Johnson, Janel O. Chia, Ruth Landers, John E.
SPTLC1 encodes a critical subunit of serine palmitoyltransferase, the enzyme catalyzing the first and rate-limiting step in de novo sphingolipid biosynthesis, and mutations in this gene are known to cause hereditary sensory autonomic neuropathy, type 1A. Using exome sequencing, we identified a de novo variant in SPTLC1 resulting in a p.Ala20Ser ami...
Zhang, Jingyan Li, Xuhang Olmedo, Maria Holdorf, Amy D. Shang, Ye Artal-Sanz, Marta Yilmaz, L. Safak Walhout, Albertha J. M.
Iron is an essential micronutrient for all forms of life; low levels of iron cause human disease, while too much iron is toxic. Low iron levels induce reactive oxygen species (ROS) by disruption of the heme and iron-sulfur cluster-dependent electron transport chain (ETC). To identify bacterial metabolites that affect development, we screened the Ke...
Nama, Srikanth Muhuri, Manish Di Pascale, Federica Quah, Shan Aswad, Luay Fullwood, Melissa Sampath, Prabha
Breast cancer manifests as a spectrum of subtypes with distinct molecular signatures, and different responses to treatment. Of these subtypes, triple-negative breast cancer (TNBC) has the worst prognoses and limited therapeutic options. Here we report aberrant expression of microRNA-138 (miR-138) in TNBC. Increased miR-138 expression is highly spec...
Silvas, Tania V. Schiffer, Celia A.
Nucleic acid editing enzymes are essential components of the human immune system that lethally mutate viral pathogens and somatically mutate immunoglobulins. Among these enzymes are cytidine deaminases of the apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like (APOBEC) super family, each with unique target sequence specificity and subc...
Zhang, Xiao-Ou Gingeras, Thomas R. Weng, Zhiping
Alu elements are one of the most successful families of transposons in the human genome. A portion of Alu elements is transcribed by RNA Pol III, whereas the remaining ones are part of Pol II transcripts. Because Alu elements are highly repetitive, it has been difficult to identify the Pol III-transcribed elements and quantify their expression leve...
Viny, Aaron D. Liu, Yu Dekker, Job Levine, Ross L.
Transcriptional regulators, including the cohesin complex member STAG2, are recurrently mutated in cancer. The role of STAG2 in gene regulation, hematopoiesis, and tumor suppression remains unresolved. We show that Stag2 deletion in hematopoietic stem and progenitor cells (HSPCs) results in altered hematopoietic function, increased self-renewal, an...
Libbrecht, Maxwell W. Rodriguez, Oscar L. Weng, Zhiping Bilmes, Jeffrey A. Hoffman, Michael M. Noble, William Stafford
Semi-automated genome annotation methods such as Segway take as input a set of genome-wide measurements such as of histone modification or DNA accessibility and output an annotation of genomic activity in the target cell type. Here we present annotations of 164 human cell types using 1615 data sets. To produce these annotations, we automated the la...
Giampetruzzi, Anthony Danielson, Eric W. Gumina, Valentina Jeon, Maryangel Boopathy, Sivakumar Ratti, Antonia Landers, John E. Fallini, Claudia
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease of unknown etiology. Although defects in nucleocytoplasmic transport (NCT) may be central to the pathogenesis of ALS and other neurodegenerative diseases, the molecular mechanisms modulating the nuclear pore function are still largely unknown. Here we show that genetic and pha...
Phillips, Helen M. Maehr, Rene Bamforth, Simon D.
Developmental defects affecting the heart and aortic arch arteries are a significant phenotype observed in 22q11 deletion syndrome patients and are caused by a microdeletion on chromosome 22q11. TBX1, one of the deleted genes, is expressed throughout the pharyngeal arches and is considered a key gene, when mutated, for the arch artery defects. Pax9...
Sorvillo, Nicoletta Mizurini, Daniella M. Coxon, Carmen Martinod, Kimberly Tilvawala, Ronak Cherpokova, Deya Salinger, Ari J. Seward, Robert J. Staudinger, Caleb Weerapana, Eranthie
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RATIONALE: PAD4 (peptidylarginine deiminase type IV), an enzyme essential for neutrophil extracellular trap formation (NETosis), is released together with neutrophil extracellular traps into the extracellular milieu. It citrullinates histones and holds the potential to citrullinate other protein targets. While NETosis is implicated in thrombosis, t...