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Articles 91 - 120 of 265
Full-Text Articles in Biological Phenomena, Cell Phenomena, and Immunity
Maternal Metabolism Influences Neural Tube Closure, Rachel A Keuls, Richard H Finnell, Ronald J Parchem
Maternal Metabolism Influences Neural Tube Closure, Rachel A Keuls, Richard H Finnell, Ronald J Parchem
Faculty, Staff and Students Publications
Changes in maternal nutrient availability due to diet or disease significantly increase the risk of neural tube defects (NTDs). Because the incidence of metabolic disease continues to rise, it is urgent that we better understand how altered maternal nutrient levels can influence embryonic neural tube development. Furthermore, primary neurulation occurs before placental function during a period of histiotrophic nutrient exchange. In this review we detail how maternal metabolites are transported by the yolk sac to the developing embryo. We discuss recent advances in understanding how altered maternal levels of essential nutrients disrupt development of the neuroepithelium, and identify points of …
A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Zoe Crane-Smith, Sandra C P De Castro, Evanthia Nikolopoulou, Paul Wolujewicz, Damian Smedley, Yunping Lei, Emma Mather, Chloe Santos, Mark Hopkinson, Andrew A Pitsillides, Richard H Finnell, M Elisabeth Ross, Andrew J Copp, Nicholas D E Greene
A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Zoe Crane-Smith, Sandra C P De Castro, Evanthia Nikolopoulou, Paul Wolujewicz, Damian Smedley, Yunping Lei, Emma Mather, Chloe Santos, Mark Hopkinson, Andrew A Pitsillides, Richard H Finnell, M Elisabeth Ross, Andrew J Copp, Nicholas D E Greene
Faculty, Staff and Students Publications
Orofacial clefts, including cleft lip and palate (CL/P) and neural tube defects (NTDs) are among the most common congenital anomalies, but knowledge of the genetic basis of these conditions remains incomplete. The extent to which genetic risk factors are shared between CL/P, NTDs and related anomalies is also unclear. While identification of causative genes has largely focused on coding and loss of function mutations, it is hypothesized that regulatory mutations account for a portion of the unidentified heritability. We found that excess expression of Grainyhead-like 2 (Grhl2) causes not only spinal NTDs in Axial defects (Axd) mice but also multiple …
Multiomic Investigations Into Lung Health And Disease, Sarah E Blutt, Cristian Coarfa, Josef Neu, Mohan Pammi
Multiomic Investigations Into Lung Health And Disease, Sarah E Blutt, Cristian Coarfa, Josef Neu, Mohan Pammi
Faculty, Staff and Students Publications
Diseases of the lung account for more than 5 million deaths worldwide and are a healthcare burden. Improving clinical outcomes, including mortality and quality of life, involves a holistic understanding of the disease, which can be provided by the integration of lung multi-omics data. An enhanced understanding of comprehensive multiomic datasets provides opportunities to leverage those datasets to inform the treatment and prevention of lung diseases by classifying severity, prognostication, and discovery of biomarkers. The main objective of this review is to summarize the use of multiomics investigations in lung disease, including multiomics integration and the use of machine learning …
Loss Of Microrna-30a And Sex-Specific Effects On The Neonatal Hyperoxic Lung Injury, Sandra L Grimm, Samuel Reddick, Xiaoyu Dong, Connor Leek, Amy Xiao Wang, Manuel Cantu Gutierrez, Sean M Hartig, Bhagavatula Moorthy, Cristian Coarfa, Krithika Lingappan
Loss Of Microrna-30a And Sex-Specific Effects On The Neonatal Hyperoxic Lung Injury, Sandra L Grimm, Samuel Reddick, Xiaoyu Dong, Connor Leek, Amy Xiao Wang, Manuel Cantu Gutierrez, Sean M Hartig, Bhagavatula Moorthy, Cristian Coarfa, Krithika Lingappan
Faculty, Staff and Students Publications
BACKGROUND: Bronchopulmonary dysplasia (BPD) is characterized by an arrest in lung development and is a leading cause of morbidity in premature neonates. It has been well documented that BPD disproportionally affects males compared to females, but the molecular mechanisms behind this sex-dependent bias remain unclear. Female mice show greater preservation of alveolarization and angiogenesis when exposed to hyperoxia, accompanied by increased miR-30a expression. In this investigation, we tested the hypothesis that loss of miR-30a would result in male and female mice experiencing similar impairments in alveolarization and angiogenesis under hyperoxic conditions.
