Human Gene ZYG11B (uc001cuj.3)
  Description: Homo sapiens zyg-11 family member B, cell cycle regulator (ZYG11B), mRNA.
Transcript (Including UTRs)
   Position: hg19 chr1:53,192,131-53,293,013 Size: 100,883 Total Exon Count: 14 Strand: +
Coding Region
   Position: hg19 chr1:53,192,326-53,287,301 Size: 94,976 Coding Exon Count: 14 

Page IndexSequence and LinksUniProtKB CommentsPrimersGenetic AssociationsCTD
Gene AllelesRNA-Seq ExpressionMicroarray ExpressionRNA StructureProtein StructureOther Species
GO AnnotationsmRNA DescriptionsOther NamesModel InformationMethods
Data last updated at UCSC: 2013-06-14

-  Sequence and Links to Tools and Databases
 
Genomic Sequence (chr1:53,192,131-53,293,013)mRNA (may differ from genome)Protein (744 aa)
Gene SorterGenome BrowserOther Species FASTAVisiGeneGene interactionsTable Schema
AlphaFoldBioGPSEnsemblEntrez GeneExonPrimerGeneCards
GeneNetworkH-INVHGNCHPRDLynxMGI
neXtProtOMIMPubMedTreefamUniProtKBBioGrid CRISPR DB

-  Comments and Description Text from UniProtKB
  ID: ZY11B_HUMAN
DESCRIPTION: RecName: Full=Protein zyg-11 homolog B;
FUNCTION: Probably acts as target recruitment subunit in the E3 ubiquitin ligase complex ZYG11B-CUL2-Elongin BC.
SUBUNIT: Interacts with TCEB1/Elongin C. Part of an E3 ubiquitin ligase complex including ZYG11B, CUL2 and Elongin BC.
SIMILARITY: Belongs to the zyg-11 family.
SIMILARITY: Contains 2 ARM repeats.
SIMILARITY: Contains 3 LRR (leucine-rich) repeats.
SEQUENCE CAUTION: Sequence=BAB21821.1; Type=Erroneous initiation;

-  Primer design for this transcript
 

Primer3Plus can design qPCR Primers that straddle exon-exon-junctions, which amplify only cDNA, not genomic DNA.
Click here to load the transcript sequence and exon structure into Primer3Plus

Exonprimer can design one pair of Sanger sequencing primers around every exon, located in non-genic sequence.
Click here to open Exonprimer with this transcript

To design primers for a non-coding sequence, zoom to a region of interest and select from the drop-down menu: View > In External Tools > Primer3


-  Genetic Association Studies of Complex Diseases and Disorders
  Genetic Association Database (archive): ZYG11B
CDC HuGE Published Literature: ZYG11B
Positive Disease Associations: Cholesterol , Cholesterol, HDL , Cholesterol, LDL
Related Studies:
  1. Cholesterol
    Sekar Kathiresan et al. BMC medical genetics 2007, A genome-wide association study for blood lipid phenotypes in the Framingham Heart Study., BMC medical genetics. [PubMed 17903299]
    Using a 100K genome-wide scan, we have generated a set of putative associations for common sequence variants and lipid phenotypes. Validation of selected hypotheses in additional samples did not identify any new loci underlying variability in blood lipids. Lack of replication may be due to inadequate statistical power to detect modest quantitative trait locus effects (i.e., <1% of trait variance explained) or reduced genomic coverage of the 100K array. GWAS in FHS using a denser genome-wide genotyping platform and a better-powered replication strategy may identify novel loci underlying blood lipids.
  2. Cholesterol, HDL
    Sekar Kathiresan et al. BMC medical genetics 2007, A genome-wide association study for blood lipid phenotypes in the Framingham Heart Study., BMC medical genetics. [PubMed 17903299]
    Using a 100K genome-wide scan, we have generated a set of putative associations for common sequence variants and lipid phenotypes. Validation of selected hypotheses in additional samples did not identify any new loci underlying variability in blood lipids. Lack of replication may be due to inadequate statistical power to detect modest quantitative trait locus effects (i.e., <1% of trait variance explained) or reduced genomic coverage of the 100K array. GWAS in FHS using a denser genome-wide genotyping platform and a better-powered replication strategy may identify novel loci underlying blood lipids.
  3. Cholesterol, LDL
    Sekar Kathiresan et al. BMC medical genetics 2007, A genome-wide association study for blood lipid phenotypes in the Framingham Heart Study., BMC medical genetics. [PubMed 17903299]
    Using a 100K genome-wide scan, we have generated a set of putative associations for common sequence variants and lipid phenotypes. Validation of selected hypotheses in additional samples did not identify any new loci underlying variability in blood lipids. Lack of replication may be due to inadequate statistical power to detect modest quantitative trait locus effects (i.e., <1% of trait variance explained) or reduced genomic coverage of the 100K array. GWAS in FHS using a denser genome-wide genotyping platform and a better-powered replication strategy may identify novel loci underlying blood lipids.
           more ... click here to view the complete list

