One of the most common lesions present in the spermatozoa of human infertility patients is an idiopathic failure of sperm-egg recognition. Although this unique cellular interaction can now be readily by-passed by assi...One of the most common lesions present in the spermatozoa of human infertility patients is an idiopathic failure of sperm-egg recognition. Although this unique cellular interaction can now be readily by-passed by assisted reproductive strategies such as intracytoplasmic sperm injection (ICSI), recent large-scale epidemiological studies have encouraged the cautious use of this technology and highlighted the need for further research into the mechanisms responsible for defective sperm-egg recognition. Previous work in this field has established that the sperm domains responsible for oocyte interaction are formed during spermatogenesis prior to being dynamically modified during epididymal maturation and capacitation in female reproductive tract. While the factors responsible for the regulation of these sequential maturational events are undoubtedly complex, emerging research has identified the molecular chaperone, heat shock protein A2 (HSPA2), as a key regulator of these events in human spermatozoa. HSPA2 is a testis-enriched member of the 70 kDa heat shock protein family that promotes the folding, transport, and assembly of protein complexes and has been positively correlated with in vitro fertilization (IVF) success. Furthermore, reduced expression of HSPA2 from the human sperm proteome leads to an impaired capacity for cumulus matrix dispersal, sperm-egg recognition and fertilization following both IVF and ICSI. In this review, we consider the evidence supporting the role of HSPA2 in sperm function and explore the potential mechanisms by which it is depleted in the spermatozoa of infertile patients. Such information offers novel insights into the molecular mechanisms governing sperm function.展开更多
Objective To explore the role of urokinase-type plasminogen activator(uPA) in precontact sperm-egg communication and fertility of mice in vitro. Methods Firstly, sperm chemotaxis (SC) induced by uPA was assayed by...Objective To explore the role of urokinase-type plasminogen activator(uPA) in precontact sperm-egg communication and fertility of mice in vitro. Methods Firstly, sperm chemotaxis (SC) induced by uPA was assayed by measuring the sperm densities in capillaries with a descending gradient or no gradient of uPA respectively. Secondly, the role of uPAR that exists in sperm plasma membrane in SC was studied by examining the change of sperm density in capillary after incubating spermatozoa with anti-uPAR antibody. Thirdly, SC induced by eggs, which had been treated with uPA, PAl-1 and anti-uPAR beforehand respectively, was assayed to study the role of uPA in PSEC. Lastly, the fertilization capability of spermatozoa treated with uPA was examined by counting the number of fertilized eggs. Results 1)The density of spermatozoa that migrated down the gradient of uPA into the capillary was significantly lower than that into the capillary containing no-gradient uPA. 2) When uPAR of spermatozoa was inhibited by anti-uPAR antibody, the density of spermatozoa that migrated into the capillary with ascending gradient of uPA decreased correspondingly. 3) The density of spermatozoa attracted by eggs, which were treated with uPA beforehand, increased significantly than that of attracted by non-treated eggs. On the contrary, the sperm density decreased correspondingly when the egg was treated with PAI-1. 4) The number of fertilized eggs increased significantly after the spermatozoa used here was treated with uPA beforehand. Conclusion uPA could induce SC of mice sperm in vitro through the uPAR on its membrane, enhance the capability of egg inducing SC, and promote spermatozoa to fertilize eggs. Thus, uPA may act as an attractant in PSEC, increase the chance encounter of spermatozoa and eggs, therefore, enhance the fertility success correspondingly. This study, in some degree, provides an evidence that uPA may be used as a new medicine and diagnostic reagent for male infertility.展开更多
