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POLQ

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Yuasa MS, Masutani C, Hirano A, Cohn MA, Yamaizumi M, Nakatani Y, Hanaoka F (July 2006). "A human DNA polymerase eta complex containing Rad18, Rad6 and Rev1; proteomic analysis and targeting of the complex to the chromatin-bound fraction of cells undergoing replication fork arrest".
50: 2338:"Biochemical basis of genotoxicity of heterocyclic arylamine food mutagens: Human DNA polymerase eta selectively produces a two-base deletion in copying the N2-guanyl adduct of 2-amino-3-methylimidazo[4,5-f]quinoline but not the C8 adduct at the NarI G3 site" 1159:
heterodimer, and it can only act on resected DNA ends. Following annealing of short (i.e., a few nucleotides) regions on the DNA overhangs, DNA polymerase theta catalyzes template-dependent DNA synthesis across the broken ends, stabilizing the paired structure.
1931:
Robertson NG, Khetarpal U, Gutiérrez-Espeleta GA, Bieber FR, Morton CC (September 1994). "Isolation of novel and known genes from a human fetal cochlear cDNA library using subtractive hybridization and differential screening".
1155:(HDR). However, in some contexts, NHEJ and HR are insufficient and TMEJ is the only solution to repair the break. TMEJ is often described as alternative NHEJ, but differs in that it lacks a requirement for the 326: 225: 2033:
Kawamura K, Bahar R, Seimiya M, Chiyo M, Wada A, Okada S, et al. (March 2004). "DNA polymerase theta is preferentially expressed in lymphoid tissues and upregulated in human cancers".
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Cruet-Hennequart S, Coyne S, Glynn MT, Oakley GG, Carty MP (April 2006). "UV-induced RPA phosphorylation is increased in the absence of DNA polymerase eta and requires DNA-PK".
1147:. This polymerase plays a key role in one of the three major double strand break repair pathways: theta-mediated end joining (TMEJ). Most double-strand breaks are repaired by 2158:"Error-prone translesion synthesis by human DNA polymerase eta on DNA-containing deoxyadenosine adducts of 7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene" 1303:
Sharief FS, Vojta PJ, Ropp PA, Copeland WC (July 1999). "Cloning and chromosomal mapping of the human DNA polymerase theta (POLQ), the eighth human DNA polymerase".
1180:(MMEJ). Moreover, when break ends are not stabilized properly, the break ends can detach after polymerization. When these polymerized ends anneal again, a templated 1758:
Schimmel J, van Schendel R, den Dunnen JT, Tijsterman M (September 2019). "Templated Insertions: A Smoking Gun for Polymerase Theta-Mediated End Joining".
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Schimmel J, van Schendel R, den Dunnen JT, Tijsterman M (September 2019). "Templated Insertions: A Smoking Gun for Polymerase Theta-Mediated End Joining".
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from both break ends to initiate repair, which leads to loss of one set of these nucleotides in the DNA sequence. Therefore, TMEJ is a form of
1961:
Maga G, Shevelev I, Ramadan K, Spadari S, Hübscher U (May 2002). "DNA polymerase theta purified from human cells is a high-fidelity enzyme".
1285: 1267: 1074: 1081: 1338: 2525: 2501: 1250: 2520: 47: 1229: 1177: 312: 289: 1454:"A Polymerase Theta-dependent repair pathway suppresses extensive genomic instability at endogenous G4 DNA sites" 1254: 1233: 907: 1354:"Dual roles for DNA polymerase theta in alternative end-joining repair of double-strand breaks in Drosophila" 888: 2072:"Sequence comparison of human and mouse genes reveals a homologous block structure in the promoter regions" 2070:
Suzuki Y, Yamashita R, Shirota M, Sakakibara Y, Chiba J, Mizushima-Sugano J, et al. (September 2004).
