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Dive into the research topics where Walter H. A. Kahr is active.

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Featured researches published by Walter H. A. Kahr.


Nature Genetics | 2011

Mutations in NBEAL2, encoding a BEACH protein, cause gray platelet syndrome

Walter H. A. Kahr; Jesse Hinckley; Ling Li; Hansjörg Schwertz; Hilary Christensen; Jesse W. Rowley; Fred G. Pluthero; Denisa Urban; Shay Fabbro; Brie Nixon; Rick Gadzinski; Mike Storck; Kai Wang; Gi Yung Ryu; Shawn M. Jobe; Brian C. Schutte; Jack Moseley; Noeleen B. Loughran; John Parkinson; Andrew S. Weyrich; Jorge Di Paola

Next-generation RNA sequence analysis of platelets from an individual with autosomal recessive gray platelet syndrome (GPS, MIM139090) detected abnormal transcript reads, including intron retention, mapping to NBEAL2 (encoding neurobeachin-like 2). Genomic DNA sequencing confirmed mutations in NBEAL2 as the genetic cause of GPS. NBEAL2 encodes a protein containing a BEACH domain that is predicted to be involved in vesicular trafficking and may be critical for the development of platelet α-granules.


Blood | 2010

Anucleate platelets generate progeny

Hansjörg Schwertz; Sarah Köster; Walter H. A. Kahr; Noemi Michetti; Bjoern F. Kraemer; David A. Weitz; Robert C. Blaylock; Larry W. Kraiss; Andreas Greinacher; Guy A. Zimmerman; Andrew S. Weyrich

Platelets are classified as terminally differentiated cells that are incapable of cellular division. However, we observe that anucleate human platelets, either maintained in suspension culture or captured in microdrops, give rise to new cell bodies packed with respiring mitochondria and alpha-granules. Platelet progeny formation also occurs in whole blood cultures. Newly formed platelets are structurally indistinguishable from normal platelets, are able to adhere and spread on extracellular matrix, and display normal signal-dependent expression of surface P-selectin and annexin V. Platelet progeny formation is accompanied by increases in biomass, cellular protein levels, and protein synthesis in expanding populations. Platelet numbers also increase during ex vivo storage. These observations indicate that platelets have a previously unrecognized capacity for producing functional progeny, which involves a form of cell division that does not require a nucleus. Because this new function of platelets occurs outside of the bone marrow milieu, it raises the possibility that thrombopoiesis continues in the bloodstream.


Nature Genetics | 2015

Germline mutations in ETV6 are associated with thrombocytopenia, red cell macrocytosis and predisposition to lymphoblastic leukemia

Leila Noetzli; Richard W. Lo; Alisa B. Lee-Sherick; Michael U. Callaghan; Patrizia Noris; Anna Savoia; Madhvi Rajpurkar; Kenneth L. Jones; Katherine Gowan; Carlo L. Balduini; Alessandro Pecci; Chiara Gnan; Daniela De Rocco; Michael Doubek; Ling Li; Lily Lu; Richard Leung; Carolina Landolt-Marticorena; Stephen P. Hunger; Paula G. Heller; Arthur Gutierrez-Hartmann; Liang Xiayuan; Fred G. Pluthero; Jesse W. Rowley; Andrew S. Weyrich; Walter H. A. Kahr; Christopher C. Porter; Jorge Di Paola

Some familial platelet disorders are associated with predisposition to leukemia, myelodysplastic syndrome (MDS) or dyserythropoietic anemia. We identified a family with autosomal dominant thrombocytopenia, high erythrocyte mean corpuscular volume (MCV) and two occurrences of B cell–precursor acute lymphoblastic leukemia (ALL). Whole-exome sequencing identified a heterozygous single-nucleotide change in ETV6 (ets variant 6), c.641C>T, encoding a p.Pro214Leu substitution in the central domain, segregating with thrombocytopenia and elevated MCV. A screen of 23 families with similar phenotypes identified 2 with ETV6 mutations. One family also had a mutation encoding p.Pro214Leu and one individual with ALL. The other family had a c.1252A>G transition producing a p.Arg418Gly substitution in the DNA-binding domain, with alternative splicing and exon skipping. Functional characterization of these mutations showed aberrant cellular localization of mutant and endogenous ETV6, decreased transcriptional repression and altered megakaryocyte maturation. Our findings underscore a key role for ETV6 in platelet formation and leukemia predisposition.