An average human ejaculate contains over 100 million sperm, but only a few succeed in accomplishing the journey to an egg by migration through the female reproductive tract. Among these few sperm, only one participate...An average human ejaculate contains over 100 million sperm, but only a few succeed in accomplishing the journey to an egg by migration through the female reproductive tract. Among these few sperm, only one participates in fertilization. There might be an ingenious molecular mechanism to ensure that the very best sperm fertilize an egg. However, recent gene disruption experiments in mice have revealed that many factors previously described as important for fertilization are largely dispensable. One could argue that the fertilization mechanism is made robust against gene disruptions. However, this is not likely, as there are already six different gene-disrupted mouse lines (Calmegin, Adam Ia, Adam2, Adam3, Ace and Pgapl), all of which result in male sterility. The sperm from these animals are known to have defective zona-binding ability and at the same time lose oviduct-migrating ability. Concerning spermzona binding, the widely accepted involvement of sugar moiety on zona pellucida 3 (ZP3) is indicated to be dispensable by gene disruption experiments. Thus, the landscape of the mechanism of fertilization is revolving considerably. In the sperm-egg fusion process, CD9 on egg and IZUMO1 on sperm have emerged as essential factors. This review focuses on the mechanism of fertilization elucidated by gene-manipulated animals.展开更多
Three kinds of microinsemination techniques are prevailing all over the world in recent years, i.e. (ⅰ) partial zona dissection (PZD); (ⅱ) subzonal insemination (SUZI), and (ⅲ) intracytoplasmic sperm injection (ICS...Three kinds of microinsemination techniques are prevailing all over the world in recent years, i.e. (ⅰ) partial zona dissection (PZD); (ⅱ) subzonal insemination (SUZI), and (ⅲ) intracytoplasmic sperm injection (ICSI). The common aim of the above techniques is to compensate for the failure or low success of in vitro fertilization and they are effectively used in the human clinics. The success rate of SUZI and ICSI is higher than that of PZD at present. As to the underlying mechanism, most studies were conducted to analyze the physiological effects and success rate or the importance of sperm acrosome reaction,展开更多
To study whether the antibody against the testis form of the nuclear autoantigenic sperm protein(tNASP)could result in reproductive failure,we successfully cloned and expressed a 339-bp cDNA fragment of mouse tNASP(mt...To study whether the antibody against the testis form of the nuclear autoantigenic sperm protein(tNASP)could result in reproductive failure,we successfully cloned and expressed a 339-bp cDNA fragment of mouse tNASP(mtNASP).Using mouse as a model,recombinant mtNASP(rmtNASP)and a synthetic peptide,human tNASP393-408(htNASP393-408),were investigated for their antifertility effect.Active immunization with rmtNASP or the synthesized peptide raised high antibody titers in the immunized mice.Sperm-egg binding and fusion assay were carried out in 8-10-week-old BALB/c mice.Sperm-egg binding and in vitro fertilization of mouse oocytes were inhibited by co-incubation of zona-free mouse oocytes with capacitated mouse spermatozoa in the presence of varying concentrations of the antisera against rmtNASP.There was a significant antifertility effect in animals immunized with rmtNASP or the synthesized peptide.The effect on fertility in the mice immunized with the synthesized peptide was reversible.Our data indicate that active immunization with rmtNASP antigen may induce a strong antibody response that causes an inhibition of fertility.展开更多
文摘One of the most common lesions present in the spermatozoa of human infertility patients is an idiopathic failure of sperm-egg recognition. Although this unique cellular interaction can now be readily by-passed by assisted reproductive strategies such as intracytoplasmic sperm injection (ICSI), recent large-scale epidemiological studies have encouraged the cautious use of this technology and highlighted the need for further research into the mechanisms responsible for defective sperm-egg recognition. Previous work in this field has established that the sperm domains responsible for oocyte interaction are formed during spermatogenesis prior to being dynamically modified during epididymal maturation and capacitation in female reproductive tract. While the factors responsible for the regulation of these sequential maturational events are undoubtedly complex, emerging research has identified the molecular chaperone, heat shock protein A2 (HSPA2), as a key regulator of these events in human spermatozoa. HSPA2 is a testis-enriched member of the 70 kDa heat shock protein family that promotes the folding, transport, and assembly of protein complexes and has been positively correlated with in vitro fertilization (IVF) success. Furthermore, reduced expression of HSPA2 from the human sperm proteome leads to an impaired capacity for cumulus matrix dispersal, sperm-egg recognition and fertilization following both IVF and ICSI. In this review, we consider the evidence supporting the role of HSPA2 in sperm function and explore the potential mechanisms by which it is depleted in the spermatozoa of infertile patients. Such information offers novel insights into the molecular mechanisms governing sperm function.
基金This work is supported by a grant of the National "Tenth Five Years" Key Technologies R&D Programme,China(No.2004BA720A33-01).
