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视紫红质光诱导磷酸化对单克隆抗体结合及蛋白水解的抑制作用

Inhibition of monoclonal antibody binding and proteolysis by light-induced phosphorylation of rhodopsin.

作者信息

Molday R S, MacKenzie D

出版信息

Biochemistry. 1985 Jan 29;24(3):776-81. doi: 10.1021/bi00324a036.

Abstract

Light-induced phosphorylation of rhodopsin in bovine rod outer segment disk membranes inhibits the binding of three carboxyl-terminal-specific anti-rhodopsin antibodies and the cleavage of the carboxyl-terminal region of rhodopsin by trypsin and Staphylococcus aureus V-8 protease. Two monoclonal antibodies, rho 3A6 and rho 1C5, which previously have been shown to preferentially bind to the 8'-12' and the 9'-18' carboxyl-terminal segments of rhodopsin, respectively, are both highly sensitive to phosphorylation. When an average of one phosphate is incorporated per rhodopsin, the binding reactivity of rhodopsin for these antibodies decreases to 30% that of nonphosphorylated rhodopsin as measured in radioimmune competition assays. Reactivity of the rho 1D4 antibody whose primary binding site is localized in the 1'-8' C-terminal segment of rhodopsin is unaffected at this level of phosphorylation but decreases to 30% when three phosphates on average are incorporated per rhodopsin. Direct binding studies using 125I-labeled antibodies indicate that phosphorylation of rhodopsin decreases the maximum extent of rho 3A6 and rho 1C5 binding to rhodopsin. For rho 1D4, the maximum extent of binding is unaffected by phosphorylation, but the dissociation constant is increased by 10-fold. Phosphorylation of rhodopsin also inhibits cleavage of the 1'-9' and 1'-7' carboxyl-terminal peptides by trypsin and S. aureus V-8 protease, respectively. When an average of one phosphate per rhodopsin is incorporated, cleavage decreases to 40% that of nonphosphorylated rhodopsin as measured by high-performance liquid chromatography. Phosphorylation of rhodopsin had no effect on S. aureus cleavage of rhodopsin into the F1 (Mr 25 000) and F2 (Mr 12 000) fragments.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在牛视杆外段盘膜中,光诱导的视紫红质磷酸化抑制了三种羧基末端特异性抗视紫红质抗体的结合,以及胰蛋白酶和金黄色葡萄球菌V-8蛋白酶对视紫红质羧基末端区域的切割。两种单克隆抗体,rho 3A6和rho 1C5,先前已被证明分别优先结合视紫红质的8'-12'和9'-18'羧基末端片段,它们对磷酸化都高度敏感。在放射免疫竞争分析中,当每个视紫红质平均掺入一个磷酸时,视紫红质与这些抗体的结合反应性降至未磷酸化视紫红质的30%。rho 1D4抗体的主要结合位点位于视紫红质的1'-8'羧基末端片段,在这种磷酸化水平下其反应性不受影响,但当每个视紫红质平均掺入三个磷酸时,其反应性降至30%。使用125I标记抗体的直接结合研究表明,视紫红质的磷酸化降低了rho 3A6和rho 1C5与视紫红质结合的最大程度。对于rho 1D4,结合的最大程度不受磷酸化影响,但解离常数增加了10倍。视紫红质的磷酸化也分别抑制了胰蛋白酶和金黄色葡萄球菌V-8蛋白酶对1'-9'和1'-7'羧基末端肽段的切割。通过高效液相色谱法测定,当每个视紫红质平均掺入一个磷酸时,切割降至未磷酸化视紫红质的40%。视紫红质的磷酸化对金黄色葡萄球菌将视紫红质切割成F1(分子量25000)和F2(分子量12000)片段没有影响。(摘要截短于250字)

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