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<HTML>
<HEAD>
<TITLE>
EMBOSS: pepnet
</TITLE>
</HEAD>
<BODY BGCOLOR="#FFFFFF" text="#000000">
<table align=center border=0 cellspacing=0 cellpadding=0>
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<A HREF="/" ONMOUSEOVER="self.status='Go to the EMBOSS home page';return true"><img border=0 src="/images/emboss_icon.jpg" alt="" width=150 height=48></a>
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<td align=left valign=middle>
<b><font size="+6">
pepnet
</font></b>
</td></tr>
</table>
<br>
<p>
<H2>
Wiki
</H2>
The master copies of EMBOSS documentation are available
at <a href="http://emboss.open-bio.org/wiki/Appdocs">
http://emboss.open-bio.org/wiki/Appdocs</a>
on the EMBOSS Wiki.
<p>
Please help by correcting and extending the Wiki pages.
<H2>
Function
</H2>
Draw a helical net for a protein sequence
<H2>
Description
</H2>
<p><b>pepnet</b> draws a helical net for an input protein sequence. This is a method of displaying the residues of a protein in a simple 3,4,3,4 repeating pattern that emulates at a simple level the arrangement of residues around an alpha helix. It is therefore easy to see patterns of amphipathicity that you may wish to investigate in more detail by using displays such as <b>pepwheel</b>. You can specify which residues to mark up in squares, diamonds and octagons. </p>
<H2>
Usage
</H2>
Here is a sample session with <b>pepnet</b>
<p>
<p>
<table width="90%"><tr><td bgcolor="#CCFFFF"><pre>
% <b>pepnet -sask </b>
Draw a helical net for a protein sequence
Input protein sequence: <b>tsw:gcn4_yeast</b>
Begin at position [start]: <b>253</b>
End at position [end]: <b>274</b>
Graph type [x11]: <b>cps</b>
Created pepnet.ps
</pre></td></tr></table><p>
<p>
<a href="#input.1">Go to the input files for this example</a><br><a href="#output.1">Go to the output files for this example</a><p><p>
<H2>
Command line arguments
</H2>
<table CELLSPACING=0 CELLPADDING=3 BGCOLOR="#f5f5ff" ><tr><td>
<pre>
Draw a helical net for a protein sequence
Version: EMBOSS:6.6.0.0
Standard (Mandatory) qualifiers:
[-sequence] sequence Protein sequence filename and optional
format, or reference (input USA)
-graph graph [$EMBOSS_GRAPHICS value, or x11] Graph type
(ps, hpgl, hp7470, hp7580, meta, cps, x11,
tek, tekt, none, data, xterm, png, gif, pdf,
svg)
Additional (Optional) qualifiers (* if not always prompted):
* -squares string [ILVM] By default the aliphatic residues
ILVM are marked with squares. (Any string)
* -diamonds string [DENQST] By default the residues DENQST are
marked with diamonds. (Any string)
* -octags string [HKR] By default the positively charged
residues HKR are marked with octagons. (Any
string)
Advanced (Unprompted) qualifiers:
-amphipathic toggle If this is true then the residues ACFGILMVWY
are marked as squares and all other
residues are unmarked. This overrides any
other markup that you may have specified
using the qualifiers '-squares', '-diamonds'
and '-octags'.
