Snyder H L, Bacík I, Bennink J R, Kearns G, Behrens T W, Bächi T, Orlowski M, Yewdell J W
Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland 20892-0440, USA.
J Exp Med. 1997 Oct 6;186(7):1087-98. doi: 10.1084/jem.186.7.1087.
Jaw1 is an endoplasmic reticulum (ER) resident protein representative of a class of proteins post translationally inserted into membranes via a type II membrane anchor (cytosolic NH2 domain, lumenal COOH domain) in a translocon-independent manner. We found that Jaw1 can efficiently deliver a COOH-terminal antigenic peptide to class I molecules in transporter associated with antigen processing (TAP)-deficient cells or cells in which TAP is inactivated by the ICP47 protein. Peptide delivery mediated by Jaw1 to class I molecules was equal or better than that mediated by the adenovirus E3/19K glycoprotein signal sequence, and was sufficient to enable cytofluorographic detection of newly recruited thermostabile class I molecules at the surface of TAP-deficient cells. Deletion of the transmembrane region retargeted Jaw1 from the ER to the cytosol, and severely, although incompletely, abrogated its TAP-independent peptide carrier activity. Use of different protease inhibitors revealed the involvement of a nonproteasomal protease in the TAP-independent activity of cytosolic Jaw1. These findings demonstrate two novel TAP-independent routes of antigen processing; one based on highly efficient peptide liberation from the COOH terminus of membrane proteins in the ER, the other on delivery of a cytosolic protein to the ER by an unknown route.
Jaw1是一种内质网(ER)驻留蛋白,代表了一类通过II型膜锚定(胞质NH2结构域,腔内COOH结构域)以不依赖转运体的方式在翻译后插入膜中的蛋白质。我们发现,Jaw1能够有效地将COOH末端抗原肽递送至与抗原加工相关的转运体(TAP)缺陷细胞或TAP被ICP47蛋白灭活的细胞中的I类分子。Jaw1介导的肽递送至I类分子的效率与腺病毒E3/19K糖蛋白信号序列介导的效率相当或更高,并且足以通过细胞荧光成像检测TAP缺陷细胞表面新募集的热稳定I类分子。跨膜区域的缺失将Jaw1从内质网重新定位到细胞质中,并严重(尽管不完全)消除了其不依赖TAP的肽载体活性。使用不同的蛋白酶抑制剂揭示了一种非蛋白酶体蛋白酶参与了细胞质Jaw1不依赖TAP的活性。这些发现证明了两种新的不依赖TAP的抗原加工途径;一种基于内质网中膜蛋白COOH末端高效的肽释放,另一种基于通过未知途径将细胞质蛋白递送至内质网。