Scientific

MK5 Microarray Data


Affected Genes - Ontology Breakdown - Gene Enrichment - Proteome Analysis

These are the micro-array results of a differential gene expression microarray experiments and the subsequent analysis steps performed on them. The up/down- regulation ratio was obtained by measuring WT cells against MK5 activated cells. See material and methods for technical information as well as the data usage policy.

Ontology Breakdown

Below is a table that can help you break down the effect of the gene alteration on the bioloigcal system. To create the table below we went over all the ontology terms and counted the number of times a gene was listed in that specific class, or one of its children. As can be expected, each class will differ in its behavior. Some will have a strong average regulation, but will contain very few genes, while others will be very large and broad classes that will have a lower average regulation, but which will whos an overall effect with many genes in many subgroups being affected.

The best strategy to analyze such classes is to a) filter out all the classes for which we have too little data (less than 5 affected genes on the micro array measurement). This can be done by writing '>5' in the 'Affected Genes' field. SEcondly we might also want to look at one specific ontology at first (click on 'biological process' in the table.

Once this is done we can sort the data properly by placing the 'Average Regulation' to the left (click on the green arrows) and the '% Affected Genes' as a second. We also want to sort them descending (the grey arrow should be pointing downward).

Now we can go investigate the data by first look at broadly affected classes ('Would Be Affected Genes'>60) and progressively lowering this value (to something like 'Would Be Affected Genes'>20)