Associated qualifiers:
"-sequence" associated qualifiers
-sbegin1 integer Start of the sequence to be used
-send1 integer End of the sequence to be used
-sreverse1 boolean Reverse (if DNA)
-sask1 boolean Ask for begin/end/reverse
-snucleotide1 boolean Sequence is nucleotide
-sprotein1 boolean Sequence is protein
-slower1 boolean Make lower case
-supper1 boolean Make upper case
-scircular1 boolean Sequence is circular
-squick1 boolean Read id and sequence only
-sformat1 string Input sequence format
-iquery1 string Input query fields or ID list
-ioffset1 integer Input start position offset
-sdbname1 string Database name
-sid1 string Entryname
-ufo1 string UFO features
-fformat1 string Features format
-fopenfile1 string Features file name
"-graph" associated qualifiers
-gprompt boolean Graph prompting
-gdesc string Graph description
-gtitle string Graph title
-gsubtitle string Graph subtitle
-gxtitle string Graph x axis title
-gytitle string Graph y axis title
-goutfile string Output file for non interactive displays
-gdirectory string Output directory
General qualifiers:
-auto boolean Turn off prompts
-stdout boolean Write first file to standard output
-filter boolean Read first file from standard input, write
first file to standard output
-options boolean Prompt for standard and additional values
-debug boolean Write debug output to program.dbg
-verbose boolean Report some/full command line options
-help boolean Report command line options and exit. More
information on associated and general
qualifiers can be found with -help -verbose
-warning boolean Report warnings
-error boolean Report errors
-fatal boolean Report fatal errors
-die boolean Report dying program messages
-version boolean Report version number and exit
</pre>
</td></tr></table>
<P>
<table border cellspacing=0 cellpadding=3 bgcolor="#ccccff">
<tr bgcolor="#FFFFCC">
<th align="left">Qualifier</th>
<th align="left">Type</th>
<th align="left">Description</th>
<th align="left">Allowed values</th>
<th align="left">Default</th>
</tr>
<tr bgcolor="#FFFFCC">
<th align="left" colspan=5>Standard (Mandatory) qualifiers</th>
</tr>
<tr bgcolor="#FFFFCC">
<td>[-sequence]<br>(Parameter 1)</td>
<td>sequence</td>
<td>Protein sequence filename and optional format, or reference (input USA)</td>
<td>Readable sequence</td>
<td><b>Required</b></td>
</tr>
<tr bgcolor="#FFFFCC">
<td>-graph</td>
<td>graph</td>
<td>Graph type</td>
<td>EMBOSS has a list of known devices, including ps, hpgl, hp7470, hp7580, meta, cps, x11, tek, tekt, none, data, xterm, png, gif, pdf, svg</td>
<td><i>EMBOSS_GRAPHICS</i> value, or x11</td>
</tr>
<tr bgcolor="#FFFFCC">
<th align="left" colspan=5>Additional (Optional) qualifiers</th>
</tr>
<tr bgcolor="#FFFFCC">
<td>-squares</td>
<td>string</td>
<td>By default the aliphatic residues ILVM are marked with squares.</td>
<td>Any string</td>
<td>ILVM</td>
</tr>
<tr bgcolor="#FFFFCC">
<td>-diamonds</td>
<td>string</td>
<td>By default the residues DENQST are marked with diamonds.</td>
<td>Any string</td>
<td>DENQST</td>
</tr>
<tr bgcolor="#FFFFCC">
<td>-octags</td>
<td>string</td>
<td>By default the positively charged residues HKR are marked with octagons.</td>
<td>Any string</td>
<td>HKR</td>
</tr>
<tr bgcolor="#FFFFCC">
<th align="left" colspan=5>Advanced (Unprompted) qualifiers</th>
</tr>
<tr bgcolor="#FFFFCC">
<td>-amphipathic</td>
<td>toggle</td>
<td>If this is true then the residues ACFGILMVWY are marked as squares and all other residues are unmarked. This overrides any other markup that you may have specified using the qualifiers '-squares', '-diamonds' and '-octags'.</td>
<td>Toggle value Yes/No</td>
<td>No</td>
</tr>
<tr bgcolor="#FFFFCC">
<th align="left" colspan=5>Associated qualifiers</th>
</tr>
<tr bgcolor="#FFFFCC">
<td align="left" colspan=5>"-sequence" associated sequence qualifiers
</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sbegin1<br>-sbegin_sequence</td>
<td>integer</td>
<td>Start of the sequence to be used</td>
<td>Any integer value</td>
<td>0</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -send1<br>-send_sequence</td>
<td>integer</td>
<td>End of the sequence to be used</td>
<td>Any integer value</td>
<td>0</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sreverse1<br>-sreverse_sequence</td>
<td>boolean</td>
<td>Reverse (if DNA)</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sask1<br>-sask_sequence</td>
<td>boolean</td>
<td>Ask for begin/end/reverse</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -snucleotide1<br>-snucleotide_sequence</td>
<td>boolean</td>
<td>Sequence is nucleotide</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sprotein1<br>-sprotein_sequence</td>
<td>boolean</td>
<td>Sequence is protein</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -slower1<br>-slower_sequence</td>
