3f640d70bab0bc124024a977d8836756318c1852
gperez2
  Fri Sep 4 14:39:51 2026 -0700
Fixing malformed HTML in three track description pages caught by hgTablesTest: encode4LongRnaTranscripts.html had a stray html/body wrapper, and knownGeneVM33.html/knownGeneVM36.html each had an extra closing </ul>. No RM.

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 <h2>Description</h2>
 <p>
 The GENCODE Genes track (version M33, Jul 2023) shows high-quality manual
 annotations merged with evidence-based automated annotations across the entire
 human genome generated by the
 <a href="https://www.gencodegenes.org/" target="_blank">GENCODE project</a>.
 By default, only the basic gene set is
 displayed, which is a subset of the comprehensive gene set. The basic set represents transcripts
 that GENCODE believes will be useful to the majority of users.</p>
 
 <p>
 The track includes protein-coding genes, non-coding RNA genes, and pseudo-genes, though pseudo-genes
 are not displayed by default. It contains annotations on the reference chromosomes as well as
 assembly patches and alternative loci (haplotypes).</p>
 
 <p>
 The following table provides statistics for the VM33 release derived from the GTF file that contains
 annotations only on the main chromosomes. More information on how they were generated can be found
 in the <a target="_blank" href="https://www.gencodegenes.org/mouse/stats.html">GENCODE site</a>.</p>
 
 <p>
 <blockquote><table class="stdTbl">
 <tr><th COLSPAN=4>GENCODE VM33 Release Stats</th></tr>
 <tr align=left><th>Genes</th><th>Observed</th><th>Transcripts</th><th>Observed</th></tr>
 <tr align=left><td>Protein-coding genes</td><td>21,403</td><td>Protein-coding transcripts</td><td>58,750</td></tr>
 <tr align=left><td>Long non-coding RNA genes</td><td>14,842</td><td><font size="-1">- full length protein-coding</font></td><td>45,112</td></tr>
 <tr align=left><td>Small non-coding RNA genes</td><td>6,105</td><td><font size="-1">- partial length protein-coding</font></td><td>13,638</td></tr>
 <tr align=left><td>Pseudogenes</td><td>13,809</td><td>Nonsense mediated decay transcripts</td><td>7,218</td></tr>
 <tr align=left><td>Immunoglobulin/T-cell receptor gene segments</td><td>701</td><td>Long non-coding RNA loci transcripts</td><td>26,564</td></tr>
 <tr align=left><td>Total No of distinct translations</td><td>44,993</td><td>Genes that have more than one distinct translations</td><td>10,893</td></tr>
 </table><BR>
 </blockquote></p>
 
 <p>
 For more information on the different gene tracks, see our <a target="_blank"
 href="/FAQ/FAQgenes.html">Genes FAQ</a>.</p>
 
 <h2>Display Conventions and Configuration</h2>
 <p>
 By default, this track displays only the basic GENCODE set, splice variants, and non-coding genes.
 It includes options to display the entire GENCODE set and pseudogenes. To customize these
 options, the respective boxes can be checked or unchecked at the top of this description page. 
 
 <p>
 This track also includes a variety of labels which identify the transcripts when visibility is set
 to &quot;full&quot; or &quot;pack&quot;. Gene symbols (e.g. NIPA1) are displayed by default, but
 additional options include GENCODE Transcript ID (ENSMUST00000052204.6), UCSC Known Gene ID
 (uc009hdu.3), UniProt Display ID (Q8BHK1). Additional information about gene
 and transcript names can be found in our
 <a target="_blank" href="/FAQ/FAQgenes.html#genename">FAQ</a>.</p>
 
 <p>
 This track, in general, follows the display conventions for <a target="_blank"
 href="../goldenPath/help/hgTracksHelp.html#GeneDisplay">gene prediction tracks</a>. The exons for
 putative non-coding genes and untranslated regions are represented by relatively thin blocks, while
 those for coding open reading frames are thicker. 
 <p><b>Coloring</b> for the gene annotations is based on the annotation type: </p>
 <ul>
   <li><font color="#0c0c78"><b>coding</b></font>
   <li><font color="#006400"><b>non-coding</b></font>
   <li><font color="#ff33ff"><b>pseudogene</b></font>
   <li><font color="#fe0000"><b>problem</b></font>
   <li><font color="#ff33ff"><b>all 2-way pseudogenes</b></font>
   <li><font color="#000000"><b>all polyA annotations</b></font>
 </ul>
 
