Identifiers and Description

Gene Model Identifier

TTHERM_00630470

Standard Name

ARP1 (Acidic Repetitive Protein 1 )

Aliases

TAP1 | PreTt06560 | 89.m00154 | 3831.m01455

Description

ARP1 transmembrane protein putative; Acidic repetitive protein; unknown function; expression of ARP1 not essential for the growth of Tetrahymena; hypothetical protein

Genome Browser (Macronucleus)



Genome Browser (Micronucleus)

External Links

Gene Ontology Annotations

Molecular Function

Domains

No Data fetched for Domains

Gene Expression Profile

Vegetative Cell Cycle (Zhang et al., 2023)

GeneMania

Tetrahymena Stock Center

No Data fetched for Tetrahymena Stock Center

Homologs

No Data fetched for Homologs

General Information

No Data fetched for General Information

Associated Literature

  1. Ref:16732560: Kuribara S, Kato M, Kato-Minoura T, Numata O (2006) Identification of a novel actin-related protein in Tetrahymena cilia. Cell motility and the cytoskeleton 63(7):437-46
  2. Ref:15075259: Fillingham JS, Pearlman RE (2004) Role of micronucleus-limited DNA in programmed deletion of mse2.9 during macronuclear development of Tetrahymena thermophila. Eukaryotic cell 3(2):288-301
  3. Ref:11139619: Fillingham JS, Bruno D, Pearlman RE (2001) Cis-acting requirements in flanking DNA for the programmed elimination of mse2.9: a common mechanism for deletion of internal eliminated sequences from the developing macronucleus of Tetrahymena thermophila. Nucleic acids research 29(2):488-98
  4. Ref:8021245: Heinonen TY, Pearlman RE (1994) A germ line-specific sequence element in an intron in Tetrahymena thermophila. The Journal of biological chemistry 269(26):17428-33

Sequences

>TTHERM_00630470(coding)
ATGAGAAAACAATTTATTGTGCTCCTTCTTATTTCTTTACTTTTAACCGCTGCTTTAGGA
AGAGGTTTAAGAAAGGAAAAACCTATCTAAAAAAGCCATTCTGCTGTTTCAAAAGAAACT
GAAATGACTGAAAACACCCCCAAGCTTATTTAAGATGATGAAGAAAATGCAGATGAAGGT
GATAATGGAGATGATGAAGAATCTGGCGATTCTGATGATGATAGCGGTGATTCAGATGAT
GAAGAATCTGGCGATTCAGATGATGAAGAATCTGGTGATTCTGATGATCAAGAATCTGGT
GATTCTGATGATGAAGAATCTGGTGATTCTGATGATGAAGAGTCTGGTGATTCTGATGAT
GAAGAATCTGGCGATTCTGATGATGATAACGGTGATTCAGATGATGATAATGGTGATTCA
GACGAAGATAACGGTGATGATGATTCAAACGACGACGATAATGGTGATGATGAAAATGGT
GATGATGCCGAAGATGGTGATGATGCCGAAGATGGCGATGATGCTGAAGATGGTGATGAT
GCCGAAGATGGTGATGATGCTGAAGATGGCGATGATGCCGAAGATGGCGATGATGCTGAA
GATGGTGATGATGCTGAAGACGGTGATGCTGCCGAAGATGGTGATGATGCTGAAGACGGT
GATGATGCCGAAGATGGTGATGATAACGAAGATGCCGAAGATGGTGATGATGCTGAAGAT
GGTGATGATGCCGAAGATGGTGATGATAACGAAGATGGCGATGATGCCGAAGATGGTGAT
GATGCTGAAGACGGTGATGATGCCGAAGATGGTGATGATAACGAAGATGCCGAAGATGGT
GATGATGCTGAAGACGGTGATGATGCTGAAGATGGTGATGATGCCGAAGATGGTGATGAT
AACGAAGATGGTGATGATAATGAAGATGGCGATGATGAAGAAGCTTAAGATTAAAGTGAA
CTTATCCAAAAAAATAAGAAATAACAAGTATTAGATAGTAATTGA


>TTHERM_00630470(gene)
TTTATAAATAAATAAAGAACAAAAAGTAATACTTTTTAAACAAAAATATACCTAAATAAT
CATTTAAAAAAGAAAATCTAATGAGAAAACAATTTATTGTGCTCCTTCTTATTTCTTTAC
TTTTAACCGCTGCTTTAGGAAGAGGTTTAAGAAAGGAAAAACCTATCTAAAAAAGCCATT
CTGCTGTTTCAAAAGAAACTGAAATGACTGAAAACACCCCCAAGCTTATTTAAGATGATG
AAGAAAATGCAGATGAAGGTGATAATGGAGATGATGAAGAATCTGGCGATTCTGATGATG
ATAGCGGTGATTCAGATGATGAAGAATCTGGCGATTCAGATGATGAAGAATCTGGTGATT
CTGATGATCAAGAATCTGGTGATTCTGATGATGAAGAATCTGGTGATTCTGATGATGAAG
AGTCTGGTGATTCTGATGATGAAGAATCTGGCGATTCTGATGATGATAACGGTGATTCAG
ATGATGATAATGGTGATTCAGACGAAGATAACGGTGATGATGATTCAAACGACGACGATA
ATGGTGATGATGAAAATGGTGATGATGCCGAAGATGGTGATGATGCCGAAGATGGCGATG
ATGCTGAAGATGGTGATGATGCCGAAGATGGTGATGATGCTGAAGATGGCGATGATGCCG
AAGATGGCGATGATGCTGAAGATGGTGATGATGCTGAAGACGGTGATGCTGCCGAAGATG
GTGATGATGCTGAAGACGGTGATGATGCCGAAGATGGTGATGATAACGAAGATGCCGAAG
ATGGTGATGATGCTGAAGATGGTGATGATGCCGAAGATGGTGATGATAACGAAGATGGCG
ATGATGCCGAAGATGGTGATGATGCTGAAGACGGTGATGATGCCGAAGATGGTGATGATA
ACGAAGATGCCGAAGATGGTGATGATGCTGAAGACGGTGATGATGCTGAAGATGGTGATG
ATGCCGAAGATGGTGATGATAACGAAGATGGTGATGATAATGAAGATGGCGATGATGAAG
AAGCTTAAGATTAAAGTGAACTTATCCAAAAAAATAAGAAATAACAAGTATTAGATAGTA
ATTGAAATGAATGATATGGCTCTTAATTATGAGAAAAGCTATGTATAAATTAAATAATAT
TATAAAGATATTATTTATTGACTATTTTTATTACATGAATACTTTGTACTTACTGTCAAA
TTTAATAAAAAAAGAAATACTACAAAAAAGATAATTTATATTTATTTGAAAT


>TTHERM_00630470(protein)
MRKQFIVLLLISLLLTAALGRGLRKEKPIQKSHSAVSKETEMTENTPKLIQDDEENADEG
DNGDDEESGDSDDDSGDSDDEESGDSDDEESGDSDDQESGDSDDEESGDSDDEESGDSDD
EESGDSDDDNGDSDDDNGDSDEDNGDDDSNDDDNGDDENGDDAEDGDDAEDGDDAEDGDD
AEDGDDAEDGDDAEDGDDAEDGDDAEDGDAAEDGDDAEDGDDAEDGDDNEDAEDGDDAED
GDDAEDGDDNEDGDDAEDGDDAEDGDDAEDGDDNEDAEDGDDAEDGDDAEDGDDAEDGDD
NEDGDDNEDGDDEEAQDQSELIQKNKKQQVLDSN