<td>boolean</td>
<td>Make lower case</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -supper1<br>-supper_sequence</td>
<td>boolean</td>
<td>Make upper case</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -scircular1<br>-scircular_sequence</td>
<td>boolean</td>
<td>Sequence is circular</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -squick1<br>-squick_sequence</td>
<td>boolean</td>
<td>Read id and sequence only</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sformat1<br>-sformat_sequence</td>
<td>string</td>
<td>Input sequence format</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -iquery1<br>-iquery_sequence</td>
<td>string</td>
<td>Input query fields or ID list</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -ioffset1<br>-ioffset_sequence</td>
<td>integer</td>
<td>Input start position offset</td>
<td>Any integer value</td>
<td>0</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sdbname1<br>-sdbname_sequence</td>
<td>string</td>
<td>Database name</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -sid1<br>-sid_sequence</td>
<td>string</td>
<td>Entryname</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -ufo1<br>-ufo_sequence</td>
<td>string</td>
<td>UFO features</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -fformat1<br>-fformat_sequence</td>
<td>string</td>
<td>Features format</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -fopenfile1<br>-fopenfile_sequence</td>
<td>string</td>
<td>Features file name</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td align="left" colspan=5>"-graph" associated graph qualifiers
</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gprompt</td>
<td>boolean</td>
<td>Graph prompting</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gdesc</td>
<td>string</td>
<td>Graph description</td>
<td>Any string</td>
<td>Helical net</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gtitle</td>
<td>string</td>
<td>Graph title</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gsubtitle</td>
<td>string</td>
<td>Graph subtitle</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gxtitle</td>
<td>string</td>
<td>Graph x axis title</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gytitle</td>
<td>string</td>
<td>Graph y axis title</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -goutfile</td>
<td>string</td>
<td>Output file for non interactive displays</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -gdirectory</td>
<td>string</td>
<td>Output directory</td>
<td>Any string</td>
<td> </td>
</tr>
<tr bgcolor="#FFFFCC">
<th align="left" colspan=5>General qualifiers</th>
</tr>
<tr bgcolor="#FFFFCC">
<td> -auto</td>
<td>boolean</td>
<td>Turn off prompts</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -stdout</td>
<td>boolean</td>
<td>Write first file to standard output</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -filter</td>
<td>boolean</td>
<td>Read first file from standard input, write first file to standard output</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -options</td>
<td>boolean</td>
<td>Prompt for standard and additional values</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -debug</td>
<td>boolean</td>
<td>Write debug output to program.dbg</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -verbose</td>
<td>boolean</td>
<td>Report some/full command line options</td>
<td>Boolean value Yes/No</td>
<td>Y</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -help</td>
<td>boolean</td>
<td>Report command line options and exit. More information on associated and general qualifiers can be found with -help -verbose</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -warning</td>
<td>boolean</td>
<td>Report warnings</td>
<td>Boolean value Yes/No</td>
<td>Y</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -error</td>
<td>boolean</td>
<td>Report errors</td>
<td>Boolean value Yes/No</td>
<td>Y</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -fatal</td>
<td>boolean</td>
<td>Report fatal errors</td>
<td>Boolean value Yes/No</td>
<td>Y</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -die</td>
<td>boolean</td>
<td>Report dying program messages</td>
<td>Boolean value Yes/No</td>
<td>Y</td>
</tr>
<tr bgcolor="#FFFFCC">
<td> -version</td>
<td>boolean</td>
<td>Report version number and exit</td>
<td>Boolean value Yes/No</td>
<td>N</td>
</tr>
</table>
<H2>
Input file format
</H2>
<b>pepnet</b> reads a single protein sequence.
<p>
<p>
The input is a standard EMBOSS sequence query (also known as a 'USA').
<p>
Major sequence database sources defined as standard in EMBOSS
installations include srs:embl, srs:uniprot and ensembl
<p>
Data can also be read from sequence output in any supported format
written by an EMBOSS or third-party application.