-  Comparative Toxicogenomics Database (CTD)
  The following chemicals interact with this gene           more ... click here to view the complete list

+  Common Gene Haplotype Alleles
  Press "+" in the title bar above to open this section.

-  RNA-Seq Expression Data from GTEx (53 Tissues, 570 Donors)
  Highest median expression: 18.60 RPKM in Muscle - Skeletal
Total median expression: 290.63 RPKM



View in GTEx track of Genome Browser    View at GTEx portal     View GTEx Body Map

+  Microarray Expression Data
  Press "+" in the title bar above to open this section.

-  mRNA Secondary Structure of 3' and 5' UTRs
 
RegionFold EnergyBasesEnergy/Base
Display As
5' UTR -107.10195-0.549 Picture PostScript Text
3' UTR -1729.815712-0.303 Picture PostScript Text

The RNAfold program from the Vienna RNA Package is used to perform the secondary structure predictions and folding calculations. The estimated folding energy is in kcal/mol. The more negative the energy, the more secondary structure the RNA is likely to have.

-  Protein Domain and Structure Information
  InterPro Domains: Graphical view of domain structure
IPR011989 - ARM-like
IPR016024 - ARM-type_fold
IPR001611 - Leu-rich_rpt

SCOP Domains:
48371 - ARM repeat
52047 - RNI-like
52058 - L domain-like
52075 - Outer arm dynein light chain 1

ModBase Predicted Comparative 3D Structure on Q9C0D3
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-  Orthologous Genes in Other Species
  Orthologies between human, mouse, and rat are computed by taking the best BLASTP hit, and filtering out non-syntenic hits. For more distant species reciprocal-best BLASTP hits are used. Note that the absence of an ortholog in the table below may reflect incomplete annotations in the other species rather than a true absence of the orthologous gene.
MouseRatZebrafishD. melanogasterC. elegansS. cerevisiae
No orthologNo orthologGenome BrowserNo orthologGenome BrowserNo ortholog
Gene Details   Gene Details 
Gene Sorter   Gene Sorter 
  Ensembl WormBase 
  Protein Sequence Protein Sequence 
  Alignment Alignment 

-  Gene Ontology (GO) Annotations with Structured Vocabulary
  Molecular Function:
GO:0004842 ubiquitin-protein transferase activity

Biological Process:
GO:0016567 protein ubiquitination
GO:0051438 regulation of ubiquitin-protein transferase activity

