Ghosh Joy G, Estrada Marcus R, Clark John I
Biomolecular Structure and Design, University of Washington, Seattle, Washington 98195-7420, USA.
Biochemistry. 2005 Nov 15;44(45):14854-69. doi: 10.1021/bi0503910.
Protein pin arrays identified seven interactive sequences for chaperone activity in human alphaB crystallin using natural lens proteins, beta(H) crystallin and gammaD crystallin, and in vitro chaperone target proteins, alcohol dehydrogenase and citrate synthase. The N-terminal domain contained two interactive sequences, (9)WIRRPFFPFHSP(20) and (43)SLSPFYLRPPSFLRAP(58). The alpha crystallin core domain contained four interactive sequences, (75)FSVNLDVK(82) (beta3), (113)FISREFHR(120), (131)LTITSSLS(138) (beta8), and (141)GVLTVNGP(148) (beta9). The C-terminal domain contained one interactive sequence, (157)RTIPITRE(164), that included the highly conserved I-X-I/V motif. Two interactive sequences, (73)DRFSVNLDVKHFS(85) and (131)LTITSSLSDGV(141), belonging to the alpha crystallin core domain were synthesized as peptides and assayed for chaperone activity in vitro. Both synthesized peptides inhibited the thermal aggregation of beta(H) crystallin, alcohol dehydrogenase, and citrate synthase in vitro. Five of the seven chaperone sequences identified by the pin arrays overlapped with sequences identified previously as sequences for subunit-subunit interactions in human alphaB crystallin. The results suggested that interactive sequences in human alphaB crystallin have dual roles in subunit-subunit assembly and chaperone activity.
蛋白质针阵列利用天然晶状体蛋白、β(H)晶状体蛋白和γD晶状体蛋白以及体外伴侣蛋白靶标蛋白乙醇脱氢酶和柠檬酸合酶,鉴定出了人αB晶状体蛋白中七个具有伴侣活性的相互作用序列。N端结构域包含两个相互作用序列,(9)WIRRPFFPFHSP(20)和(43)SLSPFYLRPPSFLRAP(58)。α晶状体蛋白核心结构域包含四个相互作用序列,(75)FSVNLDVK(82)(β3)、(113)FISREFHR(120)、(131)LTITSSLS(138)(β8)和(141)GVLTVNGP(148)(β9)。C端结构域包含一个相互作用序列,(157)RTIPITRE(164),其中包含高度保守的I-X-I/V基序。属于α晶状体蛋白核心结构域的两个相互作用序列(73)DRFSVNLDVKHFS(85)和(131)LTITSSLSDGV(141)被合成为肽,并在体外检测其伴侣活性。两种合成肽均在体外抑制了β(H)晶状体蛋白、乙醇脱氢酶和柠檬酸合酶的热聚集。通过针阵列鉴定出的七个伴侣序列中的五个与先前鉴定为人αB晶状体蛋白中亚基-亚基相互作用的序列重叠。结果表明,人αB晶状体蛋白中的相互作用序列在亚基-亚基组装和伴侣活性中具有双重作用。