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Dive into the research topics where Craig Street is active.

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Featured researches published by Craig Street.


PLOS Pathogens | 2009

Genetic Detection and Characterization of Lujo Virus, a New Hemorrhagic Fever–Associated Arenavirus from Southern Africa

Thomas Briese; Janusz T. Paweska; Laura K. McMullan; Stephen K. Hutchison; Craig Street; Gustavo Palacios; Marina L. Khristova; Jacqueline Weyer; Robert Swanepoel; Michael Egholm; Stuart T. Nichol; W. Ian Lipkin

Lujo virus (LUJV), a new member of the family Arenaviridae and the first hemorrhagic fever–associated arenavirus from the Old World discovered in three decades, was isolated in South Africa during an outbreak of human disease characterized by nosocomial transmission and an unprecedented high case fatality rate of 80% (4/5 cases). Unbiased pyrosequencing of RNA extracts from serum and tissues of outbreak victims enabled identification and detailed phylogenetic characterization within 72 hours of sample receipt. Full genome analyses of LUJV showed it to be unique and branching off the ancestral node of the Old World arenaviruses. The virus G1 glycoprotein sequence was highly diverse and almost equidistant from that of other Old World and New World arenaviruses, consistent with a potential distinctive receptor tropism. LUJV is a novel, genetically distinct, highly pathogenic arenavirus.


Emerging Infectious Diseases | 2008

Novel Borna Virus in Psittacine Birds with Proventricular Dilatation Disease

Kirsi S. Honkavuori; H. L. Shivaprasad; Brent L. Williams; Phenix Lan Quan; Mady Hornig; Craig Street; Gustavo Palacios; Stephen K. Hutchison; Monique França; Michael Egholm; Thomas Briese; W. Ian Lipkin

Pyrosequencing of cDNA from brains of parrots with proventricular dilatation disease (PDD), an unexplained fatal inflammatory central, autonomic, and peripheral nervous system disease, showed 2 strains of a novel Borna virus. Real-time PCR confirmed virus presence in brain, proventriculus, and adrenal gland of 3 birds with PDD but not in 4 unaffected birds.


PLOS Pathogens | 2009

Genomic analyses of the microsporidian Nosema ceranae, an emergent pathogen of honey bees

R. Scott Cornman; Yanping Chen; Michael C. Schatz; Craig Street; Yan Zhao; Brian Desany; Michael Egholm; Stephen K. Hutchison; Jeffery S. Pettis; W. Ian Lipkin; Jay D. Evans

Recent steep declines in honey bee health have severely impacted the beekeeping industry, presenting new risks for agricultural commodities that depend on insect pollination. Honey bee declines could reflect increased pressures from parasites and pathogens. The incidence of the microsporidian pathogen Nosema ceranae has increased significantly in the past decade. Here we present a draft assembly (7.86 MB) of the N. ceranae genome derived from pyrosequence data, including initial gene models and genomic comparisons with other members of this highly derived fungal lineage. N. ceranae has a strongly AT-biased genome (74% A+T) and a diversity of repetitive elements, complicating the assembly. Of 2,614 predicted protein-coding sequences, we conservatively estimate that 1,366 have homologs in the microsporidian Encephalitozoon cuniculi, the most closely related published genome sequence. We identify genes conserved among microsporidia that lack clear homology outside this group, which are of special interest as potential virulence factors in this group of obligate parasites. A substantial fraction of the diminutive N. ceranae proteome consists of novel and transposable-element proteins. For a majority of well-supported gene models, a conserved sense-strand motif can be found within 15 bases upstream of the start codon; a previously uncharacterized version of this motif is also present in E. cuniculi. These comparisons provide insight into the architecture, regulation, and evolution of microsporidian genomes, and will drive investigations into honey bee–Nosema interactions.


PLOS ONE | 2010

Heart and skeletal muscle inflammation of farmed salmon is associated with infection with a novel reovirus

Gustavo Palacios; Marie Løvoll; Torstein Tengs; Mady Hornig; Stephen K. Hutchison; Jeffrey Hui; Ruth-Torill Kongtorp; Nazir Savji; Ana Valeria Bussetti; Alexander Solovyov; Anja B. Kristoffersen; Christopher Celone; Craig Street; Vladimir Trifonov; David L. Hirschberg; Raul Rabadan; Michael Egholm; Espen Rimstad; W. Ian Lipkin

Atlantic salmon (Salmo salar L.) mariculture has been associated with epidemics of infectious diseases that threaten not only local production, but also wild fish coming into close proximity to marine pens and fish escaping from them. Heart and skeletal muscle inflammation (HSMI) is a frequently fatal disease of farmed Atlantic salmon. First recognized in one farm in Norway in 1999[1], HSMI was subsequently implicated in outbreaks in other farms in Norway and the United Kingdom[2]. Although pathology and disease transmission studies indicated an infectious basis, efforts to identify an agent were unsuccessful. Here we provide evidence that HSMI is associated with infection with piscine reovirus (PRV). PRV is a novel reovirus identified by unbiased high throughput DNA sequencing and a bioinformatics program focused on nucleotide frequency as well as sequence alignment and motif analyses. Formal implication of PRV in HSMI will require isolation in cell culture and fulfillment of Kochs postulates, or prevention or modification of disease through use of specific drugs or vaccines. Nonetheless, as our data indicate that a causal relationship is plausible, measures must be taken to control PRV not only because it threatens domestic salmon production but also due to the potential for transmission to wild salmon populations.


