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TRP channels

TRP channels. 10/19/09. Plan. Lecture on Wed - Richard Payne The problem Brainstorm a plan One week to gather sequences Each of you will do a different species I am away Wed pm to Fri am. I’ll be in my office all afternoon and all Monday - bring questions to class!

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TRP channels

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  1. TRP channels 10/19/09

  2. Plan • Lecture on Wed - Richard Payne • The problem • Brainstorm a plan • One week to gather sequences • Each of you will do a different species • I am away Wed pm to Fri am. I’ll be in my office all afternoon and all Monday - bring questions to class! • We will then compile all the data • One week to analyze data • Present results to Dr. Payne

  3. Drosophila mutant screen • Forward genetics • Screen for mutants which have visual defect • Find gene causing defect • Piece together parts of visual pathway

  4. Screen by electroretinograms, ERGs • Send light pulse to eye • Wire outside of retina to record electrical signal coming from whole eye response • Sum of all neural responses in eye

  5. Light coincident receptor potential

  6. Light coincident receptor potential Drosophila mutants Norp - no receptor potential (phospholipase C) Trp - transient receptor potential

  7. Ion channel mutants Trp = Transient receptor potential - channels close sooner

  8. Trp is … …an ion channel

  9. Textbook example - nompC

  10. 7 families of TRPs Trp NompC

  11. TRP families

  12. How is Trp activated - DAG?

  13. How is Trp activated - IP3 release of Ca+2?

  14. Mammalian TRPCs

  15. TRP domain - highly conserved

  16. TRP domain Seems to be highly conserved within a family, particularly in TRPCs

  17. #s of copies

  18. TRPC and TRPN most closely related C. elegans has TRP3 which is like TRPC

  19. Dr. Payne is world expert on limulus vision! • Response to IP3 Causes depolarization • Causes release of Ca2+ • Adaptation • Can’t respond immediately - takes recovery time to rebuild Ca stores Payne et al 1990

  20. Vertebrate divergence times Kumar and Hedges 1998

  21. Comparative genomics • Dr. Payne is interested in invertebrates • Invertebrates

  22. Molting animals Trochozoa Lophophorata

  23. Genome projects for inverts • Model systems • C. elegans, Drosophila • Sea urchins, amphioxus

  24. Genome projects for inverts • Vectors for disease • Mosquitos, tick, louse, leech

  25. Other insects • Bee, pea aphids, flour beetle, wasp

  26. Miscellaneous • Polychaete worm • Limpet • Daphnia

  27. BLAST-able invertebrate genomes

  28. Horseshoe crab is closest to tick!!

  29. How do we get sequences from these genomes • Can’t use ortholog links in Ensembl • Haven’t made links for inverts! • We have to BLAST our way in

