INRA, UMR85 Physiologie de la Reproduction et des Comportements, F-37380 Nouzilly, France.
Hum Reprod. 2013 Feb;28(2):430-41. doi: 10.1093/humrep/des412. Epub 2012 Nov 30.
Does BCAR4 have a role in mammalian embryo development?
Expression, localization and functional data support that BCAR4 is a maternal-effect protein in non-rodent mammals.
BCAR4 was previously identified as an oocyte-specific gene in cattle, and as a marker of certain breast tumors in humans.
STUDY DESIGN, SIZE, DURATION: Human oocytes were obtained from patients undergoing IVF, but had failed to mature after ovarian stimulation. Dog oocytes were obtained from ovariectomized bitches. Pig, horse and bovine ovaries were obtained from commercial slaughterhouses for extraction of immature oocyte-cumulus complexes. In vivo matured bovine matured oocytes were obtained after ovulation induction and ovulation inducing treatment of Montbeliard heifers.
MATERIALS, SETTING AND METHODS: Expression at the RNA level was analyzed by reverse transcription coupled to polymerase chain reaction. Western blot and immunolabeling coupled to confocal or electronic microscopy were used to analyze bovine protein expression and intracellular localization. For the functional approach, short-interfering RNA were microinjected into mature bovine oocytes, followed by IVF; cleavage and embryo development were recorded.
The BCAR4 gene is conserved in mammalian species from various orders and has been lost in rodents after divergence with lagomorphs. The transcript is expressed in the oocytes of humans and domestic species. We bring the first experimental evidence of the BCAR4 protein in mammals. In cattle, the protein is not detected in immature oocytes but starts to be synthesized during maturation, increases in the zygote and persists until the morula stage. The protein is detected throughout the cytoplasm in mature oocytes, concentrates in and around the pronuclei in the zygote, and appears to shuttle in and out of the nuclei starting in the 2-cell embryo; BCAR4 is also present at the junctions between blastomeres from 2-cell to morula. In our functional approach, targeting the BCAR4 transcript by small-interfering RNA significantly compromised development to the morula or/and blastocyst stages (P < 0.05, logistic regression).
LIMITATIONS, REASONS FOR CAUTION: As indicated above, protein expression and function were investigated in cattle and mostly in vitro matured oocytes were used.
This study provides a novel candidate gene whose mutation or deregulation may underlie certain cases of unexplained female infertility.
BCAR4 在哺乳动物胚胎发育中是否发挥作用?
表达、定位和功能数据支持 BCAR4 是一种非啮齿类哺乳动物的母源性效应蛋白。
BCAR4 先前被鉴定为牛的卵母细胞特异性基因,以及人类某些乳腺癌的标志物。
研究设计、规模、持续时间:从接受 IVF 的患者中获得人类卵母细胞,但在卵巢刺激后未能成熟。从去卵巢的母犬中获得犬卵母细胞。从商业屠宰场获得猪、马和牛的卵巢,以提取未成熟的卵母细胞-卵丘复合物。通过蒙贝利亚尔小母牛的排卵诱导和排卵诱导处理,获得体内成熟的牛成熟卵母细胞。
材料、设置和方法:通过逆转录聚合酶链反应分析 RNA 水平的表达。通过 Western blot 和免疫标记结合共聚焦或电子显微镜分析牛蛋白表达和细胞内定位。对于功能方法,将短干扰 RNA 微注射到成熟的牛卵母细胞中,然后进行 IVF;记录卵裂和胚胎发育。
BCAR4 基因在来自不同目哺乳动物物种中保守,在与兔形目分化后在啮齿动物中丢失。该转录本在人类和家畜的卵母细胞中表达。我们提供了哺乳动物中 BCAR4 蛋白的第一个实验证据。在牛中,该蛋白在未成熟的卵母细胞中未检测到,但在成熟过程中开始合成,在合子中增加并持续到桑葚胚阶段。在成熟的卵母细胞中,该蛋白在整个细胞质中被检测到,在合子的原核周围和内部浓缩,并在 2 细胞胚胎中开始在核内外穿梭;BCAR4 也存在于 2 细胞至桑葚胚的胚胎分裂之间的连接处。在我们的功能方法中,通过小干扰 RNA 靶向 BCAR4 转录本显著影响胚胎发育到桑葚胚或/和囊胚阶段(P<0.05,逻辑回归)。
局限性、谨慎的原因:如上所述,在牛中进行了蛋白质表达和功能研究,并且主要使用体外成熟的卵母细胞。
本研究提供了一个新的候选基因,其突变或失调可能是某些不明原因女性不孕的基础。