211: 186: 128: 2193:"The translesion DNA polymerase theta plays a dominant role in immunoglobulin gene somatic hypermutation" 1801: 1405:"Synthesis-dependent microhomology-mediated end joining accounts for multiple types of repair junctions" 1148: 325: 224: 2494: 318: 217: 115: 1152: 1053: 1002: 136: 2265:"A novel role of DNA polymerase eta in modulating cellular sensitivity to chemotherapeutic agents" 1701:
Ceccaldi R, Liu JC, Amunugama R, Hajdu I, Primack B, Petalcorin MI, et al. (February 2015).
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Chandramouly G, Zhao J, McDevitt S, Rusanov T, Hoang T, Borisonnik N, et al. (June 2021).
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Koole W, van Schendel R, Karambelas AE, van Heteren JT, Okihara KL, Tijsterman M (2014-02-05).
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Yousefzadeh MJ, Wyatt DW, Takata K, Mu Y, Hensley SC, Tomida J, et al. (October 2014).
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Zan H, Shima N, Xu Z, Al-Qahtani A, Evinger Iii AJ, Zhong Y, et al. (November 2005).
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Chiapperino D, Cai M, Sayer JM, Yagi H, Kroth H, Masutani C, et al. (December 2005).
1503:"Polymerase theta-mediated end joining of replication-associated DNA breaks in C. elegans" 156: 8: 1644:
Mateos-Gomez PA, Gong F, Nair N, Miller KM, Lazzerini-Denchi E, Sfeir A (February 2015).
2373:"Translesion synthesis by human DNA polymerase eta across oxidative products of guanine" 1843: 1718: 1661: 1469: 2432: 2407: 2324: 2217: 2192: 2058: 1914: 1889: 1860: 1827: 1783: 1735: 1702: 1678: 1645: 1621: 1594: 1575: 1527: 1502: 1429: 1404: 1380: 1353: 160: 2139: 2114: 2096: 2071: 2016: 1991: 1974: 777: 772: 767: 762: 757: 752: 747: 742: 737: 732: 727: 722: 717: 701: 696: 691: 686: 670: 665: 660: 655: 650: 645: 640: 635: 630: 625: 620: 615: 610: 605: 2437: 2394: 2359: 2336:
Choi JY, Stover JS, Angel KC, Chowdhury G, Rizzo CJ, Guengerich FP (September 2006).
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Seki M, Masutani C, Yang LW, Schuffert A, Iwai S, Bahar I, Wood RD (November 2004).
2062: 140: 2427: 2419: 2384: 2349: 2308: 2276: 2243: 2212: 2204: 2169: 2134: 2126: 2091: 2083: 2042: 2011: 2003: 1970: 1941: 1909: 1901: 1855: 1847: 1767: 1730: 1722: 1673: 1665: 1616: 1606: 1559: 1522: 1514: 1473: 1424: 1416: 1375: 1365: 1312: 405: 336: 280: 235: 2281: 2264: 1703:"Homologous-recombination-deficient tumours are dependent on Polθ-mediated repair" 1200:
were long thought to only transcribe DNA into DNA or RNA and not be able to write
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National Center for Biotechnology Information, U.S. National Library of Medicine
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National Center for Biotechnology Information, U.S. National Library of Medicine
2471: 1646:"Mammalian polymerase θ promotes alternative NHEJ and suppresses recombination" 1197: 481: 119:, POLH, PRO0327, polymerase (DNA) theta, DNA polymerase theta, DNA polymerase θ 2475: 1771: 1563: 723:
negative regulation of double-strand break repair via homologous recombination
2514: 2208: 2130: 592: 2389: 2372: 1992:"POLQ (Pol theta), a DNA polymerase and DNA-dependent ATPase in human cells" 1595:"Mechanism of suppression of chromosomal instability by DNA polymerase POLQ" 541: 419: 2467: 2441: 2398: 2363: 2354: 2337: 2320: 2290: 2255: 2226: 2183: 2174: 2157: 2148: 2105: 2054: 2025: 1982: 1945: 1923: 1869: 1851: 1779: 1744: 1687: 1630: 1571: 1536: 1487: 1438: 1389: 1324: 1316: 1156: 563: 398: 177: 1953: 1930: 1905: 1518: 1121: 1116: 2406:
Ewing RM, Chu P, Elisma F, Li H, Taylor P, Climie S, et al. (2007).