<p>
The input format can be specified by using the
command-line qualifier <tt>-sformat xxx</tt>, where 'xxx' is replaced
by the name of the required format. The available format names are:
gff (gff3), gff2, embl (em), genbank (gb, refseq), ddbj, refseqp, pir
(nbrf), swissprot (swiss, sw), dasgff and debug.
<p>
See:
<A href="http://emboss.sf.net/docs/themes/SequenceFormats.html">
http://emboss.sf.net/docs/themes/SequenceFormats.html</A>
for further information on sequence formats.
<p>
<a name="input.1"></a>
<h3>Input files for usage example </h3>
'tsw:gcn4_yeast' is a sequence entry in the example protein database 'tsw'
<p>
<p><h3>Database entry: tsw:gcn4_yeast</h3>
<table width="90%"><tr><td bgcolor="#FFCCFF">
<pre>
ID GCN4_YEAST Reviewed; 281 AA.
AC P03069; D3DLN9; P03068; Q70D88; Q70D91; Q70D96; Q70D99; Q70DA0;
AC Q96UT3;
DT 21-JUL-1986, integrated into UniProtKB/Swiss-Prot.
DT 21-JUL-1986, sequence version 1.
DT 13-JUN-2012, entry version 139.
DE RecName: Full=General control protein GCN4;
DE AltName: Full=Amino acid biosynthesis regulatory protein;
GN Name=GCN4; Synonyms=AAS3, ARG9; OrderedLocusNames=YEL009C;
OS Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast).
OC Eukaryota; Fungi; Dikarya; Ascomycota; Saccharomycotina;
OC Saccharomycetes; Saccharomycetales; Saccharomycetaceae; Saccharomyces.
OX NCBI_TaxID=559292;
RN [1]
RP NUCLEOTIDE SEQUENCE [GENOMIC DNA].
RX MEDLINE=85038531; PubMed=6387704; DOI=10.1073/pnas.81.20.6442;
RA Hinnebusch A.G.;
RT "Evidence for translational regulation of the activator of general
RT amino acid control in yeast.";
RL Proc. Natl. Acad. Sci. U.S.A. 81:6442-6446(1984).
RN [2]
RP NUCLEOTIDE SEQUENCE [GENOMIC DNA].
RX MEDLINE=84298088; PubMed=6433345; DOI=10.1073/pnas.81.16.5096;
RA Thireos G., Penn M.D., Greer H.;
RT "5' untranslated sequences are required for the translational control
RT of a yeast regulatory gene.";
RL Proc. Natl. Acad. Sci. U.S.A. 81:5096-5100(1984).
RN [3]
RP NUCLEOTIDE SEQUENCE [GENOMIC DNA], AND VARIANTS PRO-24; SER-62;
RP ALA-82; ALA-91; ALA-125 AND GLU-196.
RC STRAIN=CLIB 219, CLIB 382, CLIB 388, CLIB 410, CLIB 413, CLIB 556,
RC CLIB 630, CLIB 95, K1, R12, R13, Sigma 1278B, YIIc12, and YIIc17;
RX PubMed=15087486; DOI=10.1093/nar/gkh529;
RA Leh-Louis V., Wirth B., Despons L., Wain-Hobson S., Potier S.,
RA Souciet J.-L.;
RT "Differential evolution of the Saccharomyces cerevisiae DUP240
RT paralogs and implication of recombination in phylogeny.";
RL Nucleic Acids Res. 32:2069-2078(2004).
RN [4]
RP NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
RC STRAIN=ATCC 204511 / S288c / AB972;
RX MEDLINE=97313264; PubMed=9169868;
RA Dietrich F.S., Mulligan J.T., Hennessy K.M., Yelton M.A., Allen E.,
RA Araujo R., Aviles E., Berno A., Brennan T., Carpenter J., Chen E.,
RA Cherry J.M., Chung E., Duncan M., Guzman E., Hartzell G.,
RA Hunicke-Smith S., Hyman R.W., Kayser A., Komp C., Lashkari D., Lew H.,
RA Lin D., Mosedale D., Nakahara K., Namath A., Norgren R., Oefner P.,
RA Oh C., Petel F.X., Roberts D., Sehl P., Schramm S., Shogren T.,
RA Smith V., Taylor P., Wei Y., Botstein D., Davis R.W.;
RT "The nucleotide sequence of Saccharomyces cerevisiae chromosome V.";
<font color=red> [Part of this file has been deleted for brevity]</font>
FT /FTId=PRO_0000076490.