PLOS Pathogens | 2011

Novel Anti-bacterial Activities of β-defensin 1 in Human Platelets: Suppression of Pathogen Growth and Signaling of Neutrophil Extracellular Trap Formation

Bjoern F. Kraemer; Robert A. Campbell; Hansjörg Schwertz; Mark J. Cody; Zechariah G. Franks; Neal D. Tolley; Walter H. A. Kahr; Stephan Lindemann; Peter Seizer; Christian C. Yost; Guy A. Zimmerman; Andrew S. Weyrich

Human β-defensins (hBD) are antimicrobial peptides that curb microbial activity. Although hBDs are primarily expressed by epithelial cells, we show that human platelets express hBD-1 that has both predicted and novel antibacterial activities. We observed that activated platelets surround Staphylococcus aureus (S. aureus), forcing the pathogens into clusters that have a reduced growth rate compared to S. aureus alone. Given the microbicidal activity of β-defensins, we determined whether hBD family members were present in platelets and found mRNA and protein for hBD-1. We also established that hBD-1 protein resided in extragranular cytoplasmic compartments of platelets. Consistent with this localization pattern, agonists that elicit granular secretion by platelets did not readily induce hBD-1 release. Nevertheless, platelets released hBD-1 when they were stimulated by α-toxin, a S. aureus product that permeabilizes target cells. Platelet-derived hBD-1 significantly impaired the growth of clinical strains of S. aureus. hBD-1 also induced robust neutrophil extracellular trap (NET) formation by target polymorphonuclear leukocytes (PMNs), which is a novel antimicrobial function of β-defensins that was not previously identified. Taken together, these data demonstrate that hBD-1 is a previously-unrecognized component of platelets that displays classic antimicrobial activity and, in addition, signals PMNs to extrude DNA lattices that capture and kill bacteria.


British Journal of Haematology | 2008

Clinical features and outcome of pulmonary embolism in children

Tina Biss; Walter H. A. Kahr; Anthony K.C. Chan; Suzan Williams

Pulmonary embolism (PE) is rare in childhood but evidence suggests it is under‐recognised. Children diagnosed with PE at a large tertiary centre over an 8‐year period were retrospectively reviewed. Fifty‐six children with radiologically proven PE were identified, 31 males and 25 females, median age 12 years. Eighty‐four per cent had symptoms of PE. Risk factors for thromboembolism were present in 54 patients (96·4%); most commonly immobility (58·9%), central venous line (35·7%) and recent surgery (28·6%). Investigation revealed a thrombophilic abnormality in 14/40 patients (35%). Concurrent deep vein thrombosis was confirmed in 31 patients (55·4%), predominantly lower limb. D dimer was elevated at presentation in 26/30 patients (86·7%). Eight patients underwent systemic thrombolysis. An inferior vena cava filter was placed in five patients. Therapy was complicated by major haemorrhage in 12 patients (21·4%). The majority (82·1%) had complete or partial resolution of PE following a median of 3 months anticoagulation. Seven patients had a recurrent thromboembolic event and 12 patients died (mortality 21·4%); five due to thromboembolism (8·9%) and two due to haemorrhage. Risk factors for PE in children are distinct from adults and morbidity and mortality is significant. Multicentre prospective studies are required to determine optimal treatment and long‐term outcome of childhood PE.


Blood | 2013

Abnormal megakaryocyte development and platelet function in Nbeal2(-/-) mice.

