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Similar articles for PubMed (Select 22783826)

1.

QM/MM trajectory surface hopping approach to photoisomerization of rhodopsin and isorhodopsin: the origin of faster and more efficient isomerization for rhodopsin.

Chung WC, Nanbu S, Ishida T.

J Phys Chem B. 2012 Jul 19;116(28):8009-23. doi: 10.1021/jp212378u. Epub 2012 Jul 11.

PMID:
22783826
2.

The nature of the primary photochemical events in rhodopsin and isorhodopsin.

Birge RR, Einterz CM, Knapp HM, Murray LP.

Biophys J. 1988 Mar;53(3):367-85.

3.

Nonadiabatic ab initio dynamics of a model protonated Schiff base of 9-cis retinal.

Chung WC, Nanbu S, Ishida T.

J Phys Chem A. 2010 Aug 19;114(32):8190-201. doi: 10.1021/jp103253b.

PMID:
20666503
4.

Relationship between the excited state relaxation paths of rhodopsin and isorhodopsin.

Strambi A, Coto PB, Frutos LM, Ferré N, Olivucci M.

J Am Chem Soc. 2008 Mar 19;130(11):3382-8. doi: 10.1021/ja0749082. Epub 2008 Feb 27.

PMID:
18302369
5.

Cis-trans isomers of vitamin A and retinene in the rhodopsin system.

HUBBARD R, WALD G.

J Gen Physiol. 1952 Nov;36(2):269-315.

6.

Wavepacket splitting and two-pathway deactivation in the photoexcited visual pigment isorhodopsin.

Polli D, Weingart O, Brida D, Poli E, Maiuri M, Spillane KM, Bottoni A, Kukura P, Mathies RA, Cerullo G, Garavelli M.

Angew Chem Int Ed Engl. 2014 Feb 24;53(9):2504-7. doi: 10.1002/anie.201309867. Epub 2014 Jan 31.

PMID:
24481600
8.

Molecular dynamics of trans-cis isomerization in bathorhodopsin.

Birge RR, Hubbard LM.

Biophys J. 1981 Jun;34(3):517-34.

9.

Assignment of fingerprint vibrations in the resonance Raman spectra of rhodopsin, isorhodopsin, and bathorhodopsin: implications for chromophore structure and environment.

Palings I, Pardoen JA, van den Berg E, Winkel C, Lugtenburg J, Mathies RA.

Biochemistry. 1987 May 5;26(9):2544-56.

PMID:
3607032
10.

Photophysiological functions of visual pigments.

Yoshizawa T.

Adv Biophys. 1984;17:5-67. Review.

PMID:
6242325
11.

Photoisomerization in rhodopsin.

Kandori H, Shichida Y, Yoshizawa T.

Biochemistry (Mosc). 2001 Nov;66(11):1197-209. Review.

12.

Nonadiabatic ab initio dynamics of two models of Schiff base retinal.

Ishida T, Nanbu S, Nakamura H.

J Phys Chem A. 2009 Apr 23;113(16):4356-66. doi: 10.1021/jp8110315.

PMID:
19298071
13.

Nonadiabatic ab initio molecular dynamics of photoisomerization in bridged azobenzene.

Gao AH, Li B, Zhang PY, Han KL.

J Chem Phys. 2012 Nov 28;137(20):204305. doi: 10.1063/1.4767459.

PMID:
23206001
14.

Product formation in rhodopsin by fast hydrogen motions.

Weingart O, Altoè P, Stenta M, Bottoni A, Orlandi G, Garavelli M.

Phys Chem Chem Phys. 2011 Mar 7;13(9):3645-8. doi: 10.1039/c0cp02496a. Epub 2011 Jan 18.

PMID:
21243153
15.

13-desmethyl rhodopsin and 13-desmethyl isorhodopsin: visual pigment analogues.

Nelson R, deRiel JK, Kropf A.

Proc Natl Acad Sci U S A. 1970 Jun;66(2):531-8.

16.

Conical intersection dynamics of the primary photoisomerization event in vision.

Polli D, Altoè P, Weingart O, Spillane KM, Manzoni C, Brida D, Tomasello G, Orlandi G, Kukura P, Mathies RA, Garavelli M, Cerullo G.

Nature. 2010 Sep 23;467(7314):440-3. doi: 10.1038/nature09346.

PMID:
20864998
17.

Photoreactions of metarhodopsin III.

Vogel R, Lüdeke S, Radu I, Siebert F, Sheves M.

Biochemistry. 2004 Aug 10;43(31):10255-64.

PMID:
15287753
18.

Photoisomerization mechanism of rhodopsin and 9-cis-rhodopsin revealed by x-ray crystallography.

Nakamichi H, Buss V, Okada T.

Biophys J. 2007 Jun 15;92(12):L106-8. Epub 2007 Apr 20.

19.

Comparison of the isomerization mechanisms of human melanopsin and invertebrate and vertebrate rhodopsins.

Rinaldi S, Melaccio F, Gozem S, Fanelli F, Olivucci M.

Proc Natl Acad Sci U S A. 2014 Feb 4;111(5):1714-9. doi: 10.1073/pnas.1309508111. Epub 2014 Jan 21.

20.

Bathoproducts of rhodopsin, isorhodopsin I, and isorhodopsin II.

Mao B, Ebrey TG, Crouch R.

Biophys J. 1980 Feb;29(2):247-56.

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