METHODS: Wild-type and miR-30a−/− neonatal mice were exposed …
Spatial Transcriptomics Of Intraductal Papillary Mucinous Neoplasms Of The Pancreas Identifies Nkx6-2 As A Driver Of Gastric Differentiation And Indolent Biological Potential, Marta Sans, Yuki Makino, Jimin Min, Kimal I Rajapakshe, Michele Yip-Schneider, C Max Schmidt, Mark W Hurd, Jared K Burks, Javier A Gomez, Fredrik I Thege, Johannes F Fahrmann, Robert A Wolff, Michael P Kim, Paola A Guerrero, Anirban Maitra
Spatial Transcriptomics Of Intraductal Papillary Mucinous Neoplasms Of The Pancreas Identifies Nkx6-2 As A Driver Of Gastric Differentiation And Indolent Biological Potential, Marta Sans, Yuki Makino, Jimin Min, Kimal I Rajapakshe, Michele Yip-Schneider, C Max Schmidt, Mark W Hurd, Jared K Burks, Javier A Gomez, Fredrik I Thege, Johannes F Fahrmann, Robert A Wolff, Michael P Kim, Paola A Guerrero, Anirban Maitra
Faculty, Staff and Student Publications
Intraductal Papillary Mucinous Neoplasms (IPMNs) of the pancreas are bona fide precursor lesions of pancreatic ductal adenocarcinoma (PDAC). The most common subtype of IPMNs harbor a gastric foveolar-type epithelium, and these low-grade mucinous neoplasms are harbingers of IPMNs with high-grade dysplasia and cancer. The molecular underpinning of gastric differentiation in IPMNs is unknown, although identifying drivers of this indolent phenotype might enable opportunities for intercepting progression to high-grade IPMN and cancer. We conducted spatial transcriptomics on a cohort of IPMNs, followed by orthogonal and cross species validation studies, which established the transcription factor NKX6-2 as a key determinant of gastric …
The At-Hook Is An Evolutionarily Conserved Auto-Regulatory Domain Of Swi/Snf Required For Cell Lineage Priming, Dhurjhoti Saha, Solomon Hailu, Arjan Hada, Junwoo Lee, Jie Luo, Jeff A Ranish, Yuan-Chi Lin, Kyle Feola, Jim Persinger, Abhinav Jain, Bin Liu, Yue Lu, Payel Sen, Blaine Bartholomew
The At-Hook Is An Evolutionarily Conserved Auto-Regulatory Domain Of Swi/Snf Required For Cell Lineage Priming, Dhurjhoti Saha, Solomon Hailu, Arjan Hada, Junwoo Lee, Jie Luo, Jeff A Ranish, Yuan-Chi Lin, Kyle Feola, Jim Persinger, Abhinav Jain, Bin Liu, Yue Lu, Payel Sen, Blaine Bartholomew
Faculty, Staff and Student Publications
The SWI/SNF ATP-dependent chromatin remodeler is a master regulator of the epigenome, controlling pluripotency and differentiation. Towards the C-terminus of the catalytic subunit of SWI/SNF is a motif called the AT-hook that is evolutionary conserved. The AT-hook is present in many chromatin modifiers and generally thought to help anchor them to DNA. We observe however that the AT-hook regulates the intrinsic DNA-stimulated ATPase activity aside from promoting SWI/SNF recruitment to DNA or nucleosomes by increasing the reaction velocity a factor of 13 with no accompanying change in substrate affinity (K
Alternative Splicing Of Ceacam1 By Hypoxia-Inducible Factor-1Α Enhances Tolerance To Hepatic Ischemia In Mice And Humans, Kenneth J Dery, Hidenobu Kojima, Shoichi Kageyama, Kentaro Kadono, Hirofumi Hirao, Brian Cheng, Yuan Zhai, Douglas G Farmer, Fady M Kaldas, Xiaoyi Yuan, Holger K Eltzschig, Jerzy W Kupiec-Weglinski
Alternative Splicing Of Ceacam1 By Hypoxia-Inducible Factor-1Α Enhances Tolerance To Hepatic Ischemia In Mice And Humans, Kenneth J Dery, Hidenobu Kojima, Shoichi Kageyama, Kentaro Kadono, Hirofumi Hirao, Brian Cheng, Yuan Zhai, Douglas G Farmer, Fady M Kaldas, Xiaoyi Yuan, Holger K Eltzschig, Jerzy W Kupiec-Weglinski
Faculty, Staff and Student Publications
Although alternative splicing (AS) drives transcriptional responses and cellular adaptation to environmental stresses, its contributions in organ transplantation have not been appreciated. We have shown that carcinoembryonic antigen-related cell adhesion molecule (Ceacam1; CD66a), a transmembrane biliary glycoprotein expressed in epithelial, endothelial, and immune cells, determines donor liver transplant quality. Here, we studied how AS of Ceacam1 affects ischemia-reperfusion injury (IRI) in mouse and human livers. We found that the short cytoplasmic isoform Ceacam1-S increased during early acute and late resolution phases of warm IRI injury in mice. Transfection of Ceacam1-deficient mouse hepatocytes with adenoviral Ceacam1-S mitigated hypoxia-induced loss of …
Deconvolution Of Cancer Cell States By The Xdec-Sm Method, Oscar D Murillo, Varduhi Petrosyan, Emily L Laplante, Lacey E Dobrolecki, Michael T Lewis, Aleksandar Milosavljevic
Deconvolution Of Cancer Cell States By The Xdec-Sm Method, Oscar D Murillo, Varduhi Petrosyan, Emily L Laplante, Lacey E Dobrolecki, Michael T Lewis, Aleksandar Milosavljevic
Faculty, Staff and Students Publications