Walter H. A. Kahr; Richard W. Lo; Ling Li; Fred G. Pluthero; Hilary Christensen; Ran Ni; Nima Vaezzadeh; Cynthia Hawkins; Andrew S. Weyrich; Jorge Di Paola; Carolina Landolt-Marticorena; Peter L. Gross

Gray platelet syndrome (GPS) is an inherited bleeding disorder associated with macrothrombocytopenia and α-granule-deficient platelets. GPS has been linked to loss of function mutations in NEABL2 (neurobeachin-like 2), and we describe here a murine GPS model, the Nbeal2(-/-) mouse. As in GPS, Nbeal2(-/-) mice exhibit splenomegaly, macrothrombocytopenia, and a deficiency of platelet α-granules and their cargo, including von Willebrand factor (VWF), thrombospondin-1, and platelet factor 4. The platelet α-granule membrane protein P-selectin is expressed at 48% of wild-type levels and externalized upon platelet activation. The presence of P-selectin and normal levels of VPS33B and VPS16B in Nbeal2(-/-) platelets suggests that NBEAL2 acts independently of VPS33B/VPS16B at a later stage of α-granule biogenesis. Impaired Nbeal2(-/-) platelet function was shown by flow cytometry, platelet aggregometry, bleeding assays, and intravital imaging of laser-induced arterial thrombus formation. Microscopic analysis detected marked abnormalities in Nbeal2(-/-) bone marrow megakaryocytes, which when cultured showed delayed maturation, decreased survival, decreased ploidy, and developmental abnormalities, including abnormal extracellular distribution of VWF. Our results confirm that α-granule secretion plays a significant role in platelet function, and they also indicate that abnormal α-granule formation in Nbeal2(-/-) mice has deleterious effects on megakaryocyte survival, development, and platelet production.


Gastroenterology | 2010

Mutations in TTC37 Cause Trichohepatoenteric Syndrome (Phenotypic Diarrhea of Infancy)

Jane Hartley; Nicholas C. Zachos; Ban Dawood; Mark Donowitz; Julia R. Forman; R. J. Pollitt; Neil V. Morgan; Louise Tee; Paul Gissen; Walter H. A. Kahr; Alex S. Knisely; Steve P. Watson; David Chitayat; I W Booth; Sue Protheroe; Stephen Murphy; Esther de Vries; Deirdre Kelly; Eamonn R. Maher

BACKGROUND & AIMS Trichohepatoenteric syndrome (THES) is an autosomal-recessive disorder characterized by life-threatening diarrhea in infancy, immunodeficiency, liver disease, trichorrhexis nodosa, facial dysmorphism, hypopigmentation, and cardiac defects. We attempted to characterize the phenotype and elucidate the molecular basis of THES. METHODS Twelve patients with classic THES from 11 families had detailed phenotyping. Autozygosity mapping was undertaken in 8 patients from consanguineous families using 250,000 single nucleotide polymorphism arrays and linked regions evaluated using microsatellite markers. Linkage was confirmed to one region from which candidate genes were analyzed. The effect of mutations on protein production and/or localization in hepatocytes and intestinal epithelial cells from affected patients was characterized by immunohistochemistry. RESULTS Previously unrecognized platelet abnormalities (reduced platelet alpha-granules, unusual stimulated alpha granule content release, abnormal lipid inclusions, abnormal platelet canalicular system, and reduced number of microtubules) were identified. The THES locus was mapped to 5q14.3-5q21.2. Sequencing of candidate genes showed mutations in TTC37, which encodes the uncharacterized tetratricopeptide repeat protein, thespin. Bioinformatic analysis suggested thespin to be involved in protein-protein interactions or chaperone. Preliminary studies of enterocyte brush-border ion transporter proteins (sodium hydrogen exchanger 2, sodium hydrogen exchanger 3, aquaporin 7, sodium iodide symporter, and hydrogen potassium adenosine triphosphatase [ATPase]) showed reduced expression or mislocalization in all THES patients with different profiles for each. In contrast the basolateral localization of Na/K ATPase was not altered. CONCLUSIONS THES is caused by mutations in TTC37. TTC37 mutations have a multisystem effect, which may be owing to abnormal stability and/or intracellular localization of TTC37 target proteins.