Navigation/Query Panel:
Click on the attribute name to hide/unhide it. The green arrows can be used to shift columns left/right. Exact word match is written as =..., regular expressions can be matched with ~.... To select all values larger or equal than use >.... This would be <... for values smaller or equal than. To select all values within a specific range use [...,...].
Average Regulation (ratio) % Affected Genes Would Be Affected (#genes) Class Size (#genes) Class Class affected Microarray Measured (#genes) Accession
Results: HTML CSV LaTeX Showing element 75 to 124 of 173 in total
Class: biological process
\def\wcA{0.16666666666667\textwidth} \def\wcB{0.16666666666667\textwidth} \def\wcC{0.16666666666667\textwidth} \def\wcD{0.16666666666667\textwidth} \def\wcE{0.16666666666667\textwidth} \begin{longtable}{|c|c|c|c|c|} \hline \parbox{\wcA}{\vspace{3pt}\noindent Average Regulation (ratio)\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent \% Affected Genes\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent Would Be Affected (#genes)\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent Class Size (#genes)\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent Class\vspace{3pt}}\\ \hline \hline \parbox{\wcA}{\vspace{3pt}\noindent 2.3178554457061145\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.6245\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 69\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2628\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of transcription\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.3127479553222656\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.4970\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 6\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 398\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent behavior\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.312502180275164\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.3114\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 96\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 4136\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cell communication\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.3038527108075324\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4081\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 66\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2739\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent developmental process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2985232734680174\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.5907\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 70\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2698\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of nucleobase, nucleoside, nucleotide and nucleic acid metabolic process\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 2.28793443441391\vspace{3pt}}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.6247\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 11\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 429\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent positive regulation of cellular metabolic process\vspace{3pt}}\\\cline{2-2}\cline{4-5} &\parbox{\wcB}{\vspace{3pt}\noindent 2.4631\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 456\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent positive regulation of metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2737072706222534\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.2364\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 17\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 752\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent lipid metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.267966568470001\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 3.9735\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 7\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 164\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent transmembrane receptor protein tyrosine kinase signaling pathway\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2670372059712043\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4610\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 72\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2913\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of cellular metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2604436332529243\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.2267\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 14\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 634\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent response to external stimulus\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2601398825645447\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.5228\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 7\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 464\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent monovalent inorganic cation transport\vspace{3pt}}\\\cline{1-2}\cline{4-5} \parbox{\wcA}{\vspace{3pt}\noindent 2.2540424267450967\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.9608\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 358\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent negative regulation of nucleobase, nucleoside, nucleotide and nucleic acid metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.252760338363143\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4522\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 294\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 11986\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cellular process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.248631090488074\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4047\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 73\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 3018\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.246480769722174\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4413\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 377\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 15431\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent biological\_process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.243723976612091\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0202\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 15\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 762\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent macromolecule biosynthetic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2348088707242693\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.5271\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 8\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 321\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent nervous system development\vspace{3pt}}\\\cline{1-2}\cline{4-5} \parbox{\wcA}{\vspace{3pt}\noindent 2.2326475211552212\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.9608\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 414\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent negative regulation of cellular metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.2164768129587173\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 3.4335\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 9\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 264\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent organ morphogenesis\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 2.2058627247810363\vspace{3pt}}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0161\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 23\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 1164\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent negative regulation of cellular process\vspace{3pt}}\\\cline{2-2}\cline{4-5} &\parbox{\wcB}{\vspace{3pt}\noindent 1.8957\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 1238\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent negative regulation of biological process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1918027877807615\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0661\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 12\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 569\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent metal ion transport\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1811264465595115\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.6103\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 33\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 1273\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent anatomical structure development\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1725611826952766\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.2398\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 20\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 914\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent establishment of cellular localization\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 2.1655175536870956\vspace{3pt}}}&\parbox{\wcB}{\vspace{3pt}\noindent 6.3492\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 9\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 142\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent protein amino acid dephosphorylation\vspace{3pt}}\\\cline{2-2}\cline{4-5} &\parbox{\wcB}{\vspace{3pt}\noindent 5.7143\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 158\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent dephosphorylation\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.16537378515516\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0202\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 17\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 840\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent intracellular transport\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.158773183822632\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.8421\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 8\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 428\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent response to endogenous stimulus\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1474349200725555\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.1390\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 9\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 432\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cell motility\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1418599311043236\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.8333\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 19\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 686\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent anatomical structure morphogenesis\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 2.123886121643914\vspace{3pt}}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0179\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 11\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 534\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of apoptosis\vspace{3pt}}\\\cline{2-2}\cline{4-5} &\parbox{\wcB}{\vspace{3pt}\noindent 1.9912\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 540\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of programmed cell death\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1234114333987235\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.3959\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 104\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 4348\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of cellular process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.121824940045675\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.9824\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 10\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 510\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent vesicle-mediated transport\vspace{3pt}}\\\hline \multirow{2}{*}{\parbox{\wcA}{\vspace{3pt}\noindent 2.1211151123046874\vspace{3pt}}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0325\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 13\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 663\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent macromolecular complex assembly\vspace{3pt}}\\\cline{2-2}\cline{4-5} &\parbox{\wcB}{\vspace{3pt}\noindent 1.9120\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 701\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cellular component assembly\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.1150057166814804\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0202\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 9\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 460\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent negative regulation of metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.114047809080644\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.0992\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 13\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 633\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent response to chemical stimulus\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.105520764986674\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.1164\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 14\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 669\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cation transport\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.0980815972600664\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.9204\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 16\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 832\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent RNA metabolic process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.089855896725374\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.3262\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 110\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 4730\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent regulation of biological process\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.0859246611595155\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 1.5773\vspace{3pt}}&\multirow{2}{*}{\parbox{\wcC}{\vspace{3pt}\noindent 11\vspace{3pt}}}&\parbox{\wcD}{\vspace{3pt}\noindent 727\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cell differentiation\vspace{3pt}}\\\cline{1-2}\cline{4-5} \parbox{\wcA}{\vspace{3pt}\noindent 2.0707096576690676\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4272\vspace{3pt}}&&\parbox{\wcD}{\vspace{3pt}\noindent 466\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent system development\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.0665640378820487\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.3577\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 70\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2969\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent establishment of localization\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.0664001241807015\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.2856\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 120\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 5267\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent biological regulation\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.046714186668396\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.5078\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 9\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 370\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent cell proliferation\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.044925112809454\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.3304\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 68\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 2906\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent transport\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.02202084991667\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.2167\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 22\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 974\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent ion transport\vspace{3pt}}\\\hline \parbox{\wcA}{\vspace{3pt}\noindent 2.017735466957092\vspace{3pt}}&\parbox{\wcB}{\vspace{3pt}\noindent 2.4655\vspace{3pt}}&\parbox{\wcC}{\vspace{3pt}\noindent 29\vspace{3pt}}&\parbox{\wcD}{\vspace{3pt}\noindent 1165\vspace{3pt}}&\parbox{\wcE}{\vspace{3pt}\noindent positive regulation of biological process\vspace{3pt}}\\\hline nd{longtable}
Legend:
- The Average Regulation (ratio) is calculated only for the measured genes in this gene ontology term
- % Affected Genes is the % of genes in this gene ontology class that have been affected by the Mk5 alteration.
- Would Be Affected (#genes) represents how many genes of the overall class would have been affected if we measured each of them.
- The Class Size (#genes) counts the number of genes listed under the specific gene ontology term.
- Class is the GO class description.
- The Class refers to the ontology category, which can be molecular_function, biological_process or cellular_component.
- The Microarray Measured (#genes) lists how many genes of the specific ontology term were measured.
- Accession is the GO accession key.

- http://analysis.yellowcouch.org/