首页> 外文期刊>Scientific reports. >A-Kinase Anchoring Protein 4 (AKAP4) is an ERK1/2 substrate and a switch molecule between cAMP/PKA and PKC/ERK1/2 in human spermatozoa
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A-Kinase Anchoring Protein 4 (AKAP4) is an ERK1/2 substrate and a switch molecule between cAMP/PKA and PKC/ERK1/2 in human spermatozoa

机译:A激酶锚定蛋白4(AKAP4)是ERK1 / 2底物,是人精子中cAMP / PKA和PKC / ERK1 / 2之间的转换分子

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Mammalian spermatozoa undergo capacitation and acrosome reaction in order to fertilize the egg. The PKC-ERK1/2 pathway plays an important role in human spermatozoa motility, capacitation and the acrosome reaction. Here we demonstrate that ERK1/2 phosphorylates proAKAP4 on Thr265 in human spermatozoa in vitro and in vivo. Cyclic AMP (cAMP) had no effect on ERK1/2 activity in human spermatozoa, but stimulated the MAPK in mouse pituitary LβT2 gonadotrope cells. cAMP via PKA attenuates PKC-dependent ERK1/2 activation only in the presence of proAKAP4. St-HT31, which disrupts PKA-regulatory subunit II (PKA-RII) binding to AKAP abrogates the inhibitory effect of cAMP in human spermatozoa and in HEK293T cells expressing proAKAP4. In transfected HEK293T cells, PMA relocated proAKAP4, but not proAKAP4-T265A to the Golgi in an ERK1/2-dependnet manner. Similarly, AKAP4 is localized to the spermatozoa principal piece and is relocated to the mid-piece and the postacrosomal region by PMA. Furthermore, using capacitated sperm we found that cAMP reduced PMA-induced ERK1/2 activation and acrosome reaction. Thus, the physiological role of the negative crosstalk between the cAMP/PKA/AKAP4 and the PKC/ERK1/2 pathways is to regulate capacitation and acrosome reaction.
机译:哺乳动物的精子受精和顶体反应以使卵受精。 PKC-ERK1 / 2途径在人类精子运动,获能和顶体反应中起重要作用。在这里,我们证明了ERK1 / 2在体外和体内都使人类精子Thr265上的proAKAP4磷酸化。环AMP(cAMP)对人精子中ERK1 / 2的活性没有影响,但是刺激了小鼠垂体LβT2促性腺激素细胞中的MAPK。仅在proAKAP4存在的情况下,通过PKA的cAMP才能减弱PKC依赖的ERK1 / 2激活。破坏PKA调节亚基II(PKA-RII)与AKAP结合的St-HT31消除了cAMP在人精子和表达proAKAP4的HEK293T细胞中的抑制作用。在转染的HEK293T细胞中,PMA以ERK1 / 2依赖性方式将proAKAP4而非proAKAP4-T265A迁移至高尔基体。同样,AKAP4定位于精子的主要部分,并通过PMA重新定位到中间部分和顶体后区域。此外,使用获能的精子,我们发现cAMP减少了PMA诱导的ERK1 / 2激活和顶体反应。因此,cAMP / PKA / AKAP4与PKC / ERK1 / 2途径之间的负串扰的生理学作用是调节获能和顶体反应。

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