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1.
Int J Mol Sci ; 25(1)2023 Dec 21.
Artículo en Inglés | MEDLINE | ID: mdl-38203282

RESUMEN

Synaptic plasticity enhances or reduces connections between neurons, affecting learning and memory. Postsynaptic AMPARs mediate greater than 90% of the rapid excitatory synaptic transmission in glutamatergic neurons. The number and subunit composition of AMPARs are fundamental to synaptic plasticity and the formation of entire neural networks. Accordingly, the insertion and functionalization of AMPARs at the postsynaptic membrane have become a core issue related to neural circuit formation and information processing in the central nervous system. In this review, we summarize current knowledge regarding the related mechanisms of AMPAR expression and trafficking. The proteins related to AMPAR trafficking are discussed in detail, including vesicle-related proteins, cytoskeletal proteins, synaptic proteins, and protein kinases. Furthermore, significant emphasis was placed on the pivotal role of the actin cytoskeleton, which spans throughout the entire transport process in AMPAR transport, indicating that the actin cytoskeleton may serve as a fundamental basis for AMPAR trafficking. Additionally, we summarize the proteases involved in AMPAR post-translational modifications. Moreover, we provide an overview of AMPAR transport and localization to the postsynaptic membrane. Understanding the assembly, trafficking, and dynamic synaptic expression mechanisms of AMPAR may provide valuable insights into the cognitive decline associated with neurodegenerative diseases.


Asunto(s)
Depresores del Sistema Nervioso Central , Receptores AMPA , Sistema Nervioso Central , Neuronas , Cognición , Aprendizaje
2.
J Biol Chem ; 290(35): 21280-91, 2015 Aug 28.
Artículo en Inglés | MEDLINE | ID: mdl-26178372

RESUMEN

Decidualization is an essential process of maternal endometrial stromal cells to support pregnancy. Although it is known that enhanced glucose influx is critical for decidualization, the underlying mechanism in regulating glucose metabolism in decidua remains insufficiently understood. Here, we demonstrate that aerobic glycolysis-related genes and factors are all substantially induced during decidualization, indicating the existence of Warburg-like glycolysis in decidua. In vitro, progesterone activates hypoxia-inducible factor 1α (Hif1α) and c-Myc through Pi3k-Akt signaling pathway to maintain aerobic glycolysis in decidualizing cells. Knocking down of pyruvate kinase M2 (Pkm2) attenuates the induction of decidual marker gene. Decidual formation in vivo is also impaired by glycolysis inhibitor 3-bromopyruvate. Besides, lactate exporter monocarboxylate transporter 4 (Mct4) is induced in newly formed decidual cells, whereas lactate importer Mct1 and proliferation marker Ki-67 are complementarily located in the surrounding undifferentiated cells, which are supposed to consume lactate for proliferation. Hif1α activation is required for lactate-dependent proliferation of the undifferentiated cells. Inhibition of lactate flux leads to compromised decidualization and decelerated lactate-dependent proliferation. In summary, we reveal that Warburg-like glycolysis and local lactate shuttle are activated in decidua and play important roles for supporting early pregnancy.


Asunto(s)
Endometrio/citología , Glucólisis , Ácido Láctico/metabolismo , Ratones/fisiología , Preñez/fisiología , Animales , Células Cultivadas , Endometrio/fisiología , Femenino , Subunidad alfa del Factor 1 Inducible por Hipoxia/metabolismo , Embarazo , Progesterona/metabolismo , Células del Estroma/citología , Células del Estroma/metabolismo
3.
Cells ; 13(3)2024 Jan 23.
Artículo en Inglés | MEDLINE | ID: mdl-38334598

RESUMEN

(1) Background: Inflammatory responses are implicated in embryo implantation, decidualization, pregnancy maintenance and labor. Both embryo implantation and decidualization are essential to successful pregnancy in rodents and primates. S100A6 is involved in inflammation, tumor development, apoptosis and calcium homeostasis. S100A6 is strongly expressed in mouse decidua, but the underlying mechanisms of how S100A6 regulates implantation and decidualization are poorly defined. (2) Methods: Mouse endometrial stromal and epithelial cells are isolated from day 4 pseudopregnant mouse uteri. Both immunofluorescence and Western blotting are used to analyze the expression and localization of proteins. The molecular mechanism is verified in vitro by Western blotting and the quantitative polymerase chain reaction. (3) Results: From days 4 to 8 of pregnancy, S100A6 is specifically expressed in mouse subluminal stromal cells. Blastocyst-derived lactic acid induces AA secretion by activating the luminal epithelial p-cPLA2. The epithelial AA induces stromal S100A6 expression through the COX2/PGI2/PPAR δ pathway. Progesterone regulates S100A6 expression through the progesterone receptor (PR). S100A6/RAGE signaling can regulate decidualization via EGFR/ERK1/2 in vitro. (4) Conclusions: S100A6, as an inflammatory mediator, is important for mouse implantation and decidualization.


Asunto(s)
Decidua , Útero , Embarazo , Femenino , Animales , Ratones , Ácido Araquidónico/metabolismo , Útero/metabolismo , Implantación del Embrión/fisiología , Blastocisto
4.
Cell Cycle ; 14(12): 1842-58, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-25892397

RESUMEN

Polyploid decidual cells are specifically differentiated cells during mouse uterine decidualization. However, little is known about the regulatory mechanism and physiological significance of polyploidization in pregnancy. Here we report a novel role of E2F8 in the polyploidization of decidual cells in mice. E2F8 is highly expressed in decidual cells and regulated by progesterone through HB-EGF/EGFR/ERK/STAT3 signaling pathway. E2F8 transcriptionally suppresses CDK1, thus triggering the polyploidization of decidual cells. E2F8-mediated polyploidization is a response to stresses which are accompanied by decidualization. Interestingly, polyploidization is not detected during human decidualization with the down-regulation of E2F8, indicating differential expression of E2F8 may lead to the difference of decidual cell polyploidization between mice and humans.


Asunto(s)
Decidua/fisiología , Proteínas Represoras/fisiología , Animales , Proteína Quinasa CDC2/metabolismo , Línea Celular , Quinasas Ciclina-Dependientes/metabolismo , Daño del ADN , Femenino , Citometría de Flujo , Hepatocitos/metabolismo , Humanos , Ratones , Microscopía Fluorescente , Ovario/metabolismo , Poliploidía , Embarazo , Preñez , Progesterona/metabolismo , Transducción de Señal , Superóxido Dismutasa/metabolismo , Útero/metabolismo
5.
Reprod Sci ; 21(6): 724-32, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24336673

RESUMEN

Secretin, a classical gastrointestinal and neuroendocrine peptide, plays an important role in maintaining the body fluid balance. However, the expression and regulation of secretin in the reproductive system are still unknown. In our study, secretin is specifically expressed in the decidua on days 5 to 8 of pregnancy. Secretin expression is not detected under delayed implantation but is stimulated after estrogen activation and under artificial decidualization. Progesterone induces secretin expression in ovariectomized mice and cultured stromal cells, which is abrogated by specific LY294002. Because secretin is mainly localized in the decidua and also strongly expressed during in vitro decidualization, secretin may play a role during mouse decidualization through regulating cyclic adenosine monophosphate level.


Asunto(s)
Implantación del Embrión/fisiología , Regulación del Desarrollo de la Expresión Génica , Progesterona/farmacología , Secretina/biosíntesis , Útero/metabolismo , Animales , Células Cultivadas , Implantación del Embrión/efectos de los fármacos , Femenino , Ratones , Embarazo , Progesterona/fisiología , Útero/efectos de los fármacos
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