SUMMARY Transcription activator-like effector nucleases (TALENs) are a new class of engineered nucleases that are easier to design to cleave at desired sites in a genome than previous types of nucleases. We report the use of TALENs to rapidly and efficiently generate mutant alleles of 15 genes in cultured somatic cells or human pluripotent stem cells, the latter of which we differentiated both the targeted lines and isogenic control lines into various metabolic cell types. We demonstrate cell-autonomous phenotypes directly linked to disease—dyslipidemia, insulin resistance, hypoglycemia, lipodystrophy, motor neuron death, and hepatitis C infection. We find little evidence of TALEN off-target effects, but each clonal line nevertheless harbors a significant number of unique mutations. Given the speed and ease with which we were able to derive and characterize these cell lines, we anticipate TALEN-mediated genome editing of human cells becoming a mainstay for the investigation of human biology and disease.
Background and Aims Coronavirus disease 2019 (COVID‐19) leads to elevated liver biochemistries in approximately half of patients on presentation. To date, data are limited regarding the trend of liver biochemistries over the course of illness. We aimed to evaluate the trend, etiology, and outcomes associated with liver biochemistries in COVID‐19. Approach and Results A total of 60 patients with COVID‐19 were admitted between March 21 and March 28, 2020. The mean age was 57 years, 65% were male, and 28% were Hispanic. At the study conclusion, 6 patients were deceased, 28 were discharged, and 26 remained admitted. Patients who remained admitted were followed for a median of 12 days. Of 60 patients, 41 (69%) had at least one abnormal liver biochemistry on admission. Median aspartate aminotransferase (AST) was higher than alanine aminotransferase (ALT) at admission (46 vs. 30 U/L) and during the hospital course. Aminotransferases rose above normal in 54 (93%) patients, whereas alkaline phosphatase and total bilirubin elevations were rare. Ten (17%) patients developed aminotransferases more than 5 times the upper limit of normal. AST highly correlated with ALT throughout the illness course (r = 0.97; P < 0.0001), whereas correlations with markers of muscle injury and inflammation were weak. Statin use was common before (40%) and during admission (80%) at our center, with no difference in peak liver biochemistries between users and nonusers. No demographic or comorbid illness was associated with liver injury. Admission AST (69 vs. 49; P < 0.05), peak AST (364 vs. 77; P = 0.003), and peak ALT (220 vs. 52; P = 0.002) were higher in intubated patients. Conclusions AST‐dominant aminotransferase elevation is common in COVID‐19, mirrors disease severity, and appears to reflect true hepatic injury.
Several genome-wide association studies (GWAS) have identified a genetic polymorphism associated with the gene locus for interleukin 28B (IL28B), a type III interferon (IFN), as a major predictor of clinical outcome in hepatitis C. Antiviral effects of the type III IFN family have previously been shown against several viruses, including hepatitis C virus (HCV), and resemble the function of type I IFN including utilization of the intracellular JAK-STAT pathway. Effects unique to IL28B that would distinguish it from IFN-α are not well defined. By analyzing the transcriptomes of primary human hepatocytes (PHH) treated with IFN-α or IL28B, we sought to identify functional differences between IFN-α and IL28B to better understand the roles of these cytokines in the innate immune response. Although our data did not reveal distinct gene signatures, we detected striking kinetic differences between IFN-α and IL28B stimulation for interferon stimulated genes (ISGs). While gene induction was rapid and peaked at 8 h of stimulation with IFN-α in PHH, IL28B produced a slower, but more sustained increase in gene expression. We confirmed these findings in the human hepatoma cell line Huh7.5.1. Interestingly, in HCV infected cells, the rapid response after stimulation with IFN-α was blunted, and the induction pattern resembled that caused by IL28B. In conclusion, we describe the kinetics of gene induction as being fundamentally different for stimulations with either IFN-α or IL28B in hepatocytes suggesting distinct roles of these cytokines within the immune response. Furthermore, we demonstrate that the observed differences are substantially altered by infection with the hepatitis C virus.
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