Proper characterization of cancer cell states within the tumor microenvironment is a key to accurately identifying matching experimental models and the development of precision therapies. To reconstruct this information from bulk RNA-seq profiles, we developed the XDec Simplex Mapping (XDec-SM) reference-optional deconvolution method that maps tumors and the states of constituent cells onto a biologically interpretable low-dimensional space. The method identifies gene sets informative for deconvolution from relevant single-cell profiling data when such profiles are available. When applied to breast tumors in The Cancer Genome Atlas (TCGA), XDec-SM infers the identity of constituent cell types and their proportions. XDec-SM also …
Chromatin Architectural Factor Ctcf Is Essential For Progesterone-Dependent Uterine Maturation, Sylvia C Hewitt, Artiom Gruzdev, Cynthia J Willson, San-Pin Wu, John P Lydon, Niels Galjart, Francesco J Demayo
Chromatin Architectural Factor Ctcf Is Essential For Progesterone-Dependent Uterine Maturation, Sylvia C Hewitt, Artiom Gruzdev, Cynthia J Willson, San-Pin Wu, John P Lydon, Niels Galjart, Francesco J Demayo
Faculty, Staff and Students Publications
Receptors for estrogen and progesterone frequently interact, via Cohesin/CTCF loop extrusion, at enhancers distal from regulated genes. Loss-of-function CTCF mutation in >20% of human endometrial tumors indicates its importance in uterine homeostasis. To better understand how CTCF-mediated enhancer-gene interactions impact endometrial development and function, the Ctcf gene was selectively deleted in female reproductive tissues of mice. Prepubertal Ctcf
Trim28 Modulates Nuclear Receptor Signaling To Regulate Uterine Function, Rong Li, Tianyuan Wang, Ryan M Marquardt, John P Lydon, San-Pin Wu, Francesco J Demayo
Trim28 Modulates Nuclear Receptor Signaling To Regulate Uterine Function, Rong Li, Tianyuan Wang, Ryan M Marquardt, John P Lydon, San-Pin Wu, Francesco J Demayo
Faculty, Staff and Students Publications
Estrogen and progesterone, acting through their cognate receptors the estrogen receptor α (ERα) and the progesterone receptor (PR) respectively, regulate uterine biology. Using rapid immunoprecipitation and mass spectrometry (RIME) and co-immunoprecipitation, we identified TRIM28 (Tripartite motif containing 28) as a protein which complexes with ERα and PR in the regulation of uterine function. Impairment of TRIM28 expression results in the inability of the uterus to support early pregnancy through altered PR and ERα action in the uterine epithelium and stroma by suppressing PR and ERα chromatin binding. Furthermore, TRIM28 ablation in PR-expressing uterine cells results in the enrichment of a …
Effect Of Exogenous L-Carnitine On Aortic Stiffness In Dyslipidemic Adolescents: Design Of A Quadruple-Blind, Randomized, Controlled Interventional Trial, Justin P Zachariah, Sandra Pena, Philip J Lupo, Nagireddy Putluri, Daniel J Penny, Melissa A Richard
Effect Of Exogenous L-Carnitine On Aortic Stiffness In Dyslipidemic Adolescents: Design Of A Quadruple-Blind, Randomized, Controlled Interventional Trial, Justin P Zachariah, Sandra Pena, Philip J Lupo, Nagireddy Putluri, Daniel J Penny, Melissa A Richard
Faculty, Staff and Students Publications
BACKGROUND: Atherosclerotic cardiovascular disease (ASCVD) risk factors including vascular remodeling leading to hypertension and dyslipidemia are prevalent among children and adolescents. Conflicting observational and Mendelian randomization data suggest endogenous carnitine may affect arterial stiffness and lipid traits. Because of this, we developed a study to evaluate the causal role for carnitine in arterial stiffness at a point when the lifecourse trajectory to hypertension can be modified.
METHODS: This study is a mechanistic, double-blinded, randomized control trial (RCT) in 166 adolescents with dyslipidemia for the effect of 6 months of maximum dose 3 g daily oral l-carnitine supplementation (CS+) versus placebo …
Spatial Mapping Of The Dna Adducts In Cancer, Kimiko L Krieger, Elise K Mann, Kevin J Lee, Elyse Bolterstein, Deborah Jebakumar, Michael M Ittmann, Valeria L Dal Zotto, Mohamed Shaban, Arun Sreekumar, Natalie R Gassman
Spatial Mapping Of The Dna Adducts In Cancer, Kimiko L Krieger, Elise K Mann, Kevin J Lee, Elyse Bolterstein, Deborah Jebakumar, Michael M Ittmann, Valeria L Dal Zotto, Mohamed Shaban, Arun Sreekumar, Natalie R Gassman
Faculty, Staff and Students Publications
DNA adducts and strand breaks are induced by various exogenous and endogenous agents. Accumulation of DNA damage is implicated in many disease processes, including cancer, aging, and neurodegeneration. The continuous acquisition of DNA damage from exogenous and endogenous stressors coupled with defects in DNA repair pathways contribute to the accumulation of DNA damage within the genome and genomic instability. While mutational burden offers some insight into the level of DNA damage a cell may have experienced and subsequently repaired, it does not quantify DNA adducts and strand breaks. Mutational burden also infers the identity of the DNA damage. With advances …
