SMED30021087
Overview
Neoblast Clusters
Zeng et. al., 2018▻ Overview▻ Neoblast Population▻ Sub-lethal Irradiated Surviving X1 and X2 Cell Population
Overview
Single cell RNA-seq of pluripotent neoblasts and its early progeniesWe isolated X1 neoblasts cells enriched in high piwi-1 expression (Neoblast Population), and profiled ∼7,614 individual cells via scRNA-seq. Unsupervised analyses uncovered 12 distinct classes from 7,088 high-quality cells. We designated these classes Nb1 to Nb12 and ordered them based on high (Nb1) to low (Nb12) piwi-1 expression levels. We further defined groups of genes that best classified the cells parsed into 12 distinct cell clusters to generate a scaled expression heat map of discriminative gene sets for each cluster. Expression of each cluster’s gene signatures was validated using multiplex fluorescence in situ hybridization (FISH) co-stained with piwi-1 and largely confirmed the cell clusters revealed by scRNA-seq.We also tested sub-lethal irradiation exposure. To profile rare pluripotent stem cells (PSCs) and avoid interference from immediate progenitor cells, we determined a time point after sub-lethal irradiation (7 DPI) with minimal piwi-1+ cells, followed by isolation and single-cell RNA-seq of 1,200 individual cells derived from X1 (Piwi-1 high) and X2 (Piwi-1 low) cell populations (Sub-lethal Irradiated Surviving X1 and X2 Cell Population)Explore this single cell expression dataset with our NB Cluster Shiny App
Neoblast Population
Sub-lethal Irradiated Surviving X1 and X2 Cell Population
Embryonic Expression
Davies et. al., 2017
Hover the mouse over a column in the graph to view average RPKM values per sample. Embryonic Stages: Y: yolk. S2-S8: Stages 2-8. C4: asexual adult. SX: virgin, sexually mature adult. back to top Anatomical Expression
PAGE et. al., 2020SMED30021087 has been reported as being expressed in these anatomical structures and/or regions. Read more about PAGEPAGE Curations: 6
Alignments
SMED30021087 aligns in the following genomic locations:
Homology
BLAST of SMED30021087 vs. TrEMBL
Match: A0A3Q0KHA4 (Uncharacterized protein OS=Schistosoma mansoni OX=6183 PE=4 SV=1) HSP 1 Score: 63.929 bits (154), Expect = 4.844e-9 Identity = 39/107 (36.45%), Postives = 56/107 (52.34%), Query Frame = 2 Query: 203 FGSIKRILNKRPLFTCRPFGSEDE--ICCGCCASMNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSP----CESLYCDNFRCCCFMC 505 + +K IL KR + +P ++ + CC CC S+ D C C S D CL ICPQRKTH F D++LC+ R + + + C S YC++ CCF+C Sbjct: 58 YAIVKSILAKR-TPSVKPSANQLQPFACCPCCLSVADLCNCCRVTSIDACLNGICPQRKTHDFTDLILCQICLGRPGRMKSAVPLVKCPVCCRSAYCEDTVICCFLC 163
BLAST of SMED30021087 vs. TrEMBL
Match: G4LWR8 (Uncharacterized protein OS=Schistosoma mansoni OX=6183 GN=Smp_068750 PE=4 SV=1) HSP 1 Score: 63.929 bits (154), Expect = 6.906e-9 Identity = 39/107 (36.45%), Postives = 56/107 (52.34%), Query Frame = 2 Query: 203 FGSIKRILNKRPLFTCRPFGSEDE--ICCGCCASMNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSP----CESLYCDNFRCCCFMC 505 + +K IL KR + +P ++ + CC CC S+ D C C S D CL ICPQRKTH F D++LC+ R + + + C S YC++ CCF+C Sbjct: 69 YAIVKSILAKRTP-SVKPSANQLQPFACCPCCLSVADLCNCCRVTSIDACLNGICPQRKTHDFTDLILCQICLGRPGRMKSAVPLVKCPVCCRSAYCEDTVICCFLC 174
BLAST of SMED30021087 vs. TrEMBL
Match: A0A183NF97 (Uncharacterized protein OS=Schistosoma mattheei OX=31246 PE=4 SV=1) HSP 1 Score: 62.3882 bits (150), Expect = 1.931e-8 Identity = 40/108 (37.04%), Postives = 57/108 (52.78%), Query Frame = 2 Query: 203 FGSIKRIL-NKRPLFTCRPFGSEDE--ICCGCCASMNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSP----CESLYCDNFRCCCFMC 505 + +K IL N+ P +P S+ + CC CC S+ D C C S D CL ICPQRKTH F D++LC+ R + + + C+S YC++ CCF+C Sbjct: 54 YAIVKSILANRTP--NVKPSVSQLQPFACCPCCLSVADLCNCCRVTSIDACLNGICPQRKTHDFTDLLLCQICLGRPGRMKSTVPLVKCPVCCQSAYCEDTVICCFLC 159
BLAST of SMED30021087 vs. TrEMBL
