Publications by authors named "Lis Del Carmen Puga Molina"

Article Synopsis
  • DNAAF5 is a factor linked to primary ciliary dyskinesia (PCD), a genetic condition affecting motile cilia, and its heterozygosity's effects on cilia function were investigated using CRISPR-Cas9 in mice.
  • Mice with different Dnaaf5 gene variants exhibited significant differences in disease severity; those with one missense mutation had better survival and partially functioning cilia compared to those with a null allele or a combination of both.
  • Proteomic and transcriptional analyses indicated variability in protein expression and functionality across different tissues, emphasizing the complexity of genetic influences on cilia assembly and related health outcomes in PCD.
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Unlabelled: DNAAF5 is a dynein motor assembly factor associated with the autosomal heterogenic recessive condition of motile cilia, primary ciliary dyskinesia (PCD). The effects of allele heterozygosity on motile cilia function are unknown. We used CRISPR-Cas9 genome editing in mice to recreate a human missense variant identified in patients with mild PCD and a second, frameshift null deletion in .

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Capacitation is a mandatory process for the acquisition of mammalian sperm fertilization competence and involves the activation of a complex and still not fully understood system of signaling pathways. Under in vitro conditions, there is an increase in both protein tyrosine phosphorylation (pTyr) and intracellular Ca levels in several species. In human sperm, results from our group revealed that pTyr signaling can be blocked by inhibiting proline-rich tyrosine kinase 2 (PYK2).

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Trivalent thallium (Tl(III)) is a highly toxic heavy metal through not completely understood mechanisms. Previously, we demonstrated that Tl(III) causes mitochondrial depolarization in PC12 cells leading to a decrease in cell viability. Given the role of the phospholipid cardiolipin (CL) in mitochondrial events, we evaluated in vitro the short- (2 min) and long- (60 min) time effects of Tl(III) (1-75 microM) on CL-containing membranes physical properties, and the consequences on cytochrome c binding to CL.

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