文摘Objective To explore the role of urokinase-type plasminogen activator(uPA) in precontact sperm-egg communication and fertility of mice in vitro. Methods Firstly, sperm chemotaxis (SC) induced by uPA was assayed by measuring the sperm densities in capillaries with a descending gradient or no gradient of uPA respectively. Secondly, the role of uPAR that exists in sperm plasma membrane in SC was studied by examining the change of sperm density in capillary after incubating spermatozoa with anti-uPAR antibody. Thirdly, SC induced by eggs, which had been treated with uPA, PAl-1 and anti-uPAR beforehand respectively, was assayed to study the role of uPA in PSEC. Lastly, the fertilization capability of spermatozoa treated with uPA was examined by counting the number of fertilized eggs. Results 1)The density of spermatozoa that migrated down the gradient of uPA into the capillary was significantly lower than that into the capillary containing no-gradient uPA. 2) When uPAR of spermatozoa was inhibited by anti-uPAR antibody, the density of spermatozoa that migrated into the capillary with ascending gradient of uPA decreased correspondingly. 3) The density of spermatozoa attracted by eggs, which were treated with uPA beforehand, increased significantly than that of attracted by non-treated eggs. On the contrary, the sperm density decreased correspondingly when the egg was treated with PAI-1. 4) The number of fertilized eggs increased significantly after the spermatozoa used here was treated with uPA beforehand. Conclusion uPA could induce SC of mice sperm in vitro through the uPAR on its membrane, enhance the capability of egg inducing SC, and promote spermatozoa to fertilize eggs. Thus, uPA may act as an attractant in PSEC, increase the chance encounter of spermatozoa and eggs, therefore, enhance the fertility success correspondingly. This study, in some degree, provides an evidence that uPA may be used as a new medicine and diagnostic reagent for male infertility.
文摘An average human ejaculate contains over 100 million sperm, but only a few succeed in accomplishing the journey to an egg by migration through the female reproductive tract. Among these few sperm, only one participates in fertilization. There might be an ingenious molecular mechanism to ensure that the very best sperm fertilize an egg. However, recent gene disruption experiments in mice have revealed that many factors previously described as important for fertilization are largely dispensable. One could argue that the fertilization mechanism is made robust against gene disruptions. However, this is not likely, as there are already six different gene-disrupted mouse lines (Calmegin, Adam Ia, Adam2, Adam3, Ace and Pgapl), all of which result in male sterility. The sperm from these animals are known to have defective zona-binding ability and at the same time lose oviduct-migrating ability. Concerning spermzona binding, the widely accepted involvement of sugar moiety on zona pellucida 3 (ZP3) is indicated to be dispensable by gene disruption experiments. Thus, the landscape of the mechanism of fertilization is revolving considerably. In the sperm-egg fusion process, CD9 on egg and IZUMO1 on sperm have emerged as essential factors. This review focuses on the mechanism of fertilization elucidated by gene-manipulated animals.
基金Project supported by the Eighth-Five-Year Major Project of the Chinese Academy of SciencesNational Natural Science Foundation of China.
文摘Three kinds of microinsemination techniques are prevailing all over the world in recent years, i.e. (ⅰ) partial zona dissection (PZD); (ⅱ) subzonal insemination (SUZI), and (ⅲ) intracytoplasmic sperm injection (ICSI). The common aim of the above techniques is to compensate for the failure or low success of in vitro fertilization and they are effectively used in the human clinics. The success rate of SUZI and ICSI is higher than that of PZD at present. As to the underlying mechanism, most studies were conducted to analyze the physiological effects and success rate or the importance of sperm acrosome reaction,
基金the National Natural Science Foundation of China(No.30470909 to Chen Xu,and No.30640031 to Chen Xu)the Deng Shan Project of Shanghai Municipal Commission of Science and Technology(No.06JC14046 to Chen Xu)+2 种基金the‘973’Basic Research Funding Scheme of China(No.G199905501 to Chen Xu)the Science Research Project of Science&Technology Commission of Shanghai(No.06ZR14057 to Jian-Li Shi)the Shanghai Leading Academic Discipline Project(No.S30201 to Chen Xu).
文摘To study whether the antibody against the testis form of the nuclear autoantigenic sperm protein(tNASP)could result in reproductive failure,we successfully cloned and expressed a 339-bp cDNA fragment of mouse tNASP(mtNASP).Using mouse as a model,recombinant mtNASP(rmtNASP)and a synthetic peptide,human tNASP393-408(htNASP393-408),were investigated for their antifertility effect.Active immunization with rmtNASP or the synthesized peptide raised high antibody titers in the immunized mice.Sperm-egg binding and fusion assay were carried out in 8-10-week-old BALB/c mice.Sperm-egg binding and in vitro fertilization of mouse oocytes were inhibited by co-incubation of zona-free mouse oocytes with capacitated mouse spermatozoa in the presence of varying concentrations of the antisera against rmtNASP.There was a significant antifertility effect in animals immunized with rmtNASP or the synthesized peptide.The effect on fertility in the mice immunized with the synthesized peptide was reversible.Our data indicate that active immunization with rmtNASP antigen may induce a strong antibody response that causes an inhibition of fertility.