Loss Of Cytochrome P450 (Cyp)1b1 Mitigates Hyperoxia Response In Adult Mouse Lung By Reprogramming Metabolism And Translation, Sandra L Grimm, Rachel E Stading, Matthew J Robertson, Tanmay Gandhi, Chenlian Fu, Weiwu Jiang, Guobin Xia, Krithika Lingappan, Cristian Coarfa, Bhagavatula Moorthy
Loss Of Cytochrome P450 (Cyp)1b1 Mitigates Hyperoxia Response In Adult Mouse Lung By Reprogramming Metabolism And Translation, Sandra L Grimm, Rachel E Stading, Matthew J Robertson, Tanmay Gandhi, Chenlian Fu, Weiwu Jiang, Guobin Xia, Krithika Lingappan, Cristian Coarfa, Bhagavatula Moorthy
Faculty, Staff and Students Publications
Oxygen supplementation is life saving for premature infants and for COVID-19 patients but can induce long-term pulmonary injury by triggering inflammation, with xenobiotic-metabolizing CYP enzymes playing a critical role. Murine studies showed that CYP1B1 enhances, while CYP1A1 and CYP1A2 protect from, hyperoxic lung injury. In this study we tested the hypothesis that Cyp1b1-null mice would revert hyperoxia-induced transcriptomic changes observed in WT mice at the transcript and pathway level. Wild type (WT) C57BL/6J and Cyp1b1-null mice aged 8-10 weeks were maintained in room air (21% O
Myc Regulates Csf1 Expression Via Microrna 17/20a To Modulate Tumor-Associated Macrophages In Osteosarcoma, Bikesh K Nirala, Tajhal D Patel, Lyazat Kurenbekova, Ryan Shuck, Atreyi Dasgupta, Nino Rainusso, Cristian Coarfa, Jason T Yustein
Myc Regulates Csf1 Expression Via Microrna 17/20a To Modulate Tumor-Associated Macrophages In Osteosarcoma, Bikesh K Nirala, Tajhal D Patel, Lyazat Kurenbekova, Ryan Shuck, Atreyi Dasgupta, Nino Rainusso, Cristian Coarfa, Jason T Yustein
Faculty, Staff and Students Publications
Osteosarcoma (OS) is the most common primary bone tumor of childhood. Approximately 20%-30% of OSs carry amplification of chromosome 8q24, which harbors the oncogene c-MYC and correlates with a poor prognosis. To understand the mechanisms that underlie the ability of MYC to alter both the tumor and its surrounding tumor microenvironment (TME), we generated and molecularly characterized an osteoblast-specific Cre-Lox-Stop-Lox-c-MycT58A p53fl/+ knockin genetically engineered mouse model (GEMM). Phenotypically, the Myc-knockin GEMM had rapid tumor development with a high incidence of metastasis. MYC-dependent gene signatures in our murine model demonstrated significant homology to the human hyperactivated MYC OS. We established that …
A Crispr/Cas9-Engineered Mouse Carrying A Conditional Knockout Allele For The Early Growth Response-1 Transcription Factor, Vineet K Maurya, Yan Ying, Denise G Lanza, Jason D Heaney, John P Lydon
A Crispr/Cas9-Engineered Mouse Carrying A Conditional Knockout Allele For The Early Growth Response-1 Transcription Factor, Vineet K Maurya, Yan Ying, Denise G Lanza, Jason D Heaney, John P Lydon
Faculty, Staff and Students Publications
Early growth response 1 (EGR1) mediates transcriptional programs that are indispensable for cell division, differentiation and apoptosis in numerous physiologies and pathophysiologies. Whole-body EGR1 knockouts in mice (Egr1KO) have advanced our understanding of EGR1 function in an in vivo context. To extend the utility of the mouse to investigate EGR1 responses in a tissue- and/or cell-type-specific manner, we generated a mouse model in which exon 2 of the mouse Egr1 gene is floxed by CRISPR/Cas9 engineering. The floxed Egr1 alleles (Egr1f/f) are designed to enable spatiotemporal control of Cre-mediated EGR1 ablation in the …
Unravelling Spatial Gene Associations With Seagal: A Python Package For Spatial Transcriptomics Data Analysis And Visualization, Linhua Wang, Chaozhong Liu, Yang Gao, Xiang H-F Zhang, Zhandong Liu
Unravelling Spatial Gene Associations With Seagal: A Python Package For Spatial Transcriptomics Data Analysis And Visualization, Linhua Wang, Chaozhong Liu, Yang Gao, Xiang H-F Zhang, Zhandong Liu
Faculty, Staff and Students Publications
SUMMARY: In the era where transcriptome profiling moves toward single-cell and spatial resolutions, the traditional co-expression analysis lacks the power to fully utilize such rich information to unravel spatial gene associations. Here, we present a Python package called Spatial Enrichment Analysis of Gene Associations using L-index (SEAGAL) to detect and visualize spatial gene correlations at both single-gene and gene-set levels. Our package takes spatial transcriptomics datasets with gene expression and the aligned spatial coordinates as input. It allows for analyzing and visualizing genes' spatial correlations and cell types' colocalization within the precise spatial context. The output could be visualized as …
