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Cellosaurus Hs 700T (CVCL_0858)

[Text version]
Cell line name Hs 700T
Synonyms HS-700-T; Hs-700-T; Hs-700T; HS-700T; HS 700T; HS700T; Hs700T; 700T
Accession CVCL_0858
Resource Identification Initiative To cite this cell line use: Hs 700T (RRID:CVCL_0858)
Comments Part of: MD Anderson Cell Lines Project.
Population: Caucasian.
Doubling time: 4-5 days (PubMed=176412).
Karyotypic information: Most chromosome counts are in the hypertetraploid range. A substantial (30%) population of hyperdiploid to hypotriploid cells is present (ATCC=HTB-147).
Omics: Array-based CGH.
Omics: Deep proteome analysis.
Omics: Protein expression by reverse-phase protein arrays.
Miscellaneous: The mucin producing, primary tumor was thought to have originated from the intestines or pancreas (ATCC=HTB-147).
Derived from site: Metastatic; Pelvis; UBERON=UBERON_0002355.
Sequence variations
Disease Neoplasm (NCIt: C3262)
Species of origin Homo sapiens (Human) (NCBI Taxonomy: 9606)
Originate from same individual CVCL_0857 ! Hs 700.Sk
Sex of cell Male
Age at sampling 61Y
Category Cancer cell line
STR profile Source(s): ATCC=HTB-147; IZSLER=BS TCL 229

Markers:
AmelogeninX,Y
CSF1PO10
D2S133817,24,25
D3S135818
D5S81811,12
D7S8209,11
D8S117911,12,13
D13S3178
D16S53910,13
D18S5113,18
D19S43314
D21S1128,31
FGA20,21,22
Penta D9,13
Penta E11
TH019.3
TPOX8,12
vWA18,19

Run an STR similarity search on this cell line
Web pages https://tcpaportal.org/mclp/
Publications

PubMed=176412; DOI=10.1093/jnci/56.4.843
Owens R.B., Smith H.S., Nelson-Rees W.A., Springer E.L.
Epithelial cell cultures from normal and cancerous human tissues.
J. Natl. Cancer Inst. 56:843-849(1976)

PubMed=283258; DOI=10.1093/jnci/62.2.225
Smith H.S.
In vitro properties of epithelial cell lines established from human carcinomas and nonmalignant tissue.
J. Natl. Cancer Inst. 62:225-230(1979)

PubMed=761205
Smith H.S., Springer E.L., Hackett A.J.
Nuclear ultrastructure of epithelial cell lines derived from human carcinomas and nonmalignant tissues.
Cancer Res. 39:332-344(1979)

PubMed=6500159; DOI=10.1159/000163283
Gershwin M.E., Lentz D., Owens R.B.
Relationship between karyotype of tissue culture lines and tumorigenicity in nude mice.
Exp. Cell Biol. 52:361-370(1984)

PubMed=1630814
Ruggeri B.A., Zhang S.-Y., Caamano J., DiRado M., Flynn S.D., Klein-Szanto A.J.P.
Human pancreatic carcinomas and cell lines reveal frequent and multiple alterations in the p53 and Rb-1 tumor-suppressor genes.
Oncogene 7:1503-1511(1992)

PubMed=7961102; DOI=10.1111/j.1349-7006.1994.tb02898.x; PMCID=PMC5919355
Suwa H., Yoshimura T., Yamaguchi N., Kanehira K., Manabe T., Imamura M., Hiai H., Fukumoto M.
K-ras and p53 alterations in genomic DNA and transcripts of human pancreatic adenocarcinoma cell lines.
Jpn. J. Cancer Res. 85:1005-1014(1994)

PubMed=15126341; DOI=10.1158/0008-5472.CAN-03-3159
Heidenblad M., Schoenmakers E.F.P.M., Jonson T., Gorunova L., Veltman J.A., van Kessel A.G., Hoglund M.
Genome-wide array-based comparative genomic hybridization reveals multiple amplification targets and novel homozygous deletions in pancreatic carcinoma cell lines.
Cancer Res. 64:3052-3059(2004)

PubMed=15688027; DOI=10.1038/sj.onc.1208383
Heidenblad M., Lindgren D., Veltman J.A., Jonson T., Mahlamaki E.H., Gorunova L., van Kessel A.G., Schoenmakers E.F.P.M., Hoglund M.
Microarray analyses reveal strong influence of DNA copy number alterations on the transcriptional patterns in pancreatic cancer: implications for the interpretation of genomic amplifications.
Oncogene 24:1794-1801(2005)

PubMed=25167228; DOI=10.1038/bjc.2014.475; PMCID=PMC4453732
Hamidi H., Lu M., Chau K., Anderson L., Fejzo M.S., Ginther C., Linnartz R., Zubel A., Slamon D.J., Finn R.S.
KRAS mutational subtype and copy number predict in vitro response of human pancreatic cancer cell lines to MEK inhibition.
Br. J. Cancer 111:1788-1801(2014)

PubMed=27259358; DOI=10.1074/mcp.M116.058313; PMCID=PMC4974343
Humphrey E.S., Su S.-P., Nagrial A.M., Hochgrafe F., Pajic M., Lehrbach G.M., Parton R.G., Yap A.S., Horvath L.G., Chang D.K., Biankin A.V., Wu J.-M., Daly R.J.
Resolution of novel pancreatic ductal adenocarcinoma subtypes by global phosphotyrosine profiling.
Mol. Cell. Proteomics 15:2671-2685(2016)

PubMed=28196595; DOI=10.1016/j.ccell.2017.01.005; PMCID=PMC5501076
Li J., Zhao W., Akbani R., Liu W.-B., Ju Z.-L., Ling S.-Y., Vellano C.P., Roebuck P., Yu Q.-H., Eterovic A.K., Byers L.A., Davies M.A., Deng W.-L., Gopal Y.N.V., Chen G., von Euw E.M., Slamon D.J., Conklin D., Heymach J.V., Gazdar A.F., Minna J.D., Myers J.N., Lu Y.-L., Mills G.B., Liang H.
Characterization of human cancer cell lines by reverse-phase protein arrays.
Cancer Cell 31:225-239(2017)

Cross-references
Cell line collections (Providers) ATCC; HTB-147
IZSLER; BS TCL 229
Cell line databases/resources CLO; CLO_0004061
cancercelllines; CVCL_0858
Biological sample resources BioSample; SAMN03472721
Encyclopedic resources Wikidata; Q54895906
Gene expression databases GEO; GSM621856
GEO; GSM784697
Polymorphism and mutation databases Cosmic; 730528
Cosmic; 947402
Cosmic; 922262
Cosmic; 1218872
Cosmic; 1299300
Cosmic; 1366276
Cosmic; 2434106
IARC_TP53; 314
Progenetix; CVCL_0858
Proteomic databases PRIDE; PXD003198
Entry history
Entry creation04-Apr-2012
Last entry update19-Dec-2024
Version number26