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PMID: 11285222 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Signal peptide cleavage of a type I membrane protein, HCMV US11, is dependent on its membrane anchor.

The EMBO journal ·Vol. 20 ·No. 7 ·2001-04-02 ·Pages 1573-82

Rehm A, Stern P, Ploegh HL, Tortorella D

Abstract

The human cytomegalovirus (HCMV) US11 polypeptide is a type I membrane glycoprotein that targets major histocompatibility complex (MHC) class I molecules for destruction in a proteasome-dependent manner. Although the US11 signal sequence appears to be a classical N-terminal signal peptide in terms of its sequence and cleavage site, a fraction of newly synthesized US11 molecules retain the signal peptide after the N-linked glycan has been attached and translation of the US11 polypeptide has been completed. Delayed cleavage of the US11 signal peptide is determined by the first four residues, the so-called n-region of the signal peptide. Its replacement with the four N-terminal residues of the H-2K(b) signal sequence eliminates delayed cleavage. Surprisingly, a second region that affects the rate and extent of signal peptide cleavage is the transmembrane region close to the C-terminus of US11. Deletion of the transmembrane region of US11 (US11-180) significantly delays processing, a delay overcome by replacement with the H-2K(b) signal sequence. Thus, elements at a considerable distance from the signal sequence affect its cleavage.