 
 
 <p>
 This track contains an optional <a target="_blank"
 href="../goldenPath/help/hgCodonColoring.html">codon coloring feature</a> that allows users to
 quickly validate and compare gene predictions. There is also an option to display the data as
 a <a target="_blank" href="../goldenPath/help/hgWiggleTrackHelp.html">density graph</a>, which
 can be helpful for visualizing the distribution of items over a region.</p>
 
 <h2>Methods</h2>
 <p>
 The GENCODE VM33 track was built from the <a href="https://www.gencodegenes.org/mouse/" 
 target="_blank">GENCODE downloads</a> comprehensive gene annotation (all regions) file 
 <code>gencode.vM33.chr_patch_hapl_scaff.annotation.gff3.gz</code>. Data from other sources 
 were correlated with the GENCODE data to build association tables.</p>
 
 <h2>Related Data</h2>
 <p>
 The GENCODE Genes transcripts are annotated in numerous tables, each of which is also available as a
 <a href="http://hgdownload.soe.ucsc.edu/goldenPath/mm39/database/" target="_blank">downloadable
 file</a>.
 
 <p>
 One can see a full list of the associated tables in the <a href="/cgi-bin/hgTables"
 target="_blank">Table Browser</a> by selecting GENCODE Genes from the <b>track</b> menu; this list
 is then available on the <b>table</b> menu.
-</ul>
 
 <h2>Data access</h2>
 <p>
 GENCODE Genes and its associated tables can be explored interactively using the
 <a href="../goldenPath/help/api.html" target="_blank">REST API</a>, the
 <a href="/cgi-bin/hgTables" target="_blank">Table Browser</a> or the
 <a href="/cgi-bin/hgIntegrator" target="_blank">Data Integrator</a>. 
 The genePred format files for mm39 are available from our 
 <a target="_blank" href="http://hgdownload.soe.ucsc.edu/goldenPath/mm39/database/">
 downloads directory</a> or in our
 <a href="http://hgdownload.soe.ucsc.edu/goldenPath/mm39/bigZips/genes/" target="_blank">
 GTF download directory</a>. 
 All the tables can also be queried directly from our public MySQL
 servers, with more information available on our
 <a target="_blank" href="/goldenPath/help/mysql.html">help page</a> as well as on
 <a target="_blank" href="http://genome.ucsc.edu/blog/tag/mysql/">our blog</a>.</p>
 
 <h2>Credits</h2>
 <p>
 The GENCODE Genes track was produced at UCSC from the GENCODE comprehensive gene set using a
 computational pipeline developed by Jim Kent and Brian Raney.  This version of the track
 was generated by Jonathan Casper.</p>
 
 <h2>References</h2>
 
 <p>
 Frankish A, Carbonell-Sala S, Diekhans M, Jungreis I, Loveland JE, Mudge JM, Sisu C, Wright JC,
 Arnan C, Barnes I <em>et al</em>.
 <a href="https://academic.oup.com/nar/article-lookup/doi/10.1093/nar/gkac1071" target="_blank">
 GENCODE: reference annotation for the human and mouse genomes in 2023</a>.
 <em>Nucleic Acids Res</em>. 2023 Jan 6;51(D1):D942-D949.
 PMID: <a href="https://www.ncbi.nlm.nih.gov/pubmed/36420896" target="_blank">36420896</a>; PMC: <a
 href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9825462/" target="_blank">PMC9825462</a>
 </p>
 
 <p>A full list of GENCODE publications is available
 at <a href="https://www.gencodegenes.org/pages/publications.html" target="_blank">The GENCODE
 Project web site</a>.
 </p>
 
 <h2>Data Release Policy</h2>
 <p>GENCODE data are available for use without restrictions.</p>