Tuber melanosporum DB

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Contig Name: SY0AAA62YJ03FM1
Length(NT) : 542
Best Gene Model Blast : Link to GSTUMT00003939001 E-value : 0.0
Numbers of ESTs : 1

Blast Results:

Nr Definition: hypothetical protein
Accession: ref|XP_502779.1| Score: 318 E_value: 5e-28
KEGG Definition: hypothetical protein
Accession: yli:YALI0D13156g Score: 318 E_value: 2e-28
KOG Definition:
Classification: [Inorganic ion transport and metabolism].
Kog Number: KOG1161 Score: 206 E_value: 1e-17
PFAM Definition: SPX, SPX domain. We have named this region the SPX domain after (SYG1, Pho81 and XPR1). This 180 residue length domain is found at the amino terminus of a variety of proteins. In the yeast protein SYG1, the N-terminus directly binds to the G- protein beta subunit and inhibits transduction of the mating pheromone signal. This finding suggests that all the members of this family are involved in G-protein associated signal transduction. The N-termini of several proteins involved in the regulation of phosphate transport, including the putative phosphate level sensors PHO81 from Saccharomyces cerevisiae and NUC-2 from Neurospora crassa, are also members of this family. NUC-2 contains several ankyrin repeats pfam00023. Several members of this family are annotated as XPR1 proteins: the xenotropic and polytropic retrovirus receptor confers susceptibility to infection with murine leukaemia viruses (MLV). The similarity between SYG1, phosphate regulators and XPR1 sequences has been previously noted, as has the additional similarity to several predicted proteins, of unknown function, from Drosophila melanogaster, Arabidopsis thaliana, Caenorhabditis elegans, Schizosaccharomyces pombe, and Saccharomyces cerevisiae. In addition, given the similarities between XPR1 and SYG1 and phosphate regulatory proteins, it has been proposed that XPR1 might be involved in G-protein associated signal transduction and may itself function as a phosphate sensor..
Pfam Number: pfam03105 Score: 237 E_value: 4e-21
Swissprot: P47075|VTC4_YEAST
Gene Ontology:
GO:0005783 = Cellular component: endoplasmic reticulum
GO:0031310 = Cellular component: intrinsic to vacuolar membrane
GO:0033254 = Cellular component: vacuolar transporter chaperone complex
GO:0016237 = Biological process: microautophagy
GO:0007034 = Biological process: vacuolar transport
GO:0042144 = Biological process: vacuole fusion, non-autophagic

Sequence:
>SY0AAA62YJ03FM1
TTGGCTTGCTTTGCCTTTGGATCCGGTCAAACTCTTGCAGCTTCGTGGGT
TTATATGACCATTTGGAGCTCCTTTACCCCCCACATTCCTCAATAATCTA
TGAAGTTCGGTGAGGCACTTCCTCAGCGTTCCGTTCAGGAATGGCTGCCA
TATAACCTTGACTACAATGAGATCAAACAATTGATCAAGCGATATACCAC
TGGGAAGCCACTTGTCAAGTCGCCCGAAGCAAAGACAGACTTTGAAGATG
AATTCTTCAATATTCTGATGGATCAACTTGGAAGGATTGACCTGTTCGTC
AAGAGCAAATCCGGCGAAGTTGACCGCCGTATAGTCCGATGCAAACGACA
GGTTGCGGCTCTCCGAAGACGCGACACAGAGGACTCAGCCCTACATCATA
TCCGGCGGCCAGGTCGCTCGACAAAGCTCGAACAAGAGGTTGAACGTGTG
AGTTATGAGGTGCAGTGCCTTTCGCGCTTTGTAAACGTTCAACGTACTGG
GTTCCTCAAGCTCTTGAAGAAATACAAAAAATGGACCGGTTC

Sequences in the Contig:

SY0AAA62YJ03FM1