Chronic Social Defeat Alters Brain Vascular-Associated Cell Gene Expression Patterns Leading To Vascular Dysfunction And Immune System Activation, Joshua D Samuels, Madison L Lotstein, Michael L Lehmann, Abdel G Elkahloun, Subhadra Banerjee, Miles Herkenham
Chronic Social Defeat Alters Brain Vascular-Associated Cell Gene Expression Patterns Leading To Vascular Dysfunction And Immune System Activation, Joshua D Samuels, Madison L Lotstein, Michael L Lehmann, Abdel G Elkahloun, Subhadra Banerjee, Miles Herkenham
Faculty, Staff and Student Publications
Brain vascular integrity is critical for brain health, and its disruption is implicated in many brain pathologies, including psychiatric disorders. Brain-vascular barriers are a complex cellular landscape composed of endothelial, glial, mural, and immune cells. Yet currently, little is known about these brain vascular-associated cells (BVACs) in health and disease. Previously, we demonstrated that 14 days of chronic social defeat (CSD), a mouse paradigm that produces anxiety and depressive-like behaviors, causes cerebrovascular damage in the form of scattered microbleeds. Here, we developed a technique to isolate barrier-related cells from the mouse brain and subjected the isolated cells to single-cell RNA …
Hyperphosphorylation Of The Group A Streptococcal Control Of Virulence Regulator Increases Promoter Occupancy Specifically At Virulence Factor-Encoding Genes, Nicola Horstmann, Chau Nguyen Tran, Anthony R Flores, Samuel A Shelburne
Hyperphosphorylation Of The Group A Streptococcal Control Of Virulence Regulator Increases Promoter Occupancy Specifically At Virulence Factor-Encoding Genes, Nicola Horstmann, Chau Nguyen Tran, Anthony R Flores, Samuel A Shelburne
Faculty, Staff and Student Publications
The control of virulence two-component gene regulatory system (CovRS) is critical to the pathogenesis of many medically important streptococci. In emm1 group A streptococci (GAS), CovR directly binds the promoters of numerous GAS virulence factor-encoding genes. Elimination of CovS phosphatase activity increases CovR phosphorylation (CovR~P) levels and abrogates GAS virulence. Given the emm type-specific diversity of CovRS function, in this study we used chromatin immunoprecipitation sequencing (ChIP-seq) to define global CovR DNA occupancy in the wild-type emm3 strain MGAS10870 (medium CovR~P) and its CovS phosphatase-negative derivative 10870-CovS-T284A (high CovR~P). In the wild-type emm3 strain, 89% of the previously identified emm1 …
Dual Functions Of Tet1 In Germ Layer Lineage Bifurcation Distinguished By Genomic Context And Dependence On 5-Methylcytosine Oxidation, Bernard K Van Der Veer, Lehua Chen, Colin Custers, Paraskevi Athanasouli, Mariana Schroiff, Riet Cornelis, Jonathan Sai-Hong Chui, Richard H Finnell, Frederic Lluis, Kian Peng Koh
Dual Functions Of Tet1 In Germ Layer Lineage Bifurcation Distinguished By Genomic Context And Dependence On 5-Methylcytosine Oxidation, Bernard K Van Der Veer, Lehua Chen, Colin Custers, Paraskevi Athanasouli, Mariana Schroiff, Riet Cornelis, Jonathan Sai-Hong Chui, Richard H Finnell, Frederic Lluis, Kian Peng Koh
Faculty, Staff and Students Publications
Gastrulation begins when the epiblast forms the primitive streak or becomes definitive ectoderm. During this lineage bifurcation, the DNA dioxygenase TET1 has bipartite functions in transcriptional activation and repression, but the mechanisms remain unclear. By converting mouse embryonic stem cells (ESCs) into neuroprogenitors, we defined how Tet1-/- cells switch from neuroectoderm fate to form mesoderm and endoderm. We identified the Wnt repressor Tcf7l1 as a TET1 target that suppresses Wnt/β-catenin and Nodal signalling. ESCs expressing catalytic dead TET1 retain neural potential but activate Nodal and subsequently Wnt/β-catenin pathways to generate also mesoderm and endoderm. At CpG-poor distal enhancers, TET1 maintains …
Immune Microenvironment Remodeling After Radiation Of A Progressing Brain Metastasis, William H Hudson, Jeffrey J Olson, Lisa J Sudmeier
Immune Microenvironment Remodeling After Radiation Of A Progressing Brain Metastasis, William H Hudson, Jeffrey J Olson, Lisa J Sudmeier
Faculty, Staff and Students Publications
Radiation is commonly used in the treatment of many cancers. However, its effects on anti-tumor immune responses are incompletely understood. Here, we present a detailed immunological analysis of two tumors from a patient with multiple non-small cell lung cancer metastases to the brain. One tumor was resected without treatment; the second was irradiated to a total dose of 30 Gy and resected following further progression. Comprehensive single-cell analysis reveals a substantially reduced immune cell fraction in the irradiated tumor, including the depletion of tissue-resident macrophages and infiltration of pro-inflammatory monocytes. Despite the presence of similar somatic mutations in both tumors, …
