Many of the identified human testicular proteins are associated with human infertility, especially human testicular predominantly expressed proteins. We characterized six novel cancer/testis genes (TMPRSS12, TPPP2, PRSS55, DMRT1, PIWIL1, HEMGN), which map to cancer‐associated genetic variants positions, in both the cancer and testis tissues using genome‐wide analyses. Our results provide a molecular connection between spermatogenesis and tumorigenesis and broaden the range of cancer antigen choice available for immunotherapy.  相似文献   

16.
A protein fraction from human testis was structurally investigated. The main component of the fraction reported to contain inhibin-like activity was purified and analyzed by tryptic digestion. The peptides obtained identified the protein as an enzyme, superoxide dismutase, previously known to be present in seminal plasma. The results show that superoxide dismutase is a major enzyme, also of testicular material. They further demonstrate the importance of using pure fractions, and controls such as checks with structural analysis or synthetic peptides, in the work of elucidating the nature of inhibin and other hormonal peptides.  相似文献   

17.
Incubation of human testicular homogenates with [4-14C]pregnenolone gave substantial amounts of an unknown metabolite within 1 min, reaching plateau values of 17–23% of total radioactivity added within 5 min. Mass spectrometry of the metabolite showed it to be identical to the boar sex pheromone precursor androsta-5,16-diene-3β-ol (ADL). In cell cultures the major source of ADL and its dehydrogenated metabolite androsta-4,16-diene-3-one (ADN) was the Leydig cell. In rat and monkey testicular homogenates 16-ene-synthetase activity, a prerequisite for the synthesis of ADL and ADN, was completely lacking, limiting the presence of 16-androstenes to boars and men. In contrast to boars, however, in the human testis no 5-reductase activity was found and consequently no 5-reduced-16-androstenes, e.g. androstenol (AL, musk like) and androstenone (AN, urine like), known sex pheromones in pigs. As both sex pheromones have been identified in urine, plasma, sweat and saliva of men and (especially hirsute) women we hypothesize that AL and AN are synthesized from ADL via ADN peripherically in tissues rich in 5-reductase, i.e. skin, axillary sweat glands and probably also the salivary glands. So far, there is some evidence that both sex pheromones may have similar functions in humans as in boars.  相似文献   

18.
19.
In order to further characterize the Sertoli cell state of differentiation, we investigated the expression of connexin 43 (cx43) protein in the testis of adult men both with normal spermatogenesis and associated with spermatogenic impairment, since cx43 is first expressed during puberty. Cx43 protein was found as a single 43-kDa band on western blots of extracts of normal human testicular material. Cx43 immunoreactivity was generally present between Leydig cells. Within the normal seminiferous epithelium cx43 immunoreactivity was localized between adjacent Sertoli cells, except at stages II and III of the seminiferous epithelial cycle when primary spermatocytes cross from the basal to the adluminal compartment suggesting a stage-dependent Sertoli cell function. While testes with hypospermatogenesis and spermatogenic arrest at the level of round spermatids or spermatocytes revealed a staining pattern similar to that of normal adult testis, the seminiferous tubules showing spermatogenic arrest at the level of spermatogonia and Sertoli-cell-only syndrome were completely immunonegative. We therefore assume that severe spermatogenic impairment is associated with a population of Sertoli cells exhibiting a stage of differentiation deficiency. Accepted: 10 June 1999  相似文献   

20.
Summary Thirteen male human foetuses ranging in crown-rump length from 29 to 212 mm (ages 8–27 weeks) were studied. Four developmental phases are distinguished. 1. The predifferentiation phase (below 8 weeks): The interstitium contains only undifferentiated mesenchymal cells. 2. The differentiation phase (8–14 weeks): Leydig cells develop and gradually fill the space between the germ cords. 3. The maturity phase (14–18 weeks): The interstitium occupies more than one half of the total area in the testis sections and is filled with mature foetal Leydig cells. 4. The involution phase (18–40 weeks): Most of the Leydig cells gradually degenerate and disappear.The foetal Leydig cells are packed with tubular agranular endoplasmic reticulum (AER). Islets of parallel granular ER membranes and other organelles are embedded in the AER. The mitochondria vary in shape and form, the cristae being mainly tubular. Some mitochondria like organelles contain electron dense inclusions. Dark membrane bound bodies of variable form and resembling the Golgi cisternae are present in most cells. Reinke crystals are never found in the foetal cells. In degenerating Leydig cells the AER appears in vesicular form, membranous whorls are seen in some of them and the cell membrane seems to rupture finally, and cytoplasmic material protrudes outside the cells. The fine structure of the mature foetal Leydig cells is suggested to reflect signs of human chorionic gonadotrophin stimulation.This investigation was supported by the Damon Runyon Memorial Fund (DRG-940) and by the Sigrid Jusélius Foundation.  相似文献   

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