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Record, J.

Publications and source records attributed to Record, J..

2 recordsLinked to original sources

A systematic approach to understanding how patient variants affect the activity of Wiskott-Aldrich syndrome protein

Wiskott-Aldrich syndrome (WAS) and X-linked neutropenia (XLN) are caused by genetic variants in the WAS gene. How WAS variants lead to clinical disease remains unsolved in many cases. We expressed human WASp using a spider silk inspired solubility tag (NT*-tag) and inserted patients variants. Native mass spectrometry and pyrene actin assays showed that five variants (L270P, F271S, S272P, I290T, I294T) predicted to cause XLN led to open protein conformation and high actin polymerization rate in the absence of the WASp activator, Cdc42. One previously reported XLN variant (R268W), two loss-of-function WAS variants (A236G, D485N), and one variant of unknown significance (R431W) behaved similarly to wildtype WASp in terms of structural conformation and actin polymerization. Patient CD4+ T cells were used for analysis of WASp expression and phosphorylation, actin polymerization, anti-CD3 induced proliferation capacity, and upregulation of high affinity LFA-1, distinguishing loss-of-function and gain-of-function variants from benign WAS variants. This systematic approach reveals how WAS genetic variants cause severe human disease and stratify variants to guide clinical decision for definitive therapy. Key PointsO_LIGain-of-function WASp variant has extended protein conformation probed by native mass spectrometry and raised pyrene actin polymerization. C_LIO_LIFunctional analysis of patients CD4+ T cells classifies WASp variants as loss-of-function, reduced-function, gain-of-function, and benign. C_LI

immunology↗

Single cell analysis reveals molecular traits of pediatric lymphoma resistant subclones

The cause of refractory/relapse (R/R) in pediatric lymphoma is unclear. We hypothesized that a stem-like, chemoresistance lymphoma subclone may contribute to R/R. Combining single cell RNA sequencing (scRNA-seq) and immune receptor sequencing (scVDJ-seq) on freshly acquired pediatric non-Hodgkin lymphoma (pNHL n=10), Hodgkin lymphoma (pHL n=5), and 10 reactive lymph nodes from adults or children (a/pReLy), we discovered pediatric-specific progenitor-like lymphocytes, whose cellular program was enriched in pNHL subclones emerging late during clonal evolution, accompanied by loss of immune receptor expression. R-CHOP target gene expression indicated that these subclones may escape first-line treatment, and suggested MSI2, an RNA binding protein, as a potential target. In pHL, the progenitor-like program was found in the tumor microenvironment (TME) but not Hodgkin cells which, during relapse, were myeloid-like and accompanied by CD74highCCL5+ CD8 T cells. In summary, we discovered R/R associated lymphoma subclones in pediatric lymphoma and potential ways to eradicate them. Key messagesO_LIProgenitor-like lymphocytes are uniquely found in pediatric reactive lymph nodes, but not in adults. C_LIO_LIResistant subclones from pNHL acquire progenitor-like program and share MSI2 expression. C_LIO_LIRelapsed Hodgkin cells are monocyte-like and recruit CD74highCCL5+ CD8 T cells. C_LI

cancer biology↗