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女性生殖组织中的温度梯度。

Temperature gradients in female reproductive tissues.

机构信息

Sidney Sussex College, University of Cambridge, UK.

出版信息

Reprod Biomed Online. 2012 Apr;24(4):377-80. doi: 10.1016/j.rbmo.2011.12.007. Epub 2012 Jan 8.

Abstract

Deep body temperature in mammals is generally but incorrectly regarded as uniform. Alterations of temperature in oviducts and preovulatory Graafian follicles may play a vital role in gamete maturation, fertilization and early embryonic development. At a molecular level, the conformation of regulatory proteins is susceptible to changes in temperature. Deviation from physiological temperature during IVF procedures could thereby exert a profound influence on patterns of gene expression as the embryonic genome unfolds during early cleavage stages and act to generate specific anomalies. Systematic studies are urgently required. The temperature of internal body organs in mammals such as rabbits and humans is widely regarded as uniform, but this is not correct. Temperatures in reproductive tissues such as ovaries and oviducts vary according to the stage of a menstrual or oestrous cycle. Such changes in temperature are thought to be critically involved in the maturation of eggs and spermatozoa and thus in events shortly before and after fertilization. Proteins in the cytoplasm and nuclei of eggs and very young embryos respond to small shifts in temperature by changing their three-dimensional shape. Conformational modifications in regulatory proteins in the nucleus would influence patterns of gene expression in developing embryos and may, when perturbed, alter the sexual phenotype of an individual. In the practical context of IVF, studies are needed of the influence of culturing gametes and embryos at different temperatures and ranges of temperature on the patterns of gene expression in preimplantation embryos.

摘要

哺乳动物的深部体温通常被认为是均匀的,但实际上这是不正确的。输卵管和排卵前的卵泡中的温度变化可能在配子成熟、受精和早期胚胎发育中起着至关重要的作用。在分子水平上,调节蛋白的构象易受温度变化的影响。因此,在体外受精过程中偏离生理温度可能会对胚胎基因组在早期卵裂阶段展开过程中的基因表达模式产生深远影响,并导致特定的异常。迫切需要进行系统的研究。哺乳动物(如兔子和人类)内部器官的温度被广泛认为是均匀的,但实际上并非如此。卵巢和输卵管等生殖组织的温度会根据月经或发情周期的阶段而变化。这种温度变化被认为在卵子和精子的成熟以及受精前后的短时间内起着至关重要的作用。卵子和非常早期胚胎的细胞质和细胞核中的蛋白质通过改变其三维形状来响应微小的温度变化。核中调节蛋白的构象修饰会影响发育中胚胎的基因表达模式,并且在受到干扰时可能会改变个体的性别表型。在体外受精的实际情况下,需要研究在不同温度和温度范围内培养配子和胚胎对植入前胚胎基因表达模式的影响。

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