QTL for nicotine sensitivity on Chr12 at D12Mit233 (103.92 Mbp , Build 37)
Description:
nicotine sensitivity spans 78.92 - 128.92 Mbp (NCBI Build 37) on Chr12. This interval was obtained by using an interval width of 25 Mbp around the peak marker (Build 37, MGI, http://informatics.jax.org).
cocaine related behavior 13 (Cocrb13) spans 85.558736 - 135.558736 Mbp (NCBI Build 37) on Chr 12. Obtained from MGI (http://www.informatics.jax.org) by searching for QTLs containing the keyword .
QTL for METH responses for home cage activity on Chr12 at Xmmv50 (106.21 Mbp , Build 37)
Description:
METH responses for home cage activity spans 81.21 - 131.21 Mbp (NCBI Build 37) on Chr12. This interval was obtained by using an interval width of 25 Mbp around the peak marker (Build 37, MGI, http://informatics.jax.org).
Gene expression correlation with morphine response in BXD mice
Description:
Dataset represents the correlation between gene expression in prefrontal cortex from GeneNetwork dataset DOD BXD PFC GWI CTL RNA-seq ComB (Dec19) TPM Log2 with GeneNetwork dataset for BXD mice labeled as: Central nervous system, pharmacology, behavior: Morphine response (50 mg/kg ip), locomotion (open field) from 45-60 min after injection in an activity chamber for males [cm] with peak at Chr10: 5.636905. Data shown here are p-adjusted values < 0.05.
Before the expression profiling portion of the study, the cellular compositions of the purified PBMC pellets from patients in all three groups (healthy patients, patients with CD, and patients with UC) were measured before RNA isolation.
Authors:
Burczynski ME, Peterson RL, Twine NC, Zuberek KA, Brodeur BJ, Casciotti L, Maganti V, Reddy PS, Strahs A, Immermann F, Spinelli W, Schwertschlag U, Slager AM, Cotreau MM, Dorner AJ
This gene set describes genes that are up-regulated in children with Multisystem inflammatory Syndrome in Children (MISC-C) versus healthy controls using RNAseq analysis. The genes were filtered for a p-value < 0.05 and a log fold-change of greater than 1.0 given in supplemental table 7. Genes were entered into GeneWeaver using the reported EnsEMBL identifiers. Values are log-fold change.
Authors:
Noam D Beckmann, Phillip H Comella, Esther Cheng, Lauren Lepow, Aviva G Beckmann, Scott R Tyler, Konstantinos Mouskas, Nicole W Simons, Gabriel E Hoffman, Nancy J Francoeur, Diane Marie Del Valle, Gurpawan Kang, Anh Do, Emily Moya, Lillian Wilkins, Jessica Le Berichel, Christie Chang, Robert Marvin, Sharlene Calorossi, Alona Lansky, Laura Walker, Nancy Yi, Alex Yu, Jonathan Chung, Matthew Hartnett, Melody Eaton, Sandra Hatem, Hajra Jamal, Alara Akyatan, Alexandra Tabachnikova, Lora E Liharska, Liam Cotter, Brian Fennessy, Akhil Vaid, Guillermo Barturen, Hardik Shah, Ying-Chih Wang, Shwetha Hara Sridhar, Juan Soto, Swaroop Bose, Kent Madrid, Ethan Ellis, Elyze Merzier, Konstantinos Vlachos, Nataly Fishman, Manying Tin, Melissa Smith, Hui Xie, Manishkumar Patel, Kai Nie, Kimberly Argueta, Jocelyn Harris, Neha Karekar, Craig Batchelor, Jose Lacunza, Mahlet Yishak, Kevin Tuballes, Ieisha Scott, Arvind Kumar, Suraj Jaladanki, Charuta Agashe, Ryan Thompson, Evan Clark, Bojan Losic, Lauren Peters, , Panagiotis Roussos, Jun Zhu, Wenhui Wang, Andrew Kasarskis, Benjamin S Glicksberg, Girish Nadkarni, Dusan Bogunovic, Cordelia Elaiho, Sandeep Gangadharan, George Ofori-Amanfo, Kasey Alesso-Carra, Kenan Onel, Karen M Wilson, Carmen Argmann, Supinda Bunyavanich, Marta E Alarcón-Riquelme, Thomas U Marron, Adeeb Rahman, Seunghee Kim-Schulze, Sacha Gnjatic, Bruce D Gelb, Miriam Merad, Robert Sebra, Eric E Schadt, Alexander W Charney
This gene set describes genes that are down-regulated in blood of children with COVID-19, the disease caused by SARS-CoV2, versus children with the more severe MIS-C using RNAseq analysis. The genes were filtered for a p-value < 0.05 and a log fold-change of greater than 1.0 given in supplemental table 7. Genes were entered into GeneWeaver using the reported EnsEMBL identifiers. Values are log-fold change.
