Citations for
1NSC8, SRP54
Intermittent granulocyte maturation arrest, hypocellular bone marrow, and episodic normal neutrophil count can be associated with SRP54 mutations causing Shwachman-Diamond-like syndrome
Saettini F, Cattoni A, D'Angio' M, Corti P, Maitz S, Pagni F, Seminati D, Pezzoli L, Iascone M, Biondi A, Bonanomi S.
Br J Haematol. May;189(4):e171-e174. doi: 10.1111/bjh.16585. Epub 2020 Mar 20 2020
2DDX58, IFIH1, MAVS, SRP54
SRP54 Negatively Regulates IFN-Beta Production and Antiviral Response by Targeting RIG-I and MDA5
Wang DP, Zhang HY, Liao BW, Tong Z, Xu ZS, Wang YY, Yang Y.
Virol Sin. Aug 7. doi: 10.1007/s12250-020-00267-6. Epub ahead of print 2020
3NSC8, SRP54
Mutations in the SRP54 gene cause severe congenital neutropenia as well as Shwachman-Diamond-like syndrome.
Bellanné-Chantelot C, Schmaltz-Panneau B, Marty C, Fenneteau O, Callebaut I, Clauin S, Docet A, Damaj GL, Leblanc T, Pellier I, Stoven C, Souquere S, Antony-Debré I, Beaupain B, Aladjidi N, Barlogis V, Bauduer F, Bensaid P, Boespflug-Tanguy O, Berger C, Bertrand Y, Carausu L, Fieschi C, Galambrun C, Schmidt A, Journel H, Mazingue F, Nelken B, Quah TC, Oksenhendler E, Ouachée M, Pasquet M, Saada V, Suarez F, Pierron G, Vainchenker W, Plo I, Donadieu J.
Blood. Sep 20;132(12):1318-1331. doi: 10.1182/blood-2017-12-820308. Epub 2018 Jun 18 2018
4NSC8, SRP54
SRP54 and a need for a new neutropenia nosology. Blood. 2018 PMID:
Oyarbide U, Corey SJ.
Blood Sep 20;132(12):1220-1222. doi: 10.1182/blood-2018-07-859959. 2018
5NSC8, SRP54
Mutations in signal recognition particle SRP54 cause syndromic neutropenia with Shwachman-Diamond-like features
Carapito R, Konantz M, Paillard C, Miao Z, Pichot A, Leduc MS, Yang Y, Bergstrom KL, Mahoney DH, Shardy DL, Alsaleh G, Naegely L, Kolmer A, Paul N, Hanauer A, Rolli V, Müller JS, Alghisi E, Sauteur L, Macquin C, Morlon A, Sancho CS, Amati-Bonneau P, Procaccio V, Mosca-Boidron AL, Marle N, Osmani N, Lefebvre O, Goetz JG, Unal S, Akarsu NA, Radosavljevic M, Chenard MP, Rialland F, Grain A, Béné MC, Eveillard M, Vincent M, Guy J, Faivre L, Thauvin-Robinet C, Thevenon J, Myers K, Fleming MD, Shimamura A, Bottollier-Lemallaz E, Westhof E, Lengerke C, Isidor B, Bahram S.
J Clin Invest. Nov 1;127(11):4090-4103. doi: 10.1172/JCI92876. Epub 2017 Oct 3. 2017
6SRP54
Recognition of a signal peptide by the signal recognition particle
Janda CY, Li J, Oubridge C, Hernández H, Robinson CV, Nagai K.
Nature. May 27;465(7297):507-10. doi: 10.1038/nature08870. Epub 2010 Apr 4. 2010
7SRP54
The crystal structure of the third signal-recognition particle GTPase FlhF reveals a homodimer with bound GTP
Bange G, Petzold G, Wild K, Parlitz RO, Sinning I
Proc Natl Acad Sci U S A. Aug 21;104(34):13621-5. doi: 10.1073/pnas.0702570104. Epub 2007 Aug 15. 2007
8SRP54
Interaction of signal-recognition particle 54 GTPase domain and signal-recognition particle RNA in the free signal-recognition particle
Hainzl T, Huang S, Sauer-Eriksson AE.
Proc Natl Acad Sci U S A. Sep 18;104(38):14911-6. doi: 10.1073/pnas.0702467104. Epub 2007 Sep 10. 2007
9SRP19, SRP54
Induced structural changes of 7SL RNA during the assembly of human signal recognition particle.
Kuglstatter A, Oubridge C, Nagai K.
Nat Struct Biol 9(10):740-4. 2002
10SRP54
Mapping the signal sequence-binding site on SRP reveals a significant role for the NG domain.
Cleverley RM, Gierasch LM.
J Biol Chem 277(48):46763-8. Epub 2002 Sep 19. 2002
11BAZ1A, KDM4C, MBIP, NFKBIA, PNN, SRP54
Identification of target genes within an amplicon at 14q12-q13 in esophageal squamous cell carcinoma.
Yasui K, Imoto I, Fukuda Y, Pimkhaokham A, Yang ZQ, Naruto T, Shimada Y, Nakamura Y, Inazawa J.
Genes Chromosomes Cancer 32(2):112-8. 2001