  30. NCBI has links to all genome projects - Not all projects are BLASTable

  31. Bee genome page with BLAST link

  32. What kind of blast should we use? MegaBLAST - highly similar BLASTN - nucleotide BLASTP - protein

  33. Can blast to different databases

  34. Ab initio = known + predicted genes

  35. Use Drosophila Trp gene as bait

  36. BLAST interim screen

  37. Blast result

  38. Download sequence

  39. TRP domain Seems to be highly conserved within a family, particularly in TRPCs

  40. Alignment = find Trp box

  41. TRP domain - highly conserved

  42. Lots of variation before ion channel - we may need to deal just with channel part ANK ANK

  43. Sometimes gene is poorly predicted

  44. Human_rho MNGTEGPNFYVPFSNATGVVRSPFEYPQYYLAEPWQFSMLAAYMFLLIVLGFPINFLTLY Chimp_rho MNGTEGPNFYVPFSNATGVVRSPFEYPQYYLAEPWQFSMLAAYMFLLIVLGFPINFLTLY Dog_rho MNGTEGPNFYVPFSNKTGVVRSPFEYPQYYLAEPWQFSMLAAYMFLLIVLGFPINFLTLY Mouse_rho MNGTEGPNFYVPFSNVTGVVRSPFEQPQYYLAEPWQFSMLAAYMFLLIVLGFPINFLTLY Rat_rho MNGTEGPNFYVPFSNITGVVRSPFEQPQYYLAEPWQFSMLAAYMFLLIVLGFPINFLTLY Cow_rho MNGTEGPNFYVPFSNKTGVVRSPFEAPQYYLAEPWQFSMLAAYMFLLIMLGFPINFLTLY Zfish_rho MNGTEGPAFYVPMSNATGVVRSPYEYPQYYLVAPWAYGFVAAYMFFLIITGFPVNFLTLY Chick_rho MNGTEGINFYVPMSNKTGVVRSPFEYPQYYLAEPWKYRLVCCYIFFLISTGLPINLLTLL ****** ****:** *******:* *****. ** : ::..*:*:** *:*:*:*** 23 variable Human_rho VTVQHKKLRTPLNYILLNLAVADLFMVLGGFTSTLYTSLHGYFVFGPTGCNLEGFFATLG Chimp_rho VTVQHKKLRTPLNYILLNLAVADLFMVLGGFTSTLYTSLHGYFVFGPTGCNLEGFFATLG Dog_rho VTVQHKKLRTPLNYILLNLAVADLFMVFGGFTTTLYTSLHGYFVFGPTGCNVEGFFATLG Mouse_rho VTVQHKKLRTPLNYILLNLAVADLFMVFGGFTTTLYTSLHGYFVFGPTGCNLEGFFATLG Rat_rho VTVQHKKLRTPLNYILLNLAVADLFMVFGGFTTTLYTSLHGYFVFGPTGCNLEGFFATLG Cow_rho VTVQHKKLRTPLNYILLNLAVADLFMVFGGFTTTLYTSLHGYFVFGPTGCNLEGFFATLG Zfish_rho VTIEHKKLRTPLNYILLNLAIADLFMVFGGFTTTMYTSLHGYFVFGRLGCNLEGFFATLG Chick_rho VTFKHKKLRQPLNYILVNLAVADLFMACFGFTVTFYTAWNGYFVFGPVGCAVEGFFATLG **.:***** ******:***:*****. *** *:**: :****** ** :******** 17 Human_rho GEIALWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVAFTWVMALACAAPPLAGWS---- Chimp_rho GEIALWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVAFTWVMALACAAPPLAGWS---- Dog_rho GEIALWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVAFTWVMALACAAPPLAGWSSLLS Mouse_rho GEIALWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVVFTWIMALACAAPPLVGWS---- Rat_rho GEIGLWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVAFTWVMALACAAPPLVGWS---- Cow_rho GEIALWSLVVLAIERYVVVCKPMSNFRFGENHAIMGVAFTWVMALACAAPPLVGWS---- Zfish_rho GEMGLKSLVVLAIERWMVVCKPVSNFRFGENHAIMGVAFTWVMACSCAVPPLVGWS---- Chick_rho GQVALWSLVVLAIERYIVVCKPMGNFRFSATHAMMGIAFTWVMAFSCAAPPLFGWS---- *::.* *********::*****:.****. .**:**:.***:** :**.*** *** 23 Human_rho ------RYIPEGLQCSCGIDYYTLKPEVNNESFVIYMFVVHFTIPMIIIFFCYGQLVFTV Chimp_rho ------RYIPEGLQCSCGIDYYTLKPEVNNESFVIYMFVVHFTIPMIIIFFCYGQLVFTV Dog_rho HSPLVLRYIPEGMQCSCGIDYYTLKPEINNESFVIYMFVVHFAIPMIVIFFCYGQLVFTV Mouse_rho ------RYIPEGMQCSCGIDYYTLKPEVNNESFVIYMFVVHFTIPMIVIFFCYGQLVFTV Rat_rho ------RYIPEGMQCSCGIDYYTLKPEVNNESFVIYMFVVHFTIPMIVIFFCYGQLVFTV Cow_rho ------RYIPEGMQCSCGIDYYTPHEETNNESFVIYMFVVHFIIPLIVIFFCYGQLVFTV Zfish_rho ------RYIPEGMQCSCGVDYYTRTPGVNNESFVIYMFIVHFFIPLIVIFFCYGRLVCTV Chick_rho ------RYMPEGMQCSCGPDYYTHNPDYHNESYVLYMFVIHFIIPVVVIFFSYGRLICKV **:***:***** **** :***:*:***::** **:::***.**:*: .* 28

  45. Wise2 - can predict mRNA from gDNA using related protein

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