2007: 1420: 1169: 952: 933: 1757: 1726: 1669: 1549: 2423: 2087: 1478: 1453: 1193: 1173: 297: 194: 144: 2046: 1451: 85: 81: 77: 73: 69: 807: 364: 351: 263: 250: 152: 1828:"Polθ reverse transcribes RNA and promotes RNA-templated DNA repair" 728:
double-strand break repair via alternative nonhomologous end joining
1105: 1802:"New discovery shows human cells can write RNA sequences into DNA" 919: 874: 792: 788: 2263:
Chen YW, Cleaver JE, Hanaoka F, Chang CF, Chou KM (April 2006).
2233: 2115:"High-efficiency bypass of DNA damage by human DNA polymerase Q" 2069: 572: 132: 1825: 1137: 1089: 829: 1500: 2463: 2455: 1887: 1144: 1960: 1643: 1163: 2371:
Kino K, Ito N, Sugasawa K, Sugiyama H, Hanaoka F (2007).
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double-strand break repair via homologous recombination
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Roerink SF, van Schendel R, Tijsterman M (June 2014).
1890:"Promiscuous DNA synthesis by human DNA polymerase θ" 1888:
Hogg M, Sauer-Eriksson AE, Johansson E (March 2012).
553: 2190: 1339:"Entrez Gene: POLQ polymerase (DNA directed), theta" 1246: 1244: 1242: 1225: 1223: 1221: 335: 234: 2512: 2405: 1239: 1218: 1187: 16:Protein-coding gene in the species Homo sapiens 1989: 1251:GRCm38: Ensembl release 89: ENSMUSG00000034206 2495: 718:somatic hypermutation of immunoglobulin genes 1694: 1637: 1586: 1990:Seki M, Marini F, Wood RD (November 2003). 1351: 1296: 1230:GRCh38: Ensembl release 89: ENSG00000051341 778:nucleic acid phosphodiester bond hydrolysis 2502: 2488: 2431: 2388: 2353: 2280: 2216: 2173: 2138: 2095: 2015: 1913: 1859: 1734: 1677: 1620: 1610: 1526: 1477: 1428: 1379: 1369: 1172:, since polymerase theta uses homologous 631:5'-deoxyribose-5-phosphate lyase activity 1184:arises between the deletion junctions. 733:cellular response to DNA damage stimulus 1402: 1164:Polymerase theta's mutational signature 2513: 1352:Chan SH, Yu AM, McVey M (July 2010). 1331: 626:single-stranded DNA helicase activity 340: 301: 296: 239: 198: 193: 2450: 656:DNA-directed DNA polymerase activity 2342:The Journal of Biological Chemistry 2162:The Journal of Biological Chemistry 1178:micro-homology mediated end joining 13: 1880: 14: 2537: 1403:Yu AM, McVey M (September 2010). 1140:that in humans is encoded by the 2454: 2313:10.1111/j.1365-2443.2006.00974.x 562: 324: 317: 311: 288: 223: 216: 210: 185: 2035:International Journal of Cancer 1794: 1751: 1543: 1494: 621:nucleotidyltransferase activity 2377:Nucleic Acids Symposium Series 1445: 1396: 1345: 1278: 1260: 573:More reference expression data 542:More reference expression data 1: 2526:Human chromosome 3 gene stubs 2282:10.1158/1541-7786.MCR-05-0118 1975:10.1016/S0022-2836(02)00325-X 1211: 773:DNA-dependent DNA replication 