Proceedings of the National Academy of Sciences of the United States of America | 2013

U1 small nuclear ribonucleoprotein complex and RNA splicing alterations in Alzheimer’s disease

Bing Bai; Chadwick M. Hales; Ping Chung Chen; Yair M. Gozal; Eric B. Dammer; Jason J. Fritz; Xusheng Wang; Qiangwei Xia; Duc M. Duong; Craig Street; Gloria Cantero; Dongmei Cheng; Drew R. Jones; Zhiping Wu; Yuxin Li; Ian Diner; Craig J. Heilman; Howard D. Rees; Hao Wu; Li Lin; Keith E. Szulwach; Marla Gearing; Elliott J. Mufson; David A. Bennett; Thomas J. Montine; Nicholas T. Seyfried; Thomas S. Wingo; Yi E. Sun; Peng Jin; John J. Hanfelt

Deposition of insoluble protein aggregates is a hallmark of neurodegenerative diseases. The universal presence of β-amyloid and tau in Alzheimer’s disease (AD) has facilitated advancement of the amyloid cascade and tau hypotheses that have dominated AD pathogenesis research and therapeutic development. However, the underlying etiology of the disease remains to be fully elucidated. Here we report a comprehensive study of the human brain-insoluble proteome in AD by mass spectrometry. We identify 4,216 proteins, among which 36 proteins accumulate in the disease, including U1-70K and other U1 small nuclear ribonucleoprotein (U1 snRNP) spliceosome components. Similar accumulations in mild cognitive impairment cases indicate that spliceosome changes occur in early stages of AD. Multiple U1 snRNP subunits form cytoplasmic tangle-like structures in AD but not in other examined neurodegenerative disorders, including Parkinson disease and frontotemporal lobar degeneration. Comparison of RNA from AD and control brains reveals dysregulated RNA processing with accumulation of unspliced RNA species in AD, including myc box-dependent-interacting protein 1, clusterin, and presenilin-1. U1-70K knockdown or antisense oligonucleotide inhibition of U1 snRNP increases the protein level of amyloid precursor protein. Thus, our results demonstrate unique U1 snRNP pathology and implicate abnormal RNA splicing in AD pathogenesis.


PLOS Pathogens | 2010

Identification of GBV-D, a Novel GB-like Flavivirus from Old World Frugivorous Bats (Pteropus giganteus) in Bangladesh

Jonathan H. Epstein; Phuong-Lan Quan; Thomas Briese; Craig Street; Omar J. Jabado; Sean Conlan; S. A. Khan; Dawn Verdugo; M. Jahangir Hossain; Stephen K. Hutchison; Michael Egholm; Stephen P. Luby; Peter Daszak; W. Ian Lipkin

Bats are reservoirs for a wide range of zoonotic agents including lyssa-, henipah-, SARS-like corona-, Marburg-, Ebola-, and astroviruses. In an effort to survey for the presence of other infectious agents, known and unknown, we screened sera from 16 Pteropus giganteus bats from Faridpur, Bangladesh, using high-throughput pyrosequencing. Sequence analyses indicated the presence of a previously undescribed virus that has approximately 50% identity at the amino acid level to GB virus A and C (GBV-A and -C). Viral nucleic acid was present in 5 of 98 sera (5%) from a single colony of free-ranging bats. Infection was not associated with evidence of hepatitis or hepatic dysfunction. Phylogenetic analysis indicates that this first GBV-like flavivirus reported in bats constitutes a distinct species within the Flaviviridae family and is ancestral to the GBV-A and -C virus clades.


Emerging Infectious Diseases | 2011

Novel Picornavirus in Turkey Poults with Hepatitis, California, USA

Kirsi S. Honkavuori; H. L. Shivaprasad; Thomas Briese; Craig Street; David L. Hirschberg; Stephen K. Hutchison; W. Ian Lipkin

To identify a candidate etiologic agent for turkey viral hepatitis, we analyzed samples from diseased turkey poults from 8 commercial flocks in California, USA, that were collected during 2008–2010. High-throughput pyrosequencing of RNA from livers of poults with turkey viral hepatitis (TVH) revealed picornavirus sequences. Subsequent cloning of the ≈9-kb genome showed an organization similar to that of picornaviruses with conservation of motifs within the P1, P2, and P3 genome regions, but also unique features, including a 1.2-kb sequence of unknown function at the junction of P1 and P2 regions. Real-time PCR confirmed viral RNA in liver, bile, intestine, serum, and cloacal swab specimens from diseased poults. Analysis of liver by in situ hybridization with viral probes and immunohistochemical testing of serum demonstrated viral nucleic acid and protein in livers of diseased poults. Molecular, anatomic, and immunologic evidence suggests that TVH is caused by a novel picornavirus, tentatively named turkey hepatitis virus.