Authors:
Noam D Beckmann, Phillip H Comella, Esther Cheng, Lauren Lepow, Aviva G Beckmann, Scott R Tyler, Konstantinos Mouskas, Nicole W Simons, Gabriel E Hoffman, Nancy J Francoeur, Diane Marie Del Valle, Gurpawan Kang, Anh Do, Emily Moya, Lillian Wilkins, Jessica Le Berichel, Christie Chang, Robert Marvin, Sharlene Calorossi, Alona Lansky, Laura Walker, Nancy Yi, Alex Yu, Jonathan Chung, Matthew Hartnett, Melody Eaton, Sandra Hatem, Hajra Jamal, Alara Akyatan, Alexandra Tabachnikova, Lora E Liharska, Liam Cotter, Brian Fennessy, Akhil Vaid, Guillermo Barturen, Hardik Shah, Ying-Chih Wang, Shwetha Hara Sridhar, Juan Soto, Swaroop Bose, Kent Madrid, Ethan Ellis, Elyze Merzier, Konstantinos Vlachos, Nataly Fishman, Manying Tin, Melissa Smith, Hui Xie, Manishkumar Patel, Kai Nie, Kimberly Argueta, Jocelyn Harris, Neha Karekar, Craig Batchelor, Jose Lacunza, Mahlet Yishak, Kevin Tuballes, Ieisha Scott, Arvind Kumar, Suraj Jaladanki, Charuta Agashe, Ryan Thompson, Evan Clark, Bojan Losic, Lauren Peters, , Panagiotis Roussos, Jun Zhu, Wenhui Wang, Andrew Kasarskis, Benjamin S Glicksberg, Girish Nadkarni, Dusan Bogunovic, Cordelia Elaiho, Sandeep Gangadharan, George Ofori-Amanfo, Kasey Alesso-Carra, Kenan Onel, Karen M Wilson, Carmen Argmann, Supinda Bunyavanich, Marta E Alarcón-Riquelme, Thomas U Marron, Adeeb Rahman, Seunghee Kim-Schulze, Sacha Gnjatic, Bruce D Gelb, Miriam Merad, Robert Sebra, Eric E Schadt, Alexander W Charney
QTL for ethanol withdrawal on Chr12 at D12Ncvs38 (14.25 Mbp , Build 37)
Description:
ethanol withdrawal spans 0.00 - 39.25 Mbp (NCBI Build 37) on Chr12. This interval was obtained by using an interval width of 25 Mbp around the peak marker (Build 37, MGI, http://informatics.jax.org).
Linear POLYPEPTIDES that are synthesized on RIBOSOMES and may be further modified, crosslinked, cleaved, or assembled into complex proteins with several subunits. The specific sequence of AMINO ACIDS determines the shape the polypeptide will take, during PROTEIN FOLDING, and the function of the protein.
Generated by gene2mesh v. 1.1.1
chr14q32
Genes in cytogenetic band chr14q32
c1 - Positional genesets for each human chromosome and cytogenetic band.
Molecular Signatures Database (MSigDB) Geneset. This geneset was imported from one of the MSigDB collections.
gene2msig v. 0.1.0
Last updated 2015.08.31
The chemical processes, enzymatic activities, and pathways of living things and related temporal, dimensional, qualitative, and quantitative concepts.
Generated by gene2mesh v. 1.1.1
The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds.
Generated by gene2mesh v. 1.1.1
Multi-subunit proteins which function in IMMUNITY. They are produced by B LYMPHOCYTES from the IMMUNOGLOBULIN GENES. They are comprised of two heavy (IMMUNOGLOBULIN HEAVY CHAINS) and two light chains (IMMUNOGLOBULIN LIGHT CHAINS) with additional ancillary polypeptide chains depending on their isoforms. The variety of isoforms include monomeric or polymeric forms, and transmembrane forms (B-CELL ANTIGEN RECEPTORS) or secreted forms (ANTIBODIES). They are divided by the amino acid sequence of their heavy chains into five classes (IMMUNOGLOBULIN A; IMMUNOGLOBULIN D; IMMUNOGLOBULIN E; IMMUNOGLOBULIN G; IMMUNOGLOBULIN M) and various subclasses.
Generated by gene2mesh v. 1.1.1
The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION.
Generated by gene2mesh v. 1.1.1
Proteins that are present in blood serum, including SERUM ALBUMIN; BLOOD COAGULATION FACTORS; and many other types of proteins.
Generated by gene2mesh v. 1.1.1
The processes, properties and biological objects that are involved in maintaining, expressing, and transmitting from one organism to another, genetically encoded traits.
Generated by gene2mesh v. 1.1.1
The biological objects that contain genetic information and that are involved in transmitting genetically encoded traits from one organism to another.
Generated by gene2mesh v. 1.1.1
Authors:
None
Add Selected GeneSets to Project(s)
Warning: You are not signed in. Adding these genesets to a project will create a guest account for you.
Guest accounts are temporary, and will be removed within 24 hours of creation. Guest accounts can be registered as full accounts, but you cannot associate a guest account with an existing account.
If you already have an account, you should sign into that account before proceeding.