Migaki G I, Kahn J, Kishimoto T K
Department of Immunology, Boehringer Ingelheim Pharmaceuticals, Inc., Ridgefield, Connecticut 06877-0368, USA.
J Exp Med. 1995 Aug 1;182(2):549-57. doi: 10.1084/jem.182.2.549.
L-selectin expression is regulated in part by membrane-proximal cleavage from the cell surface of leukocytes and L-selectin-transfected cells. The downregulation of L-selectin from the surface of neutrophils is speculated to be a process involved in the adhesion cascade leading to neutrophil recruitment to sites of inflammation. We previously reported that L-selectin is cleaved between Lys321 and Ser322 in a region that links the second short consensus repeat (SCR) and the transmembrane domain. We demonstrate that replacing this cleavage domain of L-selectin with the corresponding region of E-selectin prevents L-selectin shedding, as judged by inhibiting the generation of the 68-kD soluble and 6-kD transmembrane cleavage products of L-selectin. Unexpectedly, we found that point mutations of the cleavage site, as well as mutations of multiple conserved amino acids within the cleavage domain, do not significantly affect L-selectin shedding. However, short deletions of four or five amino acids in the L-selectin cleavage domain inhibit L-selectin downregulation. Mutations that appeared to inhibit L-selectin shedding resulted in higher levels of cell surface expression, consistent with a lack of apparent proteolysis from the cell membrane. One deletion mutant, I327 delta N332, retains the native cleavage site yet inhibits L-selectin proteolysis as well. Restoring the amino acids deleted between I327 and N332 with five alanine residues restores L-selectin proteolysis. Thus, the proteolytic processing of L-selectin appears to have a relaxed sequence specificity at the cleavage site, and it may depend on the physical length or other secondary structural characteristics of the cleavage domain.
L-选择素的表达部分受白细胞和L-选择素转染细胞表面膜近端裂解的调控。中性粒细胞表面L-选择素的下调被推测是参与导致中性粒细胞募集到炎症部位的黏附级联反应的一个过程。我们之前报道过,L-选择素在连接第二个短共有重复序列(SCR)和跨膜结构域的区域内的Lys321和Ser322之间被裂解。我们证明,用E-选择素的相应区域替换L-选择素的这个裂解结构域可防止L-选择素脱落,这是通过抑制L-选择素68-kD可溶性和6-kD跨膜裂解产物的产生来判断的。出乎意料的是,我们发现裂解位点的点突变以及裂解结构域内多个保守氨基酸的突变对L-选择素脱落没有显著影响。然而,L-选择素裂解结构域中四或五个氨基酸的短缺失会抑制L-选择素的下调。似乎抑制L-选择素脱落的突变导致细胞表面表达水平升高,这与细胞膜缺乏明显的蛋白水解一致。一个缺失突变体I327δN332保留了天然裂解位点,但也抑制了L-选择素的蛋白水解。用五个丙氨酸残基恢复I327和N332之间缺失的氨基酸可恢复L-选择素的蛋白水解。因此,L-选择素的蛋白水解加工在裂解位点似乎具有宽松的序列特异性,并且可能取决于裂解结构域的物理长度或其他二级结构特征。