309: 208: 2474:. You can help Knowledge by 2248:10.1016/j.dnarep.2006.01.008 1963:Journal of Molecular Biology 1612:10.1371/journal.pgen.1004654 1371:10.1371/journal.pgen.1001005 1192:Polθ promotes RNA-templated 1188:Reverse transcription of RNA 7: 2521:Genes on human chromosome 3 748:protein homooligomerization 458:stromal cell of endometrium 10: 2542: 2449: 1149:non-homologous end joining 768:double-strand break repair 666:5'-3' exonuclease activity 462:mucosa of transverse colon 2412:Molecular Systems Biology 2269:Molecular Cancer Research 1772:10.1016/j.tig.2019.06.001 1564:10.1016/j.tig.2019.06.001 1286:"Mouse PubMed Reference:" 1268:"Human PubMed Reference:" 1120: 1115: 1111: 1104: 1088: 1075:Chr 3: 121.43 – 121.55 Mb 1069: 1050: 1046: 1029: 1025: 1018: 999: 995: 974: 970: 963: 950: 946: 931: 927: 918: 905: 901: 886: 882: 873: 860: 856: 841: 837: 828: 813: 806: 802: 786: 671:identical protein binding 591: 587: 570: 561: 552: 539: 488: 479: 426: 417: 387: 379: 375: 358: 345: 308: 287: 278: 274: 257: 244: 207: 184: 175: 171: 126: 123: 113: 106: 101: 66: 61: 44: 39: 34: 30: 26: 21: 2209:10.1038/sj.emboj.7600833 2131:10.1038/sj.emboj.7600424 1153:homology directed repair 1082:Chr 16: 36.83 – 36.92 Mb 763:DNA biosynthetic process 2355:10.1074/jbc.M605699200 2175:10.1074/jbc.M508008200 1996:Nucleic Acids Research 1946:10.1006/geno.1994.1457 1894:Nucleic Acids Research 1852:10.1126/sciadv.abf1771 1409:Nucleic Acids Research 1317:10.1006/geno.1999.5843 1168:TMEJ is intrinsically 342:16 B3|16 26.32 cM 2390:10.1093/nass/48.1.171 1519:10.1101/gr.170431.113 1458:Nature Communications 303:Chromosome 16 (mouse) 1134:DNA polymerase theta 758:base-excision repair 651:nucleic acid binding 606:transferase activity 201:Chromosome 3 (human) 62:List of PDB id codes 35:Available structures 1906:10.1093/nar/gkr1102 1844:2021SciA....7.1771C 1727:10.1038/nature14184 1719:2015Natur.518..258C 1670:10.1038/nature14157 1662:2015Natur.518..254M 1470:2014NatCo...5.3216K 641:damaged DNA binding 466:gingival epithelium 446:ganglionic eminence 2462:This article on a 2424:10.1038/msb4100134 2088:10.1101/gr.2435604 2008:10.1093/nar/gkg814 1760:Trends in Genetics 1552:Trends in Genetics 1479:10.1038/ncomms4216 1421:10.1093/nar/gkq379 908:ENSMUSG00000034206 711:Biological process 680:Cellular component 611:nucleotide binding 599:Molecular function 2483: 2482: 2348:(35): 25297–306. 2047:10.1002/ijc.11666 1131: 1130: 1127: 1126: 1100: 1099: 1065: 1064: 1040: 1039: 1014: 1013: 989: 988: 959: 958: 940: 939: 914: 913: 895: 894: 869: 868: 850: 849: 798: 797: 636:chromatin binding 583: 582: 579: 578: 548: 547: 535: 534: 473: 472: 450:bone marrow cells 371: 370: 270: 269: 97: 96: 93: 92: 45:Ortholog search: 2533: 2504: 2497: 2490: 2458: 2451: 2445: 2435: 2402: 2392: 2367: 2357: 2332: 2294: 2284: 2259: 2230: 2220: 2197:The EMBO Journal 2187: 2177: 2168:(48): 39684–92. 