Cellular Component:
GO:0031462 Cul2-RING ubiquitin ligase complex


-  Descriptions from all associated GenBank mRNAs
  AK296460 - Homo sapiens cDNA FLJ61304 complete cds, highly similar to Homo sapiens zyg-11 homolog B-like (ZYG11BL), mRNA.
DQ646393 - Homo sapiens ZYG11B (ZYG11B) mRNA, complete cds.
AB051517 - Homo sapiens KIAA1730 mRNA for KIAA1730 protein.
AB384277 - Synthetic construct DNA, clone: pF1KSDA1730, Homo sapiens ZYG11B gene for zyg-11 homolog B, complete cds, without stop codon, in Flexi system.
JD458413 - Sequence 439437 from Patent EP1572962.
JD128913 - Sequence 109937 from Patent EP1572962.
JD320978 - Sequence 302002 from Patent EP1572962.
JD339259 - Sequence 320283 from Patent EP1572962.
JD173533 - Sequence 154557 from Patent EP1572962.
AK095643 - Homo sapiens cDNA FLJ38324 fis, clone FCBBF3024663, weakly similar to Zyg-11 protein homolog.
BX647643 - Homo sapiens mRNA; cDNA DKFZp451B217 (from clone DKFZp451B217).
BC029832 - Homo sapiens zyg-11 homolog B (C. elegans), mRNA (cDNA clone IMAGE:5171890), partial cds.
AK056645 - Homo sapiens cDNA FLJ32083 fis, clone OCBBF2000277, weakly similar to EARLY EMBRYOGENESIS ZYG-11 PROTEIN.
CU688762 - Synthetic construct Homo sapiens gateway clone IMAGE:100019205 5' read ZYG11B mRNA.
KJ904873 - Synthetic construct Homo sapiens clone ccsbBroadEn_14267 ZYG11B gene, encodes complete protein.
AK023518 - Homo sapiens cDNA FLJ13456 fis, clone PLACE1003258, weakly similar to EARLY EMBRYOGENESIS ZYG-11 PROTEIN.
JD410403 - Sequence 391427 from Patent EP1572962.
JD314410 - Sequence 295434 from Patent EP1572962.
JD088466 - Sequence 69490 from Patent EP1572962.
JD528008 - Sequence 509032 from Patent EP1572962.
JD509186 - Sequence 490210 from Patent EP1572962.
JD310634 - Sequence 291658 from Patent EP1572962.
JD207321 - Sequence 188345 from Patent EP1572962.
JD562561 - Sequence 543585 from Patent EP1572962.
JD259904 - Sequence 240928 from Patent EP1572962.
JD347562 - Sequence 328586 from Patent EP1572962.
JD536345 - Sequence 517369 from Patent EP1572962.
JD067625 - Sequence 48649 from Patent EP1572962.
JD098704 - Sequence 79728 from Patent EP1572962.
DQ574796 - Homo sapiens piRNA piR-42908, complete sequence.
JD302723 - Sequence 283747 from Patent EP1572962.
JD312425 - Sequence 293449 from Patent EP1572962.
JD347450 - Sequence 328474 from Patent EP1572962.
JD346223 - Sequence 327247 from Patent EP1572962.
JD552774 - Sequence 533798 from Patent EP1572962.
JD320466 - Sequence 301490 from Patent EP1572962.
JD433856 - Sequence 414880 from Patent EP1572962.
JD188388 - Sequence 169412 from Patent EP1572962.
JD532202 - Sequence 513226 from Patent EP1572962.
JD185054 - Sequence 166078 from Patent EP1572962.
JD299207 - Sequence 280231 from Patent EP1572962.
JD279031 - Sequence 260055 from Patent EP1572962.
JD245160 - Sequence 226184 from Patent EP1572962.
JD410173 - Sequence 391197 from Patent EP1572962.
JD347378 - Sequence 328402 from Patent EP1572962.
JD498550 - Sequence 479574 from Patent EP1572962.
JD278316 - Sequence 259340 from Patent EP1572962.
JD142926 - Sequence 123950 from Patent EP1572962.
JD110557 - Sequence 91581 from Patent EP1572962.
JD454123 - Sequence 435147 from Patent EP1572962.
JD347050 - Sequence 328074 from Patent EP1572962.
JD376122 - Sequence 357146 from Patent EP1572962.
JD479319 - Sequence 460343 from Patent EP1572962.
JD198747 - Sequence 179771 from Patent EP1572962.
JD154135 - Sequence 135159 from Patent EP1572962.
JD261876 - Sequence 242900 from Patent EP1572962.
JD556283 - Sequence 537307 from Patent EP1572962.
JD522237 - Sequence 503261 from Patent EP1572962.
JD083116 - Sequence 64140 from Patent EP1572962.
JD452207 - Sequence 433231 from Patent EP1572962.
JD084353 - Sequence 65377 from Patent EP1572962.
JD247769 - Sequence 228793 from Patent EP1572962.
JD523739 - Sequence 504763 from Patent EP1572962.
JD430129 - Sequence 411153 from Patent EP1572962.
JD557299 - Sequence 538323 from Patent EP1572962.
JD557300 - Sequence 538324 from Patent EP1572962.