Journal of General Virology | 2012

Characterization of novel canine bocaviruses and their association with respiratory disease

Amit Kapoor; Natasha Mehta; Edward J. Dubovi; Peter Simmonds; L. Govindasamy; J.L. Medina; Craig Street; Shelly Lynn Shields; W. I. Lipkin

We report the first identification, genetic characterization and disease association studies of several novel species of canine bocaviruses (CBoV). Evolutionary analysis confirmed that CBoV are genetically distinct from the only other known canine bocavirus, minute virus of canines, with which they share less than 63, 62 and 64 % protein identity in NS, NP and VP genes, respectively. Comparative genetic analysis of 37 VP gene variants found in diseased and healthy animals showed that these novel viruses are genetically highly diverse and are common in canine respiratory infections that have remained undetected until now. Interestingly, we observed that a CBoV genotype with a unique deletion in the VP2 gene was significantly more prevalent in animals with respiratory diseases compared with healthy animals.


Journal of General Virology | 2012

Genetic characterization of the Wyeomyia group of orthobunyaviruses and their phylogenetic relationships

Rashmi Chowdhary; Craig Street; Amelia Travassos da Rosa; Márcio Roberto Teixeira Nunes; Kok Keng Tee; Stephen K. Hutchison; Pedro Fernando da Costa Vasconcelos; Robert B. Tesh; W. Ian Lipkin; Thomas Briese

Phylogenetic analyses can give new insights into the evolutionary history of viruses, especially of viruses with segmented genomes. However, sequence information for many viral families or genera is still limited and phylogenies based on single or short genome fragments can be misleading. We report the first genetic analysis of all three genome segments of Wyeomyia group viruses Wyeomyia, Taiassui, Macaua, Sororoca, Anhembi and Cachoeira Porteira (BeAr328208) in the genus Orthobunyavirus of the family Bunyaviridae. In addition, Tucunduba and Iaco viruses were identified as members of the Wyeomyia group. Features of Wyeomyia group members that distinguish them from other viruses in the Bunyamwera serogroup and from other orthobunyaviruses, including truncated NSs sequences that may not counteract the hosts interferon response, were characterized. Our findings also suggest genome reassortment within the Wyeomyia group, identifying Macaua and Tucunduba viruses as M-segment reassortants that, in the case of Tucunduba virus, may have altered pathogenicity, stressing the need for whole-genome sequence information to facilitate characterization of orthobunyaviruses and their phylogenetic relationships.


Proceedings of the National Academy of Sciences of the United States of America | 2014

Activation of transcription and retrotransposition of a novel retroelement, Steamer, in neoplastic hemocytes of the mollusk Mya arenaria

Gloria Arriagada; Michael J. Metzger; Annette F. Muttray; James P. Sherry; Carol L. Reinisch; Craig Street; W. Ian Lipkin; Stephen P. Goff

Significance The soft shell clam in many areas of the North Atlantic is afflicted with a fatal leukemia-like disease of unknown origin. Leukemic cells from the diseased animals were found to release reverse transcriptase and to express high RNA levels of a previously unknown member of the gypsy family of retroelements, Steamer. The DNA copy number of the element was increased to enormously high levels in diseased cells, mediated by reverse transcription and integration into the host genome. The activation of Steamer expression and transposition may initiate or accelerate the course of leukemia and constitutes a potential diagnostic marker of the disease. Bivalve mollusks of the North Atlantic, most prominently the soft shell clam Mya arenaria, are afflicted with an epidemic transmissible disease of the circulatory system closely resembling leukemia. The disease is characterized by a dramatic expansion of blast-like cells in the hemolymph with high mitotic index. Examination of hemolymph of diseased clams revealed high levels of reverse transcriptase activity, the hallmark of retroviruses and retroelements. By deep sequencing of RNAs from hemolymph, we identified transcripts of a novel retroelement, here named Steamer. The DNA of the element is marked by long terminal repeats and encodes a single large protein with similarity to mammalian retroviral Gag-Pol proteins. Steamer mRNA levels were specifically elevated in diseased hemocytes, and high expression was correlated with disease status. DNA copy number per genome was present at enormously high levels in diseased hemocytes, indicative of extensive reverse transcription and retrotransposition. Steamer activation in M. arenaria is an example of a catastrophic induction of genetic instability that may initiate or advance the course of leukemia.

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Omar J. Jabado

Icahn School of Medicine at Mount Sinai

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