Histone H2a Lys130 Acetylation Epigenetically Regulates Androgen Production In Prostate Cancer, Thanh Nguyen, Dhivya Sridaran, Surbhi Chouhan, Cody Weimholt, Audrey Wilson, Jingqin Luo, Tiandao Li, John Koomen, Bin Fang, Nagireddy Putluri, Arun Sreekumar, Felix Y Feng, Kiran Mahajan, Nupam P Mahajan
Histone H2a Lys130 Acetylation Epigenetically Regulates Androgen Production In Prostate Cancer, Thanh Nguyen, Dhivya Sridaran, Surbhi Chouhan, Cody Weimholt, Audrey Wilson, Jingqin Luo, Tiandao Li, John Koomen, Bin Fang, Nagireddy Putluri, Arun Sreekumar, Felix Y Feng, Kiran Mahajan, Nupam P Mahajan
Faculty, Staff and Students Publications
The testicular androgen biosynthesis is well understood, however, how cancer cells gauge dwindling androgen to dexterously initiate its de novo synthesis remained elusive. We uncover dual-phosphorylated form of sterol regulatory element-binding protein 1 (SREBF1), pY673/951-SREBF1 that acts as an androgen sensor, and dissociates from androgen receptor (AR) in androgen deficient environment, followed by nuclear translocation. SREBF1 recruits KAT2A/GCN5 to deposit epigenetic marks, histone H2A Lys130-acetylation (H2A-K130ac) in SREBF1, reigniting de novo lipogenesis & steroidogenesis. Androgen prevents SREBF1 nuclear translocation, promoting T cell exhaustion. Nuclear SREBF1 and H2A-K130ac levels are significantly increased and directly correlated with late-stage prostate cancer, reversal of …
Genotype-Degree Of Hemolysis Correlation In Hereditary Spherocytosis, Yimeng Shi, Yuan Li, Xiawan Yang, Xiaoxia Li, Guangxin Peng, Xin Zhao, Xu Liu, Yufei Zhao, Jing Hu, Xiangrong Hu, Baohang Zhang, Kang Zhou, Yang Yang, Youzhen Xiong, Jianping Li, Huihui Fan, Wenrui Yang, Lei Ye, Liping Jing, Li Zhang, Fengkui Zhang
Genotype-Degree Of Hemolysis Correlation In Hereditary Spherocytosis, Yimeng Shi, Yuan Li, Xiawan Yang, Xiaoxia Li, Guangxin Peng, Xin Zhao, Xu Liu, Yufei Zhao, Jing Hu, Xiangrong Hu, Baohang Zhang, Kang Zhou, Yang Yang, Youzhen Xiong, Jianping Li, Huihui Fan, Wenrui Yang, Lei Ye, Liping Jing, Li Zhang, Fengkui Zhang
Faculty, Staff and Student Publications
BACKGROUND: Hereditary spherocytosis (HS) is a common inherited hemolytic anemia, caused by mutations in five genes that encode erythrocyte membrane skeleton proteins. The red blood cell (RBC) lifespan could directly reflect the degree of hemolysis. In the present cohort of 23 patients with HS, we performed next-generation sequencing (NGS) and Levitt's carbon monoxide (CO) breath test to investigate the potential genotype-degree of hemolysis correlation.
RESULTS: In the present cohort, we identified 8 ANK1,9 SPTB,5 SLC4A1 and 1 SPTA1 mutations in 23 patients with HS, and the median RBC lifespan was 14(8-48) days. The median RBC lifespan of patients with ANK1, …
Cfp1 Governs Uterine Epigenetic Landscapes To Intervene In Progesterone Responses For Uterine Physiology And Suppression Of Endometriosis, Seung Chel Yang, Mira Park, Kwon-Ho Hong, Hyeonwoo La, Chanhyeok Park, Peike Wang, Gaizhen Li, Qionghua Chen, Youngsok Choi, Francesco J Demayo, John P Lydon, David G Skalnik, Hyunjung J Lim, Seok-Ho Hong, So Hee Park, Yeon Sun Kim, Hye-Ryun Kim, Haengseok Song
Cfp1 Governs Uterine Epigenetic Landscapes To Intervene In Progesterone Responses For Uterine Physiology And Suppression Of Endometriosis, Seung Chel Yang, Mira Park, Kwon-Ho Hong, Hyeonwoo La, Chanhyeok Park, Peike Wang, Gaizhen Li, Qionghua Chen, Youngsok Choi, Francesco J Demayo, John P Lydon, David G Skalnik, Hyunjung J Lim, Seok-Ho Hong, So Hee Park, Yeon Sun Kim, Hye-Ryun Kim, Haengseok Song
Faculty, Staff and Students Publications
Progesterone (P4) is required for the preparation of the endometrium for a successful pregnancy. P4 resistance is a leading cause of the pathogenesis of endometrial disorders like endometriosis, often leading to infertility; however, the underlying epigenetic cause remains unclear. Here we demonstrate that CFP1, a regulator of H3K4me3, is required for maintaining epigenetic landscapes of P4-progesterone receptor (PGR) signaling networks in the mouse uterus. Cfp1f/f;Pgr-Cre (Cfp1d/d) mice showed impaired P4 responses, leading to complete failure of embryo implantation. mRNA and chromatin immunoprecipitation sequencing analyses showed that CFP1 regulates uterine mRNA profiles not only in H3K4me3-dependent …