JD529109 - Sequence 510133 from Patent EP1572962.
JD529111 - Sequence 510135 from Patent EP1572962.
JD529110 - Sequence 510134 from Patent EP1572962.
JD169183 - Sequence 150207 from Patent EP1572962.
JD169184 - Sequence 150208 from Patent EP1572962.
JD169186 - Sequence 150210 from Patent EP1572962.
JD169185 - Sequence 150209 from Patent EP1572962.
JD041219 - Sequence 22243 from Patent EP1572962.
JD041221 - Sequence 22245 from Patent EP1572962.
JD041220 - Sequence 22244 from Patent EP1572962.
JD320966 - Sequence 301990 from Patent EP1572962.
JD320970 - Sequence 301994 from Patent EP1572962.
JD320968 - Sequence 301992 from Patent EP1572962.
JD335283 - Sequence 316307 from Patent EP1572962.
JD387956 - Sequence 368980 from Patent EP1572962.
JD335284 - Sequence 316308 from Patent EP1572962.
JD387957 - Sequence 368981 from Patent EP1572962.
JD387960 - Sequence 368984 from Patent EP1572962.
JD447174 - Sequence 428198 from Patent EP1572962.
JD269564 - Sequence 250588 from Patent EP1572962.
JD059705 - Sequence 40729 from Patent EP1572962.
JD155786 - Sequence 136810 from Patent EP1572962.
JD534739 - Sequence 515763 from Patent EP1572962.
JD366232 - Sequence 347256 from Patent EP1572962.
JD517327 - Sequence 498351 from Patent EP1572962.
JD517328 - Sequence 498352 from Patent EP1572962.
JD105496 - Sequence 86520 from Patent EP1572962.
JD541239 - Sequence 522263 from Patent EP1572962.
JD274536 - Sequence 255560 from Patent EP1572962.
JD274537 - Sequence 255561 from Patent EP1572962.
JD110236 - Sequence 91260 from Patent EP1572962.
JD083775 - Sequence 64799 from Patent EP1572962.
JD448821 - Sequence 429845 from Patent EP1572962.
JD070768 - Sequence 51792 from Patent EP1572962.
JD133162 - Sequence 114186 from Patent EP1572962.
JD410408 - Sequence 391432 from Patent EP1572962.
JD303620 - Sequence 284644 from Patent EP1572962.
JD286714 - Sequence 267738 from Patent EP1572962.
JD511546 - Sequence 492570 from Patent EP1572962.
JD522292 - Sequence 503316 from Patent EP1572962.
JD319541 - Sequence 300565 from Patent EP1572962.
JD401027 - Sequence 382051 from Patent EP1572962.
JD159185 - Sequence 140209 from Patent EP1572962.
JD209776 - Sequence 190800 from Patent EP1572962.
JD240767 - Sequence 221791 from Patent EP1572962.
JD324483 - Sequence 305507 from Patent EP1572962.
JD435040 - Sequence 416064 from Patent EP1572962.
JD307200 - Sequence 288224 from Patent EP1572962.
JD323082 - Sequence 304106 from Patent EP1572962.
JD447370 - Sequence 428394 from Patent EP1572962.
JD207421 - Sequence 188445 from Patent EP1572962.
JD195686 - Sequence 176710 from Patent EP1572962.
JD291895 - Sequence 272919 from Patent EP1572962.
JD073513 - Sequence 54537 from Patent EP1572962.
JD553608 - Sequence 534632 from Patent EP1572962.
AK025056 - Homo sapiens cDNA: FLJ21403 fis, clone COL03735.
JD556842 - Sequence 537866 from Patent EP1572962.
JD297337 - Sequence 278361 from Patent EP1572962.
JD509858 - Sequence 490882 from Patent EP1572962.
JD551267 - Sequence 532291 from Patent EP1572962.
JD414797 - Sequence 395821 from Patent EP1572962.

-  Other Names for This Gene
  Alternate Gene Symbols: KIAA1730, NM_024646, NP_078922, Q8N2X3, Q9C0D3, Q9H8L8, ZY11B_HUMAN
UCSC ID: uc001cuj.3
RefSeq Accession: NM_024646
Protein: Q9C0D3 (aka ZY11B_HUMAN)
CCDS: CCDS30717.1

-  Gene Model Information
 
category: coding nonsense-mediated-decay: no RNA accession: NM_024646.2
exon count: 14CDS single in 3' UTR: no RNA size: 8143
ORF size: 2235CDS single in intron: no Alignment % ID: 100.00
txCdsPredict score: 3847.50frame shift in genome: no % Coverage: 99.99
has start codon: yes stop codon in genome: no # of Alignments: 1
has end codon: yes retained intron: no # AT/AC introns 0
selenocysteine: no end bleed into intron: 0# strange splices: 0
Click here for a detailed description of the fields of the table above.

-  Methods, Credits, and Use Restrictions
  Click here for details on how this gene model was made and data restrictions if any.