2152: 2142: 2119:The EMBO Journal 2109: 2099: 2066: 2029: 2019: 1986: 1957: 1927: 1917: 1874: 1873: 1863: 1838:(24): eabf1771. 1832:Science Advances 1823: 1817: 1816: 1814: 1812: 1798: 1792: 1791: 1755: 1749: 1748: 1738: 1713:(7538): 258–62. 1698: 1692: 1691: 1681: 1641: 1635: 1634: 1624: 1614: 1605:(10): e1004654. 1590: 1584: 1583: 1547: 1541: 1540: 1530: 1498: 1492: 1491: 1481: 1449: 1443: 1442: 1432: 1400: 1394: 1393: 1383: 1373: 1349: 1343: 1342: 1335: 1329: 1328: 1300: 1294: 1293: 1282: 1276: 1275: 1264: 1258: 1248: 1237: 1227: 1113: 1112: 1084: 1077: 1060: 1044: 1043: 1035: 1023: 1022: 1019:RefSeq (protein) 1009: 993: 992: 984: 968: 967: 944: 943: 925: 924: 899: 898: 880: 879: 854: 853: 835: 834: 804: 803: 589: 588: 575: 566: 559: 558: 544: 528:secondary oocyte 508:ventricular zone 496:genital tubercle 484: 482:Top expressed in 477: 476: 438:ventricular zone 430:secondary oocyte 422: 420:Top expressed in 415: 414: 394: 393: 377: 376: 367: 354: 343: 328: 321: 315: 304: 292: 276: 275: 266: 253: 242: 227: 220: 214: 203: 189: 173: 172: 167: 165:POLQ - orthologs 118: 111: 88: 59: 58: 53: 32: 31: 19: 18: 2541: 2540: 2536: 2535: 2534: 2532: 2531: 2530: 2511: 2510: 2509: 2508: 2448: 2203:(21): 3757–69. 2125:(22): 4484–94. 2076:Genome Research 2002:(21): 6117–26. 1883: 1881:Further reading 1878: 1877: 1824: 1820: 1810: 1808: 1800: 1799: 1795: 1756: 1752: 1699: 1695: 1656:(7538): 254–7. 1642: 1638: 1591: 1587: 1548: 1544: 1507:Genome Research 1499: 1495: 1450: 1446: 1415:(17): 5706–17. 1401: 1397: 1364:(7): e1001005. 1350: 1346: 1337: 1336: 1332: 1301: 1297: 1284: 1283: 1279: 1266: 1265: 1261: 1249: 1240: 1228: 1219: 1214: 1198:DNA polymerases 1190: 1166: 1122:View/Edit Mouse 1117:View/Edit Human 1080: 1073: 1070:Location (UCSC) 1056: 1052: 1031: 1005: 1001: 980: 976: 889:ENSG00000051341 782: 738:DNA replication 706: 675: 646:protein binding 571: 540: 531: 526: 522: 518: 514: 510: 506: 502: 498: 494: 480: 469: 464: 460: 456: 454:trabecular bone 452: 448: 444: 440: 436: 432: 418: 362: 349: 341: 331: 330: 329: 322: 302: 279:Gene location ( 261: 248: 240: 230: 229: 228: 221: 199: 176:Gene location ( 127: 114: 107: 68: 46: 17: 12: 11: 5: 2539: 2529: 2528: 2523: 2507: 2506: 2499: 2492: 2484: 2481: 2480: 2459: 2447: 2446: 2403: 2368: 2333: 2301:Genes to Cells 2295: 2260: 2242:(4): 491–504. 2231: 2188: 2153: 2110: 2067: 2030: 1987: 1958: 1928: 1900:(6): 2611–22. 1884: 1882: 1879: 1876: 1875: 1818: 1793: 1766:(9): 632–644. 1750: 1693: 1636: 1585: 1558:(9): 632–644. 