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  • 1
    Publication Date: 2019
    Description: 〈p〉Complex genetic mechanisms are thought to underlie many human diseases, yet experimental proof of this model has been elusive. Here, we show that a human cardiac anomaly can be caused by a combination of rare, inherited heterozygous mutations. Whole-exome sequencing of a nuclear family revealed that three offspring with childhood-onset cardiomyopathy had inherited three missense single-nucleotide variants in the 〈i〉MKL2〈/i〉, 〈i〉MYH7〈/i〉, and 〈i〉NKX2-5〈/i〉 genes. The 〈i〉MYH7〈/i〉 and 〈i〉MKL2〈/i〉 variants were inherited from the affected, asymptomatic father and the rare 〈i〉NKX2-5〈/i〉 variant (minor allele frequency, 0.0012) from the unaffected mother. We used CRISPR-Cas9 to generate mice encoding the orthologous variants and found that compound heterozygosity for all three variants recapitulated the human disease phenotype. Analysis of murine hearts and human induced pluripotent stem cell–derived cardiomyocytes provided histologic and molecular evidence for the 〈i〉NKX2-5〈/i〉 variant’s contribution as a genetic modifier.〈/p〉
    Print ISSN: 0036-8075
    Electronic ISSN: 1095-9203
    Topics: Biology , Chemistry and Pharmacology , Computer Science , Medicine , Natural Sciences in General , Physics
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  • 2
    Publication Date: 2017-02-19
    Description: Replacement of precious noble metal catalysts with low-cost, non-noble heterogeneous catalysts for chemoselective reduction and reductive coupling of nitro compounds holds tremendous promise for the clean synthesis of nitrogen-containing chemicals. We report a robust cobalt–nitrogen/carbon (Co–N x /C-800-AT) catalyst for the reduction and reductive coupling of nitro compounds into amines and their derivates. The Co–N x /C-800-AT catalyst was prepared by the pyrolysis of cobalt phthalocyanine–silica colloid composites and the subsequent removal of silica template and cobalt nanoparticles. The Co–N x /C-800-AT catalyst showed extremely high activity, chemoselectivity, and stability toward the reduction of nitro compounds with H 2 , affording full conversion and 〉97% selectivity in water after 1.5 hours at 110°C and under a H 2 pressure of 3.5 bar for all cases. The hydrogenation of nitrobenzene over the Co–N x /C-800-AT catalyst can even be smoothly performed under very mild conditions (40°C and a H 2 pressure of 1 bar) with an aniline yield of 98.7%. Moreover, the Co–N x /C-800-AT catalyst has high activity toward the transfer hydrogenation of nitrobenzene into aniline and the reductive coupling of nitrobenzene into other derivates with high yields. These processes were carried out in an environmentally friendly manner without base and ligands.
    Electronic ISSN: 2375-2548
    Topics: Natural Sciences in General
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