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Full-Text Articles in Life Sciences

The Nuclear Import Receptor Kapβ2 Modifies Neurotoxicity Mediated By Poly(Gr) In C9orf72-Linked Als/Ftd, Maria Elena Cicardi, V. Kankate, Sindhu Sriramoji, Karthik Krishnamurthy, S. S. Markandaiah, B. M. Verdone, Amandeep Girdhar, A. Nelson, L. B. Rivas, A. Boehringer, Aaron R. Haeusler, Piera Pasinelli, Lin Guo, Davide Trotti Mar 2024

The Nuclear Import Receptor Kapβ2 Modifies Neurotoxicity Mediated By Poly(Gr) In C9orf72-Linked Als/Ftd, Maria Elena Cicardi, V. Kankate, Sindhu Sriramoji, Karthik Krishnamurthy, S. S. Markandaiah, B. M. Verdone, Amandeep Girdhar, A. Nelson, L. B. Rivas, A. Boehringer, Aaron R. Haeusler, Piera Pasinelli, Lin Guo, Davide Trotti

Farber Institute for Neuroscience Faculty Papers

Expanded intronic G4C2 repeats in the C9ORF72 gene cause amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD). These intronic repeats are translated through a non-AUG-dependent mechanism into five different dipeptide repeat proteins (DPRs), including poly-glycine-arginine (GR), which is aggregation-prone and neurotoxic. Here, we report that Kapβ2 and GR interact, co-aggregating, in cultured neurons in-vitro and CNS tissue in-vivo. Importantly, this interaction significantly decreased the risk of death of cultured GR-expressing neurons. Downregulation of Kapβ2 is detrimental to their survival, whereas increased Kapβ2 levels mitigated GR-mediated neurotoxicity. As expected, GR-expressing neurons displayed TDP-43 nuclear loss. Raising Kapβ2 levels …


Dietary L-Tryptophan Consumption Determines The Number Of Colonic Regulatory T Cells And Susceptibility To Colitis Via Gpr15, Nguyen Van, Karen Zhang, Rachel Wigmore, Anne Kennedy, Carolina Dasilva, Jialing Huang, Manju Ambelil, Jose Villagomez, Gerald O'Connor, Randy Longman, Miao Cao, Adam Snook, Michael Platten, Gerard Kasenty, Luis Sigal, George C Prendergast, Sangwon Kim Nov 2023

Dietary L-Tryptophan Consumption Determines The Number Of Colonic Regulatory T Cells And Susceptibility To Colitis Via Gpr15, Nguyen Van, Karen Zhang, Rachel Wigmore, Anne Kennedy, Carolina Dasilva, Jialing Huang, Manju Ambelil, Jose Villagomez, Gerald O'Connor, Randy Longman, Miao Cao, Adam Snook, Michael Platten, Gerard Kasenty, Luis Sigal, George C Prendergast, Sangwon Kim

Department of Microbiology and Immunology Faculty Papers

Environmental factors are the major contributor to the onset of immunological disorders such as ulcerative colitis. However, their identities remain unclear. Here, we discover that the amount of consumed L-Tryptophan (L-Trp), a ubiquitous dietary component, determines the transcription level of the colonic T cell homing receptor, GPR15, hence affecting the number of colonic FOXP3+ regulatory T (Treg) cells and local immune homeostasis. Ingested L-Trp is converted by host IDO1/2 enzymes, but not by gut microbiota, to compounds that induce GPR15 transcription preferentially in Treg cells via the aryl hydrocarbon receptor. Consequently, two weeks of dietary L-Trp supplementation nearly double …


Sleep Problems In Old Age: Metabotropic Glutamate Receptor To The Rescue, Sho Inami, Dinis J.S. Afonso, Kyunghee Koh May 2023

Sleep Problems In Old Age: Metabotropic Glutamate Receptor To The Rescue, Sho Inami, Dinis J.S. Afonso, Kyunghee Koh

Farber Institute for Neuroscience Faculty Papers

No abstract provided.


The Circadian Cryptochrome, Cry1, Is A Pro-Tumorigenic Factor That Rhythmically Modulates Dna Repair., Ayesha A Shafi, Chris M Mcnair, Jennifer J Mccann, Mohammed Alshalalfa, Anton Shostak, Tesa M Severson, Yanyun Zhu, Andre Bergman, Nicolas Gordon, Amy C Mandigo, Saswati N Chand, Peter Gallagher, Emanuela Dylgjeri, Talya S Laufer, Irina A Vasilevskaya, Matthew J Schiewer, Michael Brunner, Felix Y Feng, Wilbert Zwart, Karen E Knudsen Jan 2021

The Circadian Cryptochrome, Cry1, Is A Pro-Tumorigenic Factor That Rhythmically Modulates Dna Repair., Ayesha A Shafi, Chris M Mcnair, Jennifer J Mccann, Mohammed Alshalalfa, Anton Shostak, Tesa M Severson, Yanyun Zhu, Andre Bergman, Nicolas Gordon, Amy C Mandigo, Saswati N Chand, Peter Gallagher, Emanuela Dylgjeri, Talya S Laufer, Irina A Vasilevskaya, Matthew J Schiewer, Michael Brunner, Felix Y Feng, Wilbert Zwart, Karen E Knudsen

Department of Cancer Biology Faculty Papers

Mechanisms regulating DNA repair processes remain incompletely defined. Here, the circadian factor CRY1, an evolutionally conserved transcriptional coregulator, is identified as a tumor specific regulator of DNA repair. Key findings demonstrate that CRY1 expression is androgen-responsive and associates with poor outcome in prostate cancer. Functional studies and first-in-field mapping of the CRY1 cistrome and transcriptome reveal that CRY1 regulates DNA repair and the G2/M transition. DNA damage stabilizes CRY1 in cancer (in vitro, in vivo, and human tumors ex vivo), which proves critical for efficient DNA repair. Further mechanistic investigation shows that stabilized CRY1 temporally regulates expression of genes required …


Proteasome-Mediated Proteolysis Of The Polyglutamine-Expanded Androgen Receptor Is A Late Event In Spinal And Bulbar Muscular Atrophy (Sbma) Pathogenesis., Erin M Heine, Tamar R Berger, Anna Pluciennik, Christopher R Orr, Lori Zboray, Diane E Merry May 2015

Proteasome-Mediated Proteolysis Of The Polyglutamine-Expanded Androgen Receptor Is A Late Event In Spinal And Bulbar Muscular Atrophy (Sbma) Pathogenesis., Erin M Heine, Tamar R Berger, Anna Pluciennik, Christopher R Orr, Lori Zboray, Diane E Merry

Department of Biochemistry and Molecular Biology Faculty Papers

Proteolysis of polyglutamine-expanded proteins is thought to be a required step in the pathogenesis of several neurodegenerative diseases. The accepted view for many polyglutamine proteins is that proteolysis of the mutant protein produces a "toxic fragment" that induces neuronal dysfunction and death in a soluble form; toxicity of the fragment is buffered by its incorporation into amyloid-like inclusions. In contrast to this view, we show that, in the polyglutamine disease spinal and bulbar muscular atrophy, proteolysis of the mutant androgen receptor (AR) is a late event. Immunocytochemical and biochemical analyses revealed that the mutant AR aggregates as a full-length protein, …