1542: 1493: 1444: 1395: 1344: 1330: 1295: 1277: 1259: 1238: 1216: 1215: 1213: 1210: 1204:segments into 1196:. Previously, 1189: 1186: 1165: 1162: 1129: 1128: 1125: 1124: 1119: 1109: 1108: 1102: 1101: 1098: 1097: 1095: 1093: 1086: 1085: 1078: 1071: 1067: 1066: 1063: 1062: 1048: 1047: 1041: 1038: 1037: 1027: 1026: 1020: 1016: 1015: 1012: 1011: 997: 996: 990: 987: 986: 972: 971: 965: 961: 960: 957: 956: 948: 947: 941: 938: 937: 929: 928: 922: 916: 915: 912: 911: 903: 902: 896: 893: 892: 884: 883: 877: 871: 870: 867: 866: 858: 857: 851: 848: 847: 839: 838: 832: 826: 825: 820: 815: 811: 810: 800: 799: 796: 795: 784: 783: 781: 780: 775: 770: 765: 760: 755: 750: 745: 740: 735: 730: 725: 720: 714: 712: 708: 707: 705: 704: 699: 694: 689: 683: 681: 677: 676: 674: 673: 668: 663: 658: 653: 648: 643: 638: 633: 628: 623: 618: 613: 608: 602: 600: 596: 595: 585: 584: 581: 580: 577: 576: 568: 567: 556: 550: 549: 546: 545: 537: 536: 533: 532: 530: 529: 525: 521: 517: 513: 509: 505: 501: 497: 493: 492:tail of embryo 489: 486: 485: 474: 471: 470: 468: 467: 463: 459: 455: 451: 447: 443: 439: 435: 431: 427: 424: 423: 411: 410: 402: 391: 385: 384: 381:RNA expression 373: 372: 369: 368: 360: 356: 355: 347: 344: 339: 333: 332: 323: 316: 310: 306: 305: 300: 294: 293: 285: 284: 272: 271: 268: 267: 259: 255: 254: 246: 243: 238: 232: 231: 222: 215: 209: 205: 204: 197: 191: 190: 182: 181: 169: 168: 125: 121: 120: 112: 104: 103: 99: 98: 95: 94: 91: 90: 64: 63: 55: 54: 43: 37: 36: 28: 27: 24: 23: 15: 9: 6: 4: 3: 2: 2538: 2527: 2524: 2522: 2519: 2518: 2516: 2505: 2500: 2498: 2493: 2491: 2486: 2485: 2479: 2477: 2473: 2469: 2465: 2460: 2457: 2453: 2452: 2443: 2439: 2434: 2429: 2425: 2421: 2417: 2413: 2409: 2404: 2400: 2396: 2391: 2386: 2383:(48): 171–2. 2382: 2378: 2374: 2369: 2365: 2361: 2356: 2351: 2347: 2343: 2339: 2334: 2330: 2326: 2322: 2318: 2314: 2310: 2307:(7): 731–44. 2306: 2302: 2296: 2292: 2288: 2283: 2278: 2275:(4): 257–65. 2274: 2270: 2266: 2261: 2257: 2253: 2249: 2245: 2241: 2237: 2232: 2228: 2224: 2219: 2214: 2210: 2206: 2202: 2198: 2194: 2189: 2185: 2181: 2176: 2171: 2167: 2163: 2159: 2154: 2150: 2146: 2141: 2136: 2132: 2128: 2124: 2120: 2116: 2111: 2107: 2103: 2098: 2093: 2089: 2085: 2082:(9): 1711–8. 2081: 2077: 2073: 2068: 2064: 2060: 2056: 2052: 2048: 2044: 2040: 2036: 2031: 2027: 2023: 2018: 2013: 2009: 2005: 2001: 1997: 1993: 1988: 1984: 1980: 1976: 1972: 1969:(2): 359–69. 1968: 1964: 1959: 1955: 1951: 1947: 1943: 1939: 1935: 1929: 1925: 1921: 1916: 1911: 1907: 1903: 1899: 1895: 1891: 1886: 1885: 1871: 1867: 1862: 1857: 1853: 1849: 1845: 1841: 1837: 1833: 1829: 1822: 1807: 1803: 1797: 1789: 1785: 1781: 1777: 1773: 1769: 1765: 1761: 1754: 1746: 1742: 1737: 1732: 1728: 1724: 1720: 1716: 1712: 1708: 1704: 1697: 1689: 1685: 1680: 1675: 1671: 1667: 1663: 1659: 1655: 1651: 1647: 1640: 1632: 1628: 1623: 1618: 1613: 1608: 1604: 1600: 1599:PLOS Genetics 1596: 1589: 1581: 1577: 1573: 1569: 1565: 1561: 1557: 1553: 1546: 1538: 1534: 1529: 1524: 1520: 1516: 1513:(6): 954–62. 