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1.
Sheng Li Xue Bao ; 75(6): 946-952, 2023 Dec 25.
Artículo en Zh | MEDLINE | ID: mdl-38151356

RESUMEN

Our previous study has shown that p66Shc plays an important role in the process of myocardial regeneration in newborn mice, and p66Shc deficiency leads to weakened myocardial regeneration in newborn mice. This study aims to explore the role of p66Shc protein in myocardial injury repair after myocardial infarction in adult mice, in order to provide a new target for the treatment of myocardial injury after myocardial infarction. Mouse myocardial infarction models of adult wild-type (WT) and p66Shc knockout (KO) were constructed by anterior descending branch ligation. The survival rate and heart-to-body weight ratio of two models were compared and analyzed. Masson's staining was used to identify scar area of injured myocardial tissue, and myocyte area was determined by wheat germ agglutinin (WGA) staining. TUNEL staining was used to detect the cardiomyocyte apoptosis. The protein expression of brain natriuretic peptide (BNP), a common marker of myocardial hypertrophy, was detected by Western blotting. The results showed that there was no significant difference in survival rate, myocardial scar area, myocyte apoptosis, and heart weight to body weight ratio between the WT and p66ShcKO mice after myocardial infarction surgery. Whereas the protein expression level of BNP in the p66ShcKO mice was significantly down-regulated compared with that in the WT mice. These results suggest that, unlike in neonatal mice, the deletion of p66Shc has no significant effect on myocardial injury repair after myocardial infarction in adult mice.


Asunto(s)
Infarto del Miocardio , Estrés Oxidativo , Animales , Ratones , Peso Corporal , Cicatriz/metabolismo , Ratones Noqueados , Infarto del Miocardio/genética , Proteínas Adaptadoras de la Señalización Shc/metabolismo , Proteína Transformadora 1 que Contiene Dominios de Homología 2 de Src/genética , Proteína Transformadora 1 que Contiene Dominios de Homología 2 de Src/metabolismo
2.
Cell Metab ; 36(1): 7-9, 2024 01 02.
Artículo en Inglés | MEDLINE | ID: mdl-38171339

RESUMEN

Spinal cord-associated disorders are common in the elderly population; however, the mechanisms underlying spinal aging remain elusive. In a recent Nature paper, Sun et al. systemically analyzed aged spines in nonhuman primates and identified a new cluster of CHIT1-positive microglia that drives motor neuron senescence and subsequent spine aging.


Asunto(s)
Neuronas Motoras , Médula Espinal , Animales , Humanos , Anciano , Envejecimiento/fisiología , Microglía
3.
EBioMedicine ; 101: 104995, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38350330

RESUMEN

RNA splicing is an important RNA processing step required by multiexon protein-coding mRNAs and some noncoding RNAs. Precise RNA splicing is required for maintaining gene and cell function; however, mis-spliced RNA transcripts can lead to loss- or gain-of-function effects in human diseases. Mis-spliced RNAs induced by gene mutations or the dysregulation of splicing regulators may result in frameshifts, nonsense-mediated decay (NMD), or inclusion/exclusion of exons. Genetic animal models have characterised multiple splicing factors required for cardiac development or function. Moreover, sarcomeric and ion channel genes, which are closely associated with cardiovascular function and disease, are hotspots for AS. Here, we summarise splicing factors and their targets that are associated with cardiovascular diseases, introduce some therapies potentially related to pathological AS targets, and raise outstanding questions and future directions in this field.


Asunto(s)
Empalme Alternativo , Enfermedades Cardiovasculares , Animales , Humanos , Enfermedades Cardiovasculares/genética , Enfermedades Cardiovasculares/terapia , Mutación , Degradación de ARNm Mediada por Codón sin Sentido , Factores de Empalme de ARN/genética
4.
Nat Commun ; 15(1): 6843, 2024 Aug 10.
Artículo en Inglés | MEDLINE | ID: mdl-39122671

RESUMEN

Despite the potential of small molecules and recombinant proteins to enhance the efficiency of homology-directed repair (HDR), single-stranded DNA (ssDNA) donors, as currently designed and chemically modified, remain suboptimal for precise gene editing. Here, we screen the biased ssDNA binding sequences of DNA repair-related proteins and engineer RAD51-preferred sequences into HDR-boosting modules for ssDNA donors. Donors with these modules exhibit an augmented affinity for RAD51, thereby enhancing HDR efficiency across various genomic loci and cell types when cooperated with Cas9, nCas9, and Cas12a. By combining with an inhibitor of non-homologous end joining (NHEJ) or the HDRobust strategy, these modular ssDNA donors achieve up to 90.03% (median 74.81%) HDR efficiency. The HDR-boosting modules targeting an endogenous protein enable a chemical modification-free strategy to improve the efficacy of ssDNA donors for precise gene editing.


Asunto(s)
ADN de Cadena Simple , Edición Génica , Recombinasa Rad51 , Reparación del ADN por Recombinación , ADN de Cadena Simple/metabolismo , ADN de Cadena Simple/genética , Humanos , Edición Génica/métodos , Recombinasa Rad51/metabolismo , Recombinasa Rad51/genética , Sistemas CRISPR-Cas , Células HEK293 , Proteínas Asociadas a CRISPR/metabolismo , Proteínas Asociadas a CRISPR/genética , Proteína 9 Asociada a CRISPR/metabolismo , Proteína 9 Asociada a CRISPR/genética , Proteínas Bacterianas/metabolismo , Proteínas Bacterianas/genética , Endodesoxirribonucleasas/metabolismo , Endodesoxirribonucleasas/genética , Reparación del ADN por Unión de Extremidades
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