Guide to the Human Genome
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Name: HCRTR2 Sequence: fasta or formatted (444aa) NCBI GI: 222080109
Description:

orexin receptor 2

Referenced in:

Hypothalamus
Peptide and Protein G-coupled Signals

Composition:

amino acid map
 Amino acid        Percentage    Count  Longest homopolymer
 A alanine             6.8         30           2
 C cysteine            3.6         16           3
 D aspartate           2.5         11           2
 E glutamate           4.7         21           2
 F phenylalanine       5.0         22           2
 G glycine             3.6         16           2
 H histidine           2.0          9           2
 I isoleucine          7.4         33           2
 K lysine              4.3         19           1
 L leucine             9.9         44           2
 M methionine          2.7         12           1
 N asparagine          3.8         17           1
 P proline             5.0         22           2
 Q glutamine           3.4         15           1
 R arginine            5.6         25           2
 S serine              7.4         33           2
 T threonine           7.0         31           2
 V valine              8.8         39           2
 W tryptophan          2.9         13           1
 Y tyrosine            3.6         16           1
Comparative genomics:

Search single species RefSeq proteins at NCBI
   H. sapiens
   M. musculus
   D. rerio
   C. intestinalis
   S. purpuratus
   D. melanogaster
   C. elegans
   A. thaliana
   S. cerevisiae
   E. coli W3110
   A. pernix K1

Search summary

comparative genomics plot

   Figure data

Additional searches of
RefSeq proteins at NCBI

   All
   Eukaryotes
   Bacteria
   Archaea
   Viruses
   Primates
   Mammals
   Vertebrates

Related human proteins:
Protein          Relative score         Description

Self-match            1.000   orexin receptor 2 
HCRTR1                0.608   orexin receptor 1 
NPFFR2                0.194   neuropeptide FF receptor 2 isoform 2 
NPFFR2                0.194   neuropeptide FF receptor 2 isoform 1 
NPFFR2                0.194   neuropeptide FF receptor 2 isoform 3 
NPFFR1                0.189   neuropeptide FF receptor 1 
QRFPR                 0.162   G protein-coupled receptor 103 
GPR83                 0.157   G protein-coupled receptor 83 
PRLHR                 0.151   G protein-coupled receptor 10 
NPY2R                 0.150   neuropeptide Y receptor Y2 
CCKBR                 0.147   cholecystokinin B receptor 
TACR1                 0.146   tachykinin receptor 1 isoform long 
CCKAR                 0.139   cholecystokinin A receptor 
TACR3                 0.138   tachykinin receptor 3 
PPYR1                 0.134   pancreatic polypeptide receptor 1 
GRPR                  0.130   gastrin-releasing peptide receptor 
LOC100293905          0.130   PREDICTED: similar to gastrin-releasing peptide rec...
TACR2                 0.130   tachykinin receptor 2 
BRS3                  0.129   bombesin-like receptor 3 
TACR1                 0.128   tachykinin receptor 1 isoform short 
KISS1R                0.128   G protein-coupled receptor 54 
ADRB1                 0.127   beta-1-adrenergic receptor 
GALR2                 0.127   galanin receptor 2 
TRHR                  0.124   thyrotropin-releasing hormone receptor 
NPY1R                 0.122   neuropeptide Y receptor Y1 
NMBR                  0.119   neuromedin B receptor 
OPRK1                 0.118   opioid receptor, kappa 1 
PROKR2                0.114   prokineticin receptor 2 
HTR4                  0.114   serotonin 5-HT4 receptor isoform i 
HTR4                  0.113   serotonin 5-HT4 receptor isoform n 
Human BLASTP results (used to prepare the table)

Gene descriptions are from NCBI RefSeq. Search results were obtained with NCBI BLAST and RefSeq entries. When identical proteins are present, the self-match may not be listed first in BLASTP output. In such cases, the table above has been reordered to place it first.

See About the Figures for the scoring system used in the figure above right. The same scoring system was used in the table of BLASTP results.


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Guide to the Human Genome
Copyright © 2010 by Stewart Scherer. All rights reserved.

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