prehistory ph.d. with peter pauling, at university college london. ‘the crystal structures of some...

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Prehistory • Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973 • Post-doc at LMB with David Blow • Collaborations with Fred Richards (Yale), Michael Levitt (Weizmann Institute of Science), Joël Janin (Institut Pasteur, Paris) • Return to England in 1976 …

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Page 1: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Prehistory

• Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

• Post-doc at LMB with David Blow• Collaborations with Fred Richards

(Yale), Michael Levitt (Weizmann Institute of Science), Joël Janin (Institut Pasteur, Paris)

• Return to England in 1976 …

Page 2: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 3: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 4: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 5: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

220 – 175 + 1 = 46

270 – 225 + 1 = 46

46 + 46 = 92

Page 6: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Sperm whale myoglobin (yellow)

Lupin leghaemoglobin (red)

Page 7: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Importance of helix-helix contacts as determinants of structure

· Residue packing at helix interfaces produces discrete geometries of interhelical angles

Page 8: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 9: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 10: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Poplar leaf plastocyanin Alcaligenes denitrificans azurin

Page 11: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Insulin4-Zn form

Courtesy Nature Publishing Group

Page 12: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Insulin4-Zn form

Page 13: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 14: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 15: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 16: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 17: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Complete IgG [1IGT]

Page 18: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Six antigen-binding loops, or complementarity-determining regions (CDRs)

Page 19: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 20: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 21: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

The canonical-structure model

· Five of the six antigen-binding loops – L1, L2, L3, H1 and H2, but NOT H3 – have individual discrete, small conformational repertoires, a set of canonical structures.

· The conformation can in most cases be predicted from sequence signatures.

Page 22: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 23: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 24: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 25: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973
Page 26: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Glycolate oxidase, a ‘TIM barrel’

Page 27: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

‘Roll out the barrel’

Page 28: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

• Number of strands (n) and shear number (S) define geometry of β-barrels.

• Simple if S/n integral – then residues segregate into layers

• ‘Periodic table’ of β-barrels based on S and n

• (For serine proteinases, n = 6 and S = 8; 8/6 is NOT integral; what happens is quite an interesting story.)

‘TIM barrel’

Page 29: Prehistory Ph.D. with Peter Pauling, at University College London. ‘The crystal structures of some molecules active at cholinergic nerve receptors’, 1973

Final comment :

I have another sabbatical coming up …