MeSH Terms
Amino Acid Sequence Binding Sites Humans Membrane Glycoproteins/genetics,metabolism Molecular Sequence Data Protein Processing, Post-Translational Protein Sorting Signals RNA-Binding Proteins/genetics,metabolism Solubility Tumor Cells, Cultured Viral Proteins/genetics,metabolism
Chemicals
Membrane Glycoproteins Protein Sorting Signals RNA-Binding Proteins US11 protein, herpesvirus Viral Proteins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rehm A
Harvard Medical School, Department of Pathology, Boston, MA 02115, USA.
Stern P
Ploegh H L
Tortorella D
References (49)
49 references, click to expand
  1. Isolation of intracellular membranes by means of sodium carbonate treatment: application to endoplasmic reticulum.
    J Cell Biol. 1982 Apr;93(1):97-102 PMID: 7068762
  2. The cytosolic tail of class I MHC heavy chain is required for its dislocation by the human cytomegalovirus US2 and US11 gene products.
    Proc Natl Acad Sci U S A. 1999 Jul 20;96(15):8516-21 PMID: 10411907
  3. Patterns of amino acids near signal-sequence cleavage sites.
    Eur J Biochem. 1983 Jun 1;133(1):17-21 PMID: 6852022
  4. Signal sequences. The limits of variation.
    J Mol Biol. 1985 Jul 5;184(1):99-105 PMID: 4032478
  5. Purification of microsomal signal peptidase as a complex.
    Proc Natl Acad Sci U S A. 1986 Feb;83(3):581-5 PMID: 3511473
  6. Deletion of the propeptide from human preproapolipoprotein A-II redirects cotranslational processing by signal peptidase.
    J Biol Chem. 1986 Nov 5;261(31):14752-9 PMID: 3533926
  7. Sequences beyond the cleavage site influence signal peptide function.
    J Biol Chem. 1988 Oct 25;263(30):15791-8 PMID: 3170612
  8. Importance of the propeptide sequence of human preproparathyroid hormone for signal sequence function.
    J Biol Chem. 1988 Dec 25;263(36):19771-7 PMID: 3198649
  9. The signal peptide.
    J Membr Biol. 1990 May;115(3):195-201 PMID: 2197415
  10. A mammalian homolog of SEC61p and SECYp is associated with ribosomes and nascent polypeptides during translocation.
    Cell. 1992 Oct 30;71(3):489-503 PMID: 1423609
  11. Signal peptidases in prokaryotes and eukaryotes--a new protease family.
    Trends Biochem Sci. 1992 Nov;17(11):474-8 PMID: 1455520
  12. Binding of ribosomes to the rough endoplasmic reticulum mediated by the Sec61p-complex.
    J Cell Biol. 1994 Aug;126(4):925-34 PMID: 8051212
  13. Secretory proteins move through the endoplasmic reticulum membrane via an aqueous, gated pore.
    Cell. 1994 Aug 12;78(3):461-71 PMID: 8062388
  14. Control of expression, glycosylation, and secretion of HIV-1 gp120 by homologous and heterologous signal sequences.
    Virology. 1994 Oct;204(1):266-78 PMID: 8091657
  15. Signal peptides: exquisitely designed transport promoters.
    Mol Microbiol. 1994 Sep;13(5):765-73 PMID: 7815936
  16. Tetracycline repressor-regulated gene repression in recombinant human cytomegalovirus.
    J Virol. 1995 Apr;69(4):2565-73 PMID: 7884907
  17. Signal sequence recognition and protein targeting to the endoplasmic reticulum membrane.
    Annu Rev Cell Biol. 1994;10:87-119 PMID: 7888184
  18. The protein-conducting channel in the membrane of the endoplasmic reticulum is open laterally toward the lipid bilayer.
    Cell. 1995 Apr 21;81(2):207-14 PMID: 7736572
  19. Multiple independent loci within the human cytomegalovirus unique short region down-regulate expression of major histocompatibility complex class I heavy chains.
    J Virol. 1995 Aug;69(8):4830-41 PMID: 7609050
  20. A posttargeting signal sequence recognition event in the endoplasmic reticulum membrane.
    Cell. 1995 Jul 28;82(2):261-70 PMID: 7628015
  21. The translocon: a dynamic gateway at the ER membrane.
    Annu Rev Cell Dev Biol. 1999;15:799-842 PMID: 10611978
  22. Transfer of proteins across membranes. II. Reconstitution of functional rough microsomes from heterologous components.
    J Cell Biol. 1975 Dec;67(3):852-62 PMID: 811672
  23. Purification of a membrane-associated protein complex required for protein translocation across the endoplasmic reticulum.
    Proc Natl Acad Sci U S A. 1980 Dec;77(12):7112-6 PMID: 6938958
  24. A mutation downstream from the signal peptidase cleavage site affects cleavage but not membrane insertion of phage coat protein.
    Proc Natl Acad Sci U S A. 1981 Mar;78(3):1717-21 PMID: 7015343
  25. Translocation of proteins across the endoplasmic reticulum III. Signal recognition protein (SRP) causes signal sequence-dependent and site-specific arrest of chain elongation that is released by microsomal membranes.
    J Cell Biol. 1981 Nov;91(2 Pt 1):557-61 PMID: 7309797
  26. Signal sequence processing in rough microsomes.
    J Biol Chem. 1995 Aug 25;270(34):19873-8 PMID: 7650000
  27. The human cytomegalovirus US11 gene product dislocates MHC class I heavy chains from the endoplasmic reticulum to the cytosol.
    Cell. 1996 Mar 8;84(5):769-79 PMID: 8625414
  28. Signal sequence-dependent function of the TRAM protein during early phases of protein transport across the endoplasmic reticulum membrane.
    J Cell Biol. 1996 Jul;134(1):25-35 PMID: 8698819
  29. Effects of inefficient cleavage of the signal sequence of HIV-1 gp 120 on its association with calnexin, folding, and intracellular transport.
    Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9606-11 PMID: 8790377
  30. Protein transport across the eukaryotic endoplasmic reticulum and bacterial inner membranes.
    Annu Rev Biochem. 1996;65:271-303 PMID: 8811181
  31. Sec61-mediated transfer of a membrane protein from the endoplasmic reticulum to the proteasome for destruction.
    Nature. 1996 Dec 5;384(6608):432-8 PMID: 8945469
  32. Identification of prokaryotic and eukaryotic signal peptides and prediction of their cleavage sites.
    Protein Eng. 1997 Jan;10(1):1-6 PMID: 9051728
  33. The yeast SPC22/23 homolog Spc3p is essential for signal peptidase activity.
    J Biol Chem. 1997 May 16;272(20):13159-64 PMID: 9148931
  34. Molecular mechanism of membrane protein integration into the endoplasmic reticulum.
    Cell. 1997 May 16;89(4):523-33 PMID: 9160744
  35. The alpha chain of the T cell antigen receptor is degraded in the cytosol.
    Immunity. 1997 Jul;7(1):113-22 PMID: 9252124
  36. Signal peptide fragments of preprolactin and HIV-1 p-gp160 interact with calmodulin.
    EMBO J. 1997 Nov 17;16(22):6636-45 PMID: 9362478
  37. BiP maintains the permeability barrier of the ER membrane by sealing the lumenal end of the translocon pore before and early in translocation.
    Cell. 1998 Mar 20;92(6):747-58 PMID: 9529251
  38. The beta subunit of the Sec61 complex facilitates cotranslational protein transport and interacts with the signal peptidase during translocation.
    J Cell Biol. 1998 May 18;141(4):887-94 PMID: 9585408
  39. Signal sequence recognition in cotranslational translocation by protein components of the endoplasmic reticulum membrane.
    J Cell Biol. 1998 Jul 27;142(2):355-64 PMID: 9679136
  40. Dislocation of type I membrane proteins from the ER to the cytosol is sensitive to changes in redox potential.
    J Cell Biol. 1998 Jul 27;142(2):365-76 PMID: 9679137
  41. Crystal structure of the signal sequence binding subunit of the signal recognition particle.
    Cell. 1998 Jul 24;94(2):181-91 PMID: 9695947
  42. Signal sequence recognition in posttranslational protein transport across the yeast ER membrane.
    Cell. 1998 Sep 18;94(6):795-807 PMID: 9753326
  43. Signal sequences: more than just greasy peptides.
    Trends Cell Biol. 1998 Oct;8(10):410-5 PMID: 9789330
  44. Life and death of a signal peptide.
    Nature. 1998 Nov 12;396(6707):111, 113 PMID: 9823886
  45. Crystal structure of a bacterial signal peptidase in complex with a beta-lactam inhibitor.
    Nature. 1998 Nov 12;396(6707):186-90 PMID: 9823901
  46. Ubiquitin and the control of protein fate in the secretory and endocytic pathways.
    Annu Rev Cell Dev Biol. 1998;14:19-57 PMID: 9891777
  47. A neural network method for identification of prokaryotic and eukaryotic signal peptides and prediction of their cleavage sites.
    Int J Neural Syst. 1997 Oct-Dec;8(5-6):581-99 PMID: 10065837
  48. Regulation of protein biogenesis at the endoplasmic reticulum membrane.
    Trends Cell Biol. 1999 Apr;9(4):132-7 PMID: 10203789
  49. Signal recognition particle contains a 7S RNA essential for protein translocation across the endoplasmic reticulum.
    Nature. 1982 Oct 21;299(5885):691-8 PMID: 6181418
Article Info
Journal
The EMBO journal
Abbr.
EMBO J
ISSN
0261-4189
Published
2001-04-02
Pages
1573-82
Language
English
Region
England
NLM ID
8208664
PMCID
PMC145509
Subset
IM
Grants
NIAID NIH HHS · R37 AI033456 · United States
NIAID NIH HHS · 5R37-AI33456 · United States
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