Exome-Wide Assessment Of Isolated Biliary Atresia: A Report From The National Birth Defects Prevention Study Using Child-Parent Trios And A Case-Control Design To Identify Novel Rare Variants, Pagna Sok, Aniko Sabo, Lynn M Almli, Mary M Jenkins, Wendy N Nembhard, A J Agopian, Michael J Bamshad, Elizabeth E Blue, Lawrence C Brody, Austin L Brown, Marilyn L Browne, Mark A Canfield, Suzan L Carmichael, Jessica X Chong, Shannon Dugan-Perez, Marcia L Feldkamp, Richard H Finnell, Richard A Gibbs, Denise M Kay, Yunping Lei, Qingchang Meng, Cynthia A Moore, James C Mullikin, Donna Muzny, Andrew F Olshan, Faith Pangilinan, Jennita Reefhuis, Paul A Romitti, Jeremy M Schraw, Gary M Shaw, Martha M Werler, Sanjiv Harpavat, Philip J Lupo, University Of Washington Center For Mendelian Genomics, Nisc Comparative Sequencing Program, The National Birth Defects Prevention Study
Exome-Wide Assessment Of Isolated Biliary Atresia: A Report From The National Birth Defects Prevention Study Using Child-Parent Trios And A Case-Control Design To Identify Novel Rare Variants, Pagna Sok, Aniko Sabo, Lynn M Almli, Mary M Jenkins, Wendy N Nembhard, A J Agopian, Michael J Bamshad, Elizabeth E Blue, Lawrence C Brody, Austin L Brown, Marilyn L Browne, Mark A Canfield, Suzan L Carmichael, Jessica X Chong, Shannon Dugan-Perez, Marcia L Feldkamp, Richard H Finnell, Richard A Gibbs, Denise M Kay, Yunping Lei, Qingchang Meng, Cynthia A Moore, James C Mullikin, Donna Muzny, Andrew F Olshan, Faith Pangilinan, Jennita Reefhuis, Paul A Romitti, Jeremy M Schraw, Gary M Shaw, Martha M Werler, Sanjiv Harpavat, Philip J Lupo, University Of Washington Center For Mendelian Genomics, Nisc Comparative Sequencing Program, The National Birth Defects Prevention Study
Faculty, Staff and Students Publications
The etiology of biliary atresia (BA) is unknown, but recent studies suggest a role for rare protein-altering variants (PAVs). Exome sequencing data from the National Birth Defects Prevention Study on 54 child-parent trios, one child-mother duo, and 1513 parents of children with other birth defects were analyzed. Most (91%) cases were isolated BA. We performed (1) a trio-based analysis to identify rare de novo, homozygous, and compound heterozygous PAVs and (2) a case-control analysis using a sequence kernel-based association test to identify genes enriched with rare PAVs. While we replicated previous findings on PKD1L1, our results do not suggest that …
Conjugated Bile Acids Are Nutritionally Re-Programmable Antihypertensive Metabolites, Saroj Chakraborty, Anju Lulla, Xi Cheng, Ji-Youn Yeo, Juthika Mandal, Tao Yang, Xue Mei, Piu Saha, Rachel M Golonka, Beng San Yeoh, Blair Mell, Wei Jia, Vasanta Putluri, Danthasinghe Waduge Badrajee Piyarathna, Nagireddy Putluri, Arun Sreekumar, Katie Meyer, Matam Vijay-Kumar, Bina Joe
Conjugated Bile Acids Are Nutritionally Re-Programmable Antihypertensive Metabolites, Saroj Chakraborty, Anju Lulla, Xi Cheng, Ji-Youn Yeo, Juthika Mandal, Tao Yang, Xue Mei, Piu Saha, Rachel M Golonka, Beng San Yeoh, Blair Mell, Wei Jia, Vasanta Putluri, Danthasinghe Waduge Badrajee Piyarathna, Nagireddy Putluri, Arun Sreekumar, Katie Meyer, Matam Vijay-Kumar, Bina Joe
Faculty, Staff and Students Publications
BACKGROUND: Hypertension is the largest risk factor affecting global mortality. Despite available medications, uncontrolled hypertension is on the rise, whereby there is an urgent need to develop novel and sustainable therapeutics. Because gut microbiota is now recognized as an important entity in blood pressure regulation, one such new avenue is to target the gut-liver axis wherein metabolites are transacted via host-microbiota interactions. Knowledge on which metabolites within the gut-liver axis regulate blood pressure is largely unknown.
METHOD: To address this, we analyzed bile acid profiles of human, hypertensive and germ-free rat models and report that conjugated bile acids are inversely …
Gpr43 Stimulation On Tcrαβ+ Intraepithelial Colonic Lymphocytes Inhibits The Recruitment Of Encephalitogenic T-Cells Into The Central Nervous System And Attenuates The Development Of Autoimmunity, Carolina Prado, Alexandra Espinoza, J Eduardo Martínez-Hernández, Joseph Petrosino, Erick Riquelme, Alberto J M Martin, Rodrigo Pacheco
Gpr43 Stimulation On Tcrαβ+ Intraepithelial Colonic Lymphocytes Inhibits The Recruitment Of Encephalitogenic T-Cells Into The Central Nervous System And Attenuates The Development Of Autoimmunity, Carolina Prado, Alexandra Espinoza, J Eduardo Martínez-Hernández, Joseph Petrosino, Erick Riquelme, Alberto J M Martin, Rodrigo Pacheco
Faculty, Staff and Students Publications
INTRODUCTION: Gut microbiota plays a critical role in the regulation of immune homeostasis. Accordingly, several autoimmune disorders have been associated with dysbiosis in the gut microbiota. Notably, the dysbiosis associated with central nervous system (CNS) autoimmunity involves a substantial reduction of bacteria belonging to Clostridia clusters IV and XIVa, which constitute major producers of short-chain fatty acids (SCFAs). Here we addressed the role of the surface receptor-mediated effects of SCFAs on mucosal T-cells in the development of CNS autoimmunity.