1512: 1508: 1504: 1497: 1489: 1485: 1480: 1475: 1471: 1467: 1463: 1459: 1455: 1448: 1440: 1436: 1431: 1426: 1422: 1418: 1414: 1410: 1406: 1399: 1391: 1387: 1382: 1377: 1372: 1367: 1363: 1359: 1358:PLOS Genetics 1355: 1348: 1340: 1334: 1326: 1322: 1318: 1314: 1310: 1306: 1299: 1291: 1287: 1281: 1273: 1269: 1263: 1256: 1252: 1247: 1245: 1243: 1235: 1231: 1226: 1224: 1222: 1217: 1209: 1207: 1203: 1199: 1195: 1185: 1183: 1179: 1175: 1171: 1161: 1158: 1154: 1150: 1146: 1143: 1139: 1135: 1123: 1118: 1114: 1110: 1107: 1103: 1096: 1094: 1091: 1087: 1083: 1079: 1076: 1072: 1068: 1061: 1059: 1055: 1049: 1045: 1042: 1036: 1034: 1028: 1024: 1021: 1017: 1010: 1008: 1004: 998: 994: 991: 985: 983: 979: 973: 969: 966: 964:RefSeq (mRNA) 962: 955: 954: 949: 945: 942: 936: 935: 930: 926: 923: 921: 917: 910: 909: 904: 900: 897: 891: 890: 885: 881: 878: 876: 872: 865: 864: 859: 855: 852: 846: 845: 840: 836: 833: 831: 827: 824: 821: 819: 816: 812: 809: 805: 801: 794: 790: 785: 779: 776: 774: 771: 769: 766: 764: 761: 759: 756: 754: 751: 749: 746: 744: 741: 739: 736: 734: 731: 729: 726: 724: 721: 719: 716: 715: 713: 710: 709: 703: 700: 698: 695: 693: 690: 688: 685: 684: 682: 679: 678: 672: 669: 667: 664: 662: 659: 657: 654: 652: 649: 647: 644: 642: 639: 637: 634: 632: 629: 627: 624: 622: 619: 617: 614: 612: 609: 607: 604: 603: 601: 598: 597: 594: 593:Gene ontology 590: 586: 574: 569: 565: 560: 557: 555: 551: 543: 538: 527: 523: 519: 515: 511: 507: 503: 499: 495: 491: 490: 487: 483: 478: 475: 465: 461: 457: 453: 449: 445: 441: 437: 433: 429: 428: 425: 421: 416: 413: 412: 409: 407: 403: 401: 400: 396: 395: 392: 390: 386: 382: 378: 374: 366: 361: 357: 353: 348: 338: 334: 327: 320: 314: 307: 299: 295: 291: 286: 282: 277: 273: 265: 260: 256: 252: 247: 237: 233: 226: 219: 213: 206: 202: 196: 192: 188: 183: 179: 174: 170: 166: 162: 158: 154: 150: 146: 142: 138: 134: 130: 122: 117: 110: 105: 100: 89: 87: 83: 79: 75: 71: 65: 60: 57: 56: 52: 49: 42: 38: 33: 29: 25: 20: 2476:expanding it 2468:chromosome 3 2461: 2415: 2411: 2380: 2376: 2345: 2341: 2304: 2300: 2272: 2268: 2239: 2235: 2200: 2196: 2165: 2161: 2122: 2118: 2079: 2075: 2038: 2034: 1999: 1995: 1966: 1962: 1940:(1): 42–50. 1937: 1933: 1897: 1893: 1835: 1831: 1821: 1809:. 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Index

PDB
PDBe
RCSB
4X0P
4X0Q
5AGA
5A9J
5A9F
Aliases
POLQ
OMIM
604419
MGI
2155399
HomoloGene
32727
GeneCards
POLQ
OMA
POLQ - orthologs
Human
Chromosome 3 (human)
Chr.
Chromosome 3 (human)
Chromosome 3 (human)
Genomic location for POLQ
Genomic location for POLQ
Band
bp
bp

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