Match: A0A3P7YKZ6 (Uncharacterized protein OS=Schistosoma mattheei OX=31246 GN=SMTD_LOCUS783 PE=4 SV=1) HSP 1 Score: 62.3882 bits (150), Expect = 1.970e-8 Identity = 40/108 (37.04%), Postives = 57/108 (52.78%), Query Frame = 2 Query: 203 FGSIKRIL-NKRPLFTCRPFGSEDE--ICCGCCASMNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSP----CESLYCDNFRCCCFMC 505 + +K IL N+ P +P S+ + CC CC S+ D C C S D CL ICPQRKTH F D++LC+ R + + + C+S YC++ CCF+C Sbjct: 54 YAIVKSILANRTP--NVKPSVSQLQPFACCPCCLSVADLCNCCRVTSIDACLNGICPQRKTHDFTDLLLCQICLGRPGRMKSTVPLVKCPVCCQSAYCEDTVICCFLC 159
BLAST of SMED30021087 vs. TrEMBL
Match: A0A183JBL7 (Uncharacterized protein OS=Schistosoma curassoni OX=6186 PE=4 SV=1) HSP 1 Score: 61.6178 bits (148), Expect = 3.970e-8 Identity = 39/108 (36.11%), Postives = 57/108 (52.78%), Query Frame = 2 Query: 203 FGSIKRIL-NKRPLFTCRPFGSEDEI--CCGCCASMNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSP----CESLYCDNFRCCCFMC 505 + +K IL N+ P +P ++ ++ CC CC S+ D C C S D CL ICPQRKTH F D++LC+ R + + + C S YC++ CCF+C Sbjct: 54 YAIVKSILANRTP--NVKPSVNQLQLFACCPCCLSVADLCNCCRVTSIDACLNGICPQRKTHDFTDLLLCQICLGRPGRMKSTVPLVKCPVCCRSAYCEDTVICCFLC 159
BLAST of SMED30021087 vs. Planmine SMEST
Match: SMESG000014860.1 (SMESG000014860.1) HSP 1 Score: 184.111 bits (466), Expect = 3.281e-60 Identity = 89/89 (100.00%), Postives = 89/89 (100.00%), Query Frame = 2 Query: 299 MNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSPCESLYCDNFRCCCFMCMCHKELPVTSSRMPLTQQPR 565 MNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSPCESLYCDNFRCCCFMCMCHKELPVTSSRMPLTQQPR Sbjct: 1 MNDRCQCNAYRSFDTCLTNICPQRKTHSFADIVLCESWGCRACSESNLITVSPCESLYCDNFRCCCFMCMCHKELPVTSSRMPLTQQPR 89 The following BLAST results are available for this feature:
BLAST of SMED30021087 vs. Ensembl Human
Analysis Date: 2016-08-08 (Schmidtea mediterranea smed_20140614 BLASTX Human e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Celegans
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX Celegan e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Fly
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX Drosophila e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Zebrafish
Analysis Date: 2016-08-08 (Schmidtea mediterranea smed_20140614 BLASTX Zebrafish e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Xenopus
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX Xenopus e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Mouse
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX Mouse e!99) Total hits: 0
BLAST of SMED30021087 vs. UniProt/SwissProt
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX EMBL-EBI UniProt) Total hits: 0
BLAST of SMED30021087 vs. TrEMBL
Analysis Date: 2020-05-01 (Schmidtea mediterranea smed_20140614 BLASTX EMBL-EBI TrEMBL) Total hits: 5
BLAST of SMED30021087 vs. Ensembl Cavefish
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Cavefish e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Sea Lamprey
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Sea Lamprey e!99) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Yeast
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Yeast e!Fungi46) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Nematostella
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Nematostella e!Metazoa46) Total hits: 0
BLAST of SMED30021087 vs. Ensembl Medaka
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Medaka e!99) Total hits: 0
BLAST of SMED30021087 vs. Planmine SMEST
Analysis Date: 2020-05-08 (Schmidtea mediterranea smed_20140614 BLASTX Planmine SMEST) Total hits: 1
Analyses
This transcript is derived from or has results from the following analyses Sequences
The following sequences are available for this feature:
transcript sequence >SMED30021087 ID=SMED30021087|Name=SMED30021087|organism=Schmidtea mediterranea sexual|type=transcript|length=676bpback to top protein sequence of SMED30021087-orf-1 >SMED30021087-orf-1 ID=SMED30021087-orf-1|Name=SMED30021087-orf-1|organism=Schmidtea mediterranea sexual|type=polypeptide|length=171bp MPVQIADFNAPKSTDFQTQIQKDLSSISIPLSYLIFVILIGYVVIIAIIFback to top Annotated Terms
The following terms have been associated with this transcript:
InterPro
Analysis Name: Schmidtea mediteranean smed_20140614 Interproscan
Date Performed: 2020-05-01
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