METHODS: To induce CNS autoimmunity, we used the mouse model of experimental autoimmune encephalomyelitis (EAE) induced by immunization with the myelin …
Gastrulation Morphogenesis In Synthetic Systems, Alyssa A Emig, Margot L K Williams
Gastrulation Morphogenesis In Synthetic Systems, Alyssa A Emig, Margot L K Williams
Faculty, Staff and Students Publications
Recent advances in pluripotent stem cell culture allow researchers to generate not only most embryonic cell types, but also morphologies of many embryonic structures, entirely in vitro. This recreation of embryonic form from naïve cells, known as synthetic morphogenesis, has important implications for both developmental biology and regenerative medicine. However, the capacity of stem cell-based models to recapitulate the morphogenetic cell behaviors that shape natural embryos remains unclear. In this review, we explore several examples of synthetic morphogenesis, with a focus on models of gastrulation and surrounding stages. By varying cell types, source species, and culture conditions, researchers have recreated …
Beclin-1-Dependent Autophagy, But Not Apoptosis, Is Critical For Stem-Cell-Mediated Endometrial Programming And The Establishment Of Pregnancy, Pooja Popli, Suni Tang, Sangappa B Chadchan, Chandni Talwar, Edmund B Rucker, Xiaoming Guan, Diana Monsivais, John P Lydon, Christina L Stallings, Kelle H Moley, Ramakrishna Kommagani
Beclin-1-Dependent Autophagy, But Not Apoptosis, Is Critical For Stem-Cell-Mediated Endometrial Programming And The Establishment Of Pregnancy, Pooja Popli, Suni Tang, Sangappa B Chadchan, Chandni Talwar, Edmund B Rucker, Xiaoming Guan, Diana Monsivais, John P Lydon, Christina L Stallings, Kelle H Moley, Ramakrishna Kommagani
Faculty, Staff and Students Publications
The human endometrium shows a remarkable regenerative capacity that enables cyclical regeneration and remodeling throughout a woman's reproductive life. Although early postnatal uterine developmental cues direct this regeneration, the vital factors that govern early endometrial programming are largely unknown. We report that Beclin-1, an essential autophagy-associated protein, plays an integral role in uterine morphogenesis during the early postnatal period. We show that conditional depletion of Beclin-1 in the uterus triggers apoptosis and causes progressive loss of Lgr5+/Aldh1a1+ endometrial progenitor stem cells, with concomitant loss of Wnt signaling, which is crucial for stem cell renewal and epithelial gland development. Beclin-1 knockin …
Whole-Exome Sequencing Study Of Hypospadias, Zhongzhong Chen, Yunping Lei, Richard H Finnell, Yu Ding, Zhixi Su, Yaping Wang, Hua Xie, Fang Chen
Whole-Exome Sequencing Study Of Hypospadias, Zhongzhong Chen, Yunping Lei, Richard H Finnell, Yu Ding, Zhixi Su, Yaping Wang, Hua Xie, Fang Chen
Faculty, Staff and Students Publications
Hypospadias results from the impaired urethral development, which is influenced by androgens, but its genetic etiology is still unknown. Through whole exome sequencing analysis, we identified NR5A1, SRD5A2, and AR as mutational hotspots in the etiology of severe hypospadias, as these genes are related to androgen signaling. Additionally, rare damaging variants in cilia-related outer dynein arm heavy chain (ODNAH) genes (DNAH5, DNAH8, DNAH9, DNAH11, and DNAH17) (p = 8.5 × 10−47) were significantly enriched in hypospadias cases. The Dnah8 KO mice exhibited significantly decreased testosterone levels, which had an impact on …
Traf4-Mediated Nonproteolytic Ubiquitination Of Androgen Receptor Promotes Castration-Resistant Prostate Cancer, Ramesh Singh, Huan Meng, Tao Shen, Lance Edward V Lumahan, Steven Nguyen, Hong Shen, Subhamoy Dasgupta, Li Qin, Dileep Karri, Bokai Zhu, Feng Yang, Cristian Coarfa, Bert W O'Malley, Ping Yi
Traf4-Mediated Nonproteolytic Ubiquitination Of Androgen Receptor Promotes Castration-Resistant Prostate Cancer, Ramesh Singh, Huan Meng, Tao Shen, Lance Edward V Lumahan, Steven Nguyen, Hong Shen, Subhamoy Dasgupta, Li Qin, Dileep Karri, Bokai Zhu, Feng Yang, Cristian Coarfa, Bert W O'Malley, Ping Yi
Faculty, Staff and Students Publications
Castration-resistant prostate cancer (CRPC) poses a major clinical challenge with the androgen receptor (AR) remaining to be a critical oncogenic player. Several lines of evidence indicate that AR induces a distinct transcriptional program after androgen deprivation in CRPCs. However, the mechanism triggering AR binding to a distinct set of genomic loci in CRPC and how it promotes CRPC development remain unclear. We demonstrate here that atypical ubiquitination of AR mediated by an E3 ubiquitin ligase TRAF4 plays an important role in this process. TRAF4 is highly expressed in CRPCs and promotes CRPC development. It mediates K27-linked ubiquitination at the C-terminal …