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Neisseria gonorrhoeae Search Results

Record: 1 of 1  
MiniMap IGR1196 IGR1190 IGR1191 IGR1193 IGR1189 IGR1187 IGR1194 IGR1195 IGR1192 IGR1188 NG1465 NG1461 opaG,PII, - NG1464 NG1455 lysS, - NG1454 purH, - NG1466 NG1460 NG1459 NG1457 NG1462 NG1458 pepP, - NG1456 NG1465 NG1461 opaG,PII, - NG1464 NG1455 lysS, - NG1454 purH, - NG1466 NG1460 NG1459 NG1457 NG1462 NG1458 pepP, - NG1456 Type: inverse, Name:  - 157 Type: tandem, Name:  - 65 Type: tandem, Name:  - 66 Type: tandem, Name:  - 67 NG1465 NG1461 opaG,PII, - NG1464 NG1455 lysS, - NG1454 purH, - NG1466 NG1462 NG1458 pepP, - NG1456 NG1459 NG1457 NG1460
* Calculated from Protein Sequence

Gene ID: NG1458

DNA Molecule Name:
1  

Genbank ID:


Gene Name:


Definition:
hypothetical protein

Gene Start:
1425292

Gene Stop:
1425693

Gene Length:
402

Molecular Weight*:
14265

pI*:
10.00

Net Charge*:
7.93

EC:
 

Functional Class:
Hypothetical  

Pathway: pathway table

Comment:
Oklahoma ID: NGO.1458

Blast Summary:  PSI-Blast Search
No hit found in gapped BLAST.

COGS Summary:  COGS Search
No hits to the COGs database.

Blocks Summary:  Blocks Search
No significant hits to the Blocks database.

ProDom Summary:  Protein Domain Search
No significant hit to the ProDom database.

Paralogs:  Local Blast Search


NG1458 is paralogously related to NG1459 (hypothetical protein) (2e-23), NG1460 (hypothetical protein) (8e-08) and NG1077 (hypothetical protein) (7e-05).


Pfam Summary:  Pfam Search
No significant hits to the Pfam 11.0 database

Structural Feature(s):
Feature Type  Start  Stop
transmembrane  
27  
43
non-globular  
62  
134

PDB Hit:
No hits to the PDB database.

Gene Protein Sequence:
MTKYKFPCGQIRIPACAGMTDGNGARTFAGIFYVSILILFLMRYSKKIGC
AGCFYFSDDLKSTVVNPICFSNRLQPPNLLQPAPSPVGEGRGGGILQVAA
TFPNNLTAPIQALRLVALSPALSHGERGRGGCWG

Gene Nucleotide Sequence:  Sequence Viewer
ATGACGAAATATAAGTTTCCGTGCGGACAAATCCGGATTCCCGCCTGTGC
GGGAATGACGGACGGGAACGGCGCACGGACATTCGCCGGAATTTTTTATG
TCTCCATTCTCATACTCTTTTTAATGCGCTATTCCAAGAAAATAGGTTGT
GCAGGCTGTTTTTACTTTTCAGACGACCTGAAATCAACGGTTGTAAATCC
AATCTGTTTTTCAAACCGCCTGCAACCGCCAAATCTGCTGCAACCTGCCC
CCTCCCCCGTGGGGGAGGGCCGGGGAGGCGGCATTCTCCAAGTTGCGGCA
ACCTTTCCCAACAACTTAACCGCCCCAATACAAGCCTTGCGGCTTGTTGC
CCTCTCTCCAGCCCTCTCCCACGGGGAGAGAGGACGGGGAGGCTGTTGGG
GT


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