FT DOMAIN 253 274 Leucine-zipper.
FT DNA_BIND 231 249 Basic motif.
FT REGION 89 100 Required for transcriptional activation.
FT REGION 106 125 Required for transcriptional activation.
FT MOD_RES 17 17 Phosphoserine.
FT MOD_RES 165 165 Phosphothreonine; by PHO85.
FT MOD_RES 218 218 Phosphoserine.
FT VARIANT 24 24 S -> P (in strain: CLIB 219).
FT VARIANT 62 62 P -> S (in strain: CLIB 630 haplotype
FT Ha2).
FT VARIANT 82 82 T -> A (in strain: CLIB 556 haplotype
FT Ha1).
FT VARIANT 91 91 D -> A (in strain: CLIB 95, CLIB 219,
FT CLIB 382, CLIB 388, CLIB 410, CLIB 413,
FT CLIB 556, CLIB 630, K1, R12, R13
FT haplotype Ha2, Sigma 1278B haplotype Ha1,
FT YIIc12 and YIIc17).
FT VARIANT 125 125 D -> A (in strain: CLIB 556 haplotype
FT Ha1).
FT VARIANT 196 196 D -> E (in strain: CLIB 388, CLIB 410,
FT CLIB 413, CLIB 630 haplotype Ha1, K1,
FT YIIc12 haplotype Ha2 and YIIc17 haplotype
FT Ha1).
FT MUTAGEN 97 98 FF->AA: Reduces transcriptional
FT activation activity; when associated with
FT A-107; A-110; A-113; A-120; A-123 and A-
FT 124.
FT MUTAGEN 107 107 M->A: Reduces transcriptional activation
FT activity; when associated with A-97; A-
FT 98; A-110; A-113; A-120; A-123 and A-124.
FT MUTAGEN 110 110 Y->A: Reduces transcriptional activation
FT activity; when associated with A-97; A-
FT 98; A-107; A-113; A-120; A-123 and A-124.
FT MUTAGEN 113 113 L->A: Reduces transcriptional activation
FT activity; when associated with A-97; A-
FT 98; A-107; A-110; A-120; A-123 and A-124.
FT MUTAGEN 120 124 WTSLF->ATSAA: Reduces transcriptional
FT activation activity; when associated with
FT A-97; A-98; A-107; A-110 and A-113.
FT CONFLICT 239 281 ARRSRARKLQRMKQLEDKVEELLSKNYHLENEVARLKKLVG
FT ER -> PGVLVRESCKE (in Ref. 2; AAA65521).
FT HELIX 230 248
FT HELIX 251 280
SQ SEQUENCE 281 AA; 31310 MW; 2ED1B8E35D509578 CRC64;
MSEYQPSLFA LNPMGFSPLD GSKSTNENVS ASTSTAKPMV GQLIFDKFIK TEEDPIIKQD
TPSNLDFDFA LPQTATAPDA KTVLPIPELD DAVVESFFSS STDSTPMFEY ENLEDNSKEW
TSLFDNDIPV TTDDVSLADK AIESTEEVSL VPSNLEVSTT SFLPTPVLED AKLTQTRKVK
KPNSVVKKSH HVGKDDESRL DHLGVVAYNR KQRSIPLSPI VPESSDPAAL KRARNTEAAR
RSRARKLQRM KQLEDKVEEL LSKNYHLENE VARLKKLVGE R
//
</pre>
</td></tr></table><p>
<H2>
Output file format
</H2>
<p>
The output is to the specified graphics device.
<p>
The results can be output in one of several formats by using the
command-line qualifier <b>-graph xxx</b>, where 'xxx' is replaced by
the name of the required device. Support depends on the availability
of third-party software packages.