Blood | 2009

Fibrinogen is required for maintenance of platelet intracellular and cell-surface P-selectin expression

Hong Yang; Sean Lang; Zhimin Zhai; Ling Li; Walter H. A. Kahr; Pingguo Chen; Jelena Brkić; Christopher M. Spring; Matthew J. Flick; Jay L. Degen; John Freedman; Heyu Ni

Platelet P-selectin plays important roles in inflammation and contributes to thrombosis and hemostasis. Although it has been reported that von Willebrand factor (VWF) affects P-selectin expression on endothelial cells, little information is available regarding regulation of platelet P-selectin expression. Here, we first observed that P-selectin expression was significantly decreased on platelets of fibrinogen and VWF double-deficient mice. Subsequently, we identified this was due to fibrinogen deficiency. Impaired P-selectin expression on fibrinogen-deficient platelets was further confirmed in human hypofibrinogenemic patients. We demonstrated that this impairment is unlikely due to excessive P-selectin shedding, deficient fibrinogen-mediated cell surface P-selectin binding, or impaired platelet granule release, but rather is due to decreased platelet P-selectin content. Fibrinogen transfusion completely recovered this impairment in fibrinogen-deficient (Fg(-/-)) mice, and engagement of the C-terminus of the fibrinogen gamma chain with beta3 integrin was required for this process. Furthermore, Fg(-/-) platelets significantly increased P-selectin expression following transfusion into beta3 integrin-deficient mice and when cultured with fibrinogen. These data suggest fibrinogen may play important roles in inflammation, thrombosis, and hemostasis via enhancement of platelet P-selectin expression. Since human fibrinogen levels vary significantly in normal and diseased populations, P-selectin as an activation marker on platelets should be used with caution.


Blood | 2009

Platelet-associated complement factor H in healthy persons and patients with atypical HUS

Christoph Licht; Fred G. Pluthero; Ling Li; Hilary Christensen; Sandra Habbig; Bernd Hoppe; Denis F. Geary; Peter F. Zipfel; Walter H. A. Kahr

Atypical hemolytic uremic syndrome (aHUS) is associated with complement system dysregulation, and more than 25% of pediatric aHUS cases are linked to mutations in complement factor H (CFH) or CFH autoantibodies. The observation of thrombocytopenia and platelet-rich thrombi in the glomerular microvasculature indicates that platelets are intimately involved in aHUS pathogenesis. It has been reported that a releasable pool of platelet CFH originates from alpha-granules. We observed that platelet CFH can arise from endogenous synthesis in megakaryocytes and that platelets constitutively lacking alpha-granules contain CFH. Electron and high-resolution laser fluorescence confocal microscopy revealed that CFH was present throughout the cytoplasm and on the surface of normal resting platelets with no evident concentration in alpha-granules, lysosomes, or dense granules. Therapeutic plasma transfusion in a CFH-null aHUS patient revealed that circulating platelets take up CFH with similar persistence of CFH in platelets and plasma in vivo. Washed normal platelets were also observed to take up labeled CFH in vitro. Exposure of washed normal platelets to plasma of an aHUS patient with CFH autoantibodies produced partial platelet aggregation or agglutination, which was prevented by preincubation of platelets with purified CFH. This CFH-dependent response did not involve P-selectin mobilization, indicating a complement-induced platelet response distinct from alpha-granule secretion.


Journal of Cell Biology | 2011

The full-of-bacteria gene is required for phagosome maturation during immune defense in Drosophila

Mohammed Ali Akbar; Charles Tracy; Walter H. A. Kahr; Helmut Krämer

Drosophila fob encodes a homolog of the Vps16 HOPS complex subunit, required for phagosome maturation and digestion of engulfed pathogens.

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Ling Li

University of Toronto

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