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首页> 外文期刊>Reviews of Reproduction >Induction of expression and phosphorylation of heat shock protein B5 (CRYAB) in rat myometrium during pregnancy and labour
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Induction of expression and phosphorylation of heat shock protein B5 (CRYAB) in rat myometrium during pregnancy and labour

机译:妊娠和分娩期大鼠子宫肌层热休克蛋白B5(CRYAB)的表达和磷酸化诱导

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During pregnancy the myometrium undergoes a programme of differentiation induced by endocrine, cellular, and biophysical inputs. Small heat shock proteins (HSPs) are a family of ten (B1–B10) small-molecular-weight proteins that not only act as chaperones, but also assist in processes such as cytoskeleton rearrangements and immune system activation. Thus, it was hypothesized that HSPB5 (CRYAB) would be highly expressed in the rat myometrium during the contractile and labour phases of myometrial differentiation when such processes are prominent. Immunoblot analysis revealed that myometrial CRYAB protein expression significantly increased from day (D) 15 to D23 (labour; P<0.05). In correlation with these findings, serine 59-phosphorylated (pSer59) CRYAB protein expression significantly increased from D15 to D23, and was also elevated 1-day post-partum (P<0.05). pSer59-CRYAB was detected in the cytoplasm of myocytes within both uterine muscle layers mid- to late-pregnancy. In unilaterally pregnant rats, pSer59-CRYAB protein expression was significantly elevated in the gravid uterine horns at both D19 and D23 of gestation compared with non-gravid horns. Co-immunolocalization experiments using the hTERT-human myometrial cell line and confocal microscopy demonstrated that pSer59-CRYAB co-localized with the focal adhesion protein FERMT2 at the ends of actin filaments as well as with the exosomal marker CD63. Overall, pSer59-CRYAB is highly expressed in myometrium during late pregnancy and labour and its expression appears to be regulated by uterine distension. CRYAB may be involved in the regulation of actin filament dynamics at focal adhesions and could be secreted by exosomes as a prelude to involvement in immune activation in the myometrium.
机译:在怀孕期间,子宫内膜经历由内分泌,细胞和生物物理输入引起的分化程序。小型热激蛋白(HSP)是十个(B1-B10)小分子量蛋白家族,不仅充当分子伴侣,而且还协助细胞骨架重排和免疫系统激活等过程。因此,假设当此类过程突出时,HSPB5(CRYAB)在子宫肌层分化的收缩和分娩阶段会在大鼠子宫肌层高表达。免疫印迹分析显示,肌层CRYAB蛋白表达从(D)第15天到D23明显增加(分娩; P <0.05)。与这些发现相关,丝氨酸59-磷酸化(pSer59)CRYAB蛋白表达从D15到D23显着增加,并且在产后1天也升高(P <0.05)。在妊娠中期至晚期,在两个子宫肌层的心肌细胞质中均检测到了pSer59-CRYAB。在单侧妊娠大鼠中,与非重症角质相比,妊娠D19和D23时妊娠子宫角中pSer59-CRYAB蛋白表达显着升高。使用hTERT-人类肌层细胞系和共聚焦显微镜进行的免疫共定位实验表明,pSer59-CRYAB与聚焦粘附蛋白FERMT2共同定位在肌动蛋白丝末端以及外泌体标记CD63。总体而言,pSer59-CRYAB在妊娠晚期和分娩期间在子宫肌层中高表达,其表达似乎受子宫扩张的调节。 CRYAB可能参与粘着层肌动蛋白丝动力学的调节,并可能由外泌体分泌,作为参与子宫肌层免疫激活的前奏。

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