Function of a voltage-sensitive phosphatase in the regulation of sperm-egg fusion
Function of a voltage-sensitive phosphatase in the regulation of sperm-egg fusion
批准号:
8009338
负责人:
LAURINDA A. JAFFE
金额:
$22.1万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-03 至 2012-08-31
关键词:
AnimalsBiologyEmbryonic DevelopmentEnsureExperimental ModelsFertilizationFutureHeadLipidsMembraneMembrane PotentialsMethodsMolecularMutatePhosphatidylinositolsPhosphoric Monoester HydrolasesPhysiologicalPreventionProcessProteinsRanaRegulationReproductive MedicineRoleSperm HeadSperm MotilitySperm TailTailTestingTransgenic OrganismsXenopusbasebiological systemsegginsightpreventpublic health relevanceresearch studyresponsesensorsperm cellvoltagevoltage clamp
中文摘要
描述(由申请者提供):这个项目将研究确保每个卵子只由一个精子受精的分子机制,从而允许正常的胚胎发育。在许多动物物种中,防止多精受精的一个重要组成部分是卵膜在第一个精子融合时的电去极化,这会阻止额外的精子融合。检测卵子中电压变化的传感器已知位于精子中,但尚未在分子水平上确定。拟议中的研究将探讨这个问题,重点是最近发现的一种电压激活的磷脂酰肌醇脂肪磷酸酶,该酶在精子中表达。激活磷酸酶的电压和抑制精子-卵子融合的电压之间的密切关联支持了这一假说。具体目的一是研究电压敏感磷酸酶(VSP)在精子膜中的定位。在精子-卵子融合发生的头部区域的定位将支持VSP在这一过程中的调节作用。或者,尾部区域的定位将支持它在调节精子运动方面的作用。具体目标二将使用一种转基因青蛙来研究VSP的功能,转基因青蛙的精子表达一种点突变形式的蛋白质,其中磷酸酶在更负的电压下激活。这些功能实验的方向将由目标一号的结果决定。如果VSP定位于精子头部,转基因精子将被应用于电压钳制的卵子,以测试修改后的VSP的存在是否改变了抑制精子-卵子融合的电压。或者,如果VSP定位于精子尾部,将研究修改后的VSP对精子活力的影响。通过利用精子-卵子融合依赖于电压的独特生物系统,这些研究将深入了解磷脂酰肌醇脂类在调节融合过程中的可能功能,并将测试电压敏感磷酸酶在精子中这一机制和其他生理调节机制中的作用。这些发现将有助于理解受精的生物学,并将为未来生殖医学的发展提供基础。
与公共卫生相关:该项目将研究确保每个卵子只由一个精子受精的分子机制,从而使正常的胚胎发育得以发生。这些发现将有助于理解受精的生物学,并将为未来生殖医学的发展提供基础。
英文摘要
DESCRIPTION (provided by applicant): This project will investigate the molecular mechanisms that ensure that each egg is fertilized by only one sperm, thus allowing normal embryonic development to occur. In many animal species, one essential component of polyspermy prevention is an electrical depolarization of the egg membrane in response to fusion of the first sperm, which prevents the fusion of additional sperm. The sensor that detects the voltage change in the egg is known to be located in the sperm, but has not been identified on a molecular level. The proposed studies will investigate this question, focusing on a recently discovered voltage-activated phosphatidylinositol lipid phosphatase that is expressed in sperm. A close correlation between the voltage that activates the phosphatase and the voltage that inhibits sperm-egg fusion supports this hypothesis. Specific aim one will investigate the localization of the voltage-sensitive phosphatase (VSP) in the sperm membrane. Localization in the head region, where sperm-egg fusion occurs, would support a role for the VSP in the regulation of this process. Alternatively, localization in the tail region would support its role in the regulation of sperm motility. Specific aim two will investigate the function of the VSP, using a transgenic frog whose sperm express a point-mutated form of the protein in which the phosphatase activates at a more negative voltage. The direction of these functional experiments will be determined by the results of aim one. If the VSP is localized in the sperm head, transgenic sperm will be applied to voltage-clamped eggs to test whether the presence of the modified VSP shifts the voltage that inhibits sperm-egg fusion. Alternatively, if the VSP is localized in the sperm tail, the effect of the modified VSP on sperm motility will be investigated. By taking advantage of a unique biological system in which sperm-egg fusion is voltage dependent, these studies will provide insights into the possible function of phosphatidylinositol lipids in regulating the fusion process, and will test the role of a voltage-sensitive phosphatase in this and other physiological regulatory mechanisms in sperm. The findings will contribute to understanding of the biology of fertilization, and will provide a basis for future advances in reproductive medicine.
PUBLIC HEALTH RELEVANCE: This project will investigate the molecular mechanisms that ensure that each egg is fertilized by only one sperm, thus allowing normal embryonic development to occur. The findings will contribute to understanding of the biology of fertilization, and will provide a basis for future advances in reproductive medicine.
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会议论文
Function of a voltage-sensitive phosphatase in the regulation of sperm-egg fusion
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