<p>
The device names that output to a file are:
ps (postscript), cps (colourps), png, gif, pdf, svg, hpgl, hp7470,
hp7580, das, data.
<p> The other available device names are: meta, x11 (xwindows), tek
(tek4107t), tekt (tektronix), xterm, text.
<p>
Output can be turned off by specifying none (null).
<p>
See:
<A href="http://emboss.sf.net/docs/themes/GraphicsDevices.html">
http://emboss.sf.net/docs/themes/GraphicsDevices.html</A>
for further information on supported devices.
<p>
<p>
<a name="output.1"></a>
<h3>Output files for usage example </h3>
<p><h3>Graphics File: pepnet.ps</h3>
<p><img src="pepnet.1.pepnet.gif" alt="[pepnet results]">
<H2>
Data files
</H2>
None.
<H2>
Notes
</H2>
None.
<H2>
References
</H2>
None.
<H2>
Warnings
</H2>
None.
<H2>
Diagnostic Error Messages
</H2>
None.
<H2>
Exit status
</H2>
It exits with a status of 0.
<H2>
Known bugs
</H2>
None.
<h2><a name="See also">See also</a></h2>
<table border cellpadding=4 bgcolor="#FFFFF0">
<tr><th>Program name</th>
<th>Description</th></tr>
<tr>
<td><a href="abiview.html">abiview</a></td>
<td>Display the trace in an ABI sequencer file</td>
</tr>
<tr>
<td><a href="cirdna.html">cirdna</a></td>
<td>Draw circular map of DNA constructs</td>
</tr>
<tr>
<td><a href="garnier.html">garnier</a></td>
<td>Predict protein secondary structure using GOR method</td>
</tr>
<tr>
<td><a href="helixturnhelix.html">helixturnhelix</a></td>
<td>Identify nucleic acid-binding motifs in protein sequences</td>
</tr>
<tr>
<td><a href="iep.html">iep</a></td>
<td>Calculate the isoelectric point of proteins</td>
</tr>
<tr>
<td><a href="lindna.html">lindna</a></td>
<td>Draw linear maps of DNA constructs</td>
</tr>
<tr>
<td><a href="pepcoil.html">pepcoil</a></td>
<td>Predict coiled coil regions in protein sequences</td>
</tr>
<tr>
<td><a href="pepinfo.html">pepinfo</a></td>
<td>Plot amino acid properties of a protein sequence in parallel</td>
</tr>
<tr>
<td><a href="pepwheel.html">pepwheel</a></td>
<td>Draw a helical wheel diagram for a protein sequence</td>
</tr>
<tr>
<td><a href="plotorf.html">plotorf</a></td>
<td>Plot potential open reading frames in a nucleotide sequence</td>
</tr>
<tr>
<td><a href="prettyplot.html">prettyplot</a></td>
<td>Draw a sequence alignment with pretty formatting</td>
</tr>
<tr>
<td><a href="prettyseq.html">prettyseq</a></td>
<td>Write a nucleotide sequence and its translation to file</td>
</tr>
<tr>
<td><a href="remap.html">remap</a></td>
<td>Display restriction enzyme binding sites in a nucleotide sequence</td>
</tr>
<tr>
<td><a href="showfeat.html">showfeat</a></td>
<td>Display features of a sequence in pretty format</td>
</tr>
<tr>
<td><a href="showpep.html">showpep</a></td>
<td>Display protein sequences with features in pretty format</td>
</tr>
<tr>
<td><a href="sixpack.html">sixpack</a></td>
<td>Display a DNA sequence with 6-frame translation and ORFs</td>
</tr>
</table>
<H2>
Author(s)
</H2>
Alan Bleasby
<br>
European Bioinformatics Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge CB10 1SD, UK
<p>
Please report all bugs to the EMBOSS bug team (emboss-bug © emboss.open-bio.org) not to the original author.
<H2>
History
</H2>
Written (2000) - Alan Bleasby
<H2>
Target users
</H2>
This program is intended to be used by everyone and everything, from naive users to embedded scripts.
<H2>
Comments
</H2>
None
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