Miwa Hazuki E, Gerken Thomas A, Huynh Tru D, Duesler Lori R, Cotter Meghan, Hering Thomas M
Department of Biochemistry, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH 44106, USA.
Biochim Biophys Acta. 2009 Mar;1790(3):161-72. doi: 10.1016/j.bbagen.2008.11.008. Epub 2008 Dec 6.
Cleavage of aggrecan by ADAMTS proteinases at specific sites within highly conserved regions may be important to normal physiological enzyme functions, as well as pathological degradation.
To examine ADAMTS selectivity, we assayed ADAMTS-4 and -5 cleavage of recombinant bovine aggrecan mutated at amino acids N-terminal or C-terminal to the interglobular domain cleavage site.
Mutations of conserved amino acids from P18 to P12 to increase hydrophilicity resulted in ADAMTS-4 cleavage inhibition. Mutation of Thr, but not Asn within the conserved N-glycosylation motif Asn-Ile-Thr from P6 to P4 enhanced cleavage. Mutation of conserved Thr residues from P22 to P17 to increase hydrophobicity enhanced ADAMTS-4 cleavage. A P4' Ser377Gln mutant inhibited cleavage by ADAMTS-4 and -5, while a neutral Ser377Ala mutant and species mimicking mutants Ser377Thr, Ser377Asn, and Arg375Leu were cleaved normally by ADAMTS-4. The Ser377Thr mutant, however, was resistant to cleavage by ADAMTS-5.
We have identified multiple conserved amino acids within regions N- and C-terminal to the site of scission that may influence enzyme-substrate recognition, and may interact with exosites on ADAMTS-4 and ADAMTS-5.
Inhibition of the binding of ADAMTS-4 and ADAMTS-5 exosites to aggrecan should be explored as a therapeutic intervention for osteoarthritis.
ADAMTS蛋白酶在高度保守区域内的特定位点切割聚集蛋白聚糖,这可能对正常生理酶功能以及病理性降解都很重要。
为了检测ADAMTS的选择性,我们检测了ADAMTS-4和ADAMTS-5对在球状间结构域切割位点N端或C端氨基酸处发生突变的重组牛聚集蛋白聚糖的切割情况。
将保守氨基酸P18至P12突变为增加亲水性会导致ADAMTS-4切割受到抑制。保守的N-糖基化基序Asn-Ile-Thr中P6至P4的苏氨酸(而非天冬酰胺)发生突变会增强切割。将保守的苏氨酸残基P22至P17突变为增加疏水性会增强ADAMTS-4切割。P4' 位点的Ser377Gln突变体抑制了ADAMTS-4和ADAMTS-5的切割,而中性的Ser377Ala突变体以及模拟其他物种的突变体Ser377Thr、Ser377Asn和Arg375Leu能被ADAMTS-4正常切割。然而,Ser377Thr突变体对ADAMTS-5的切割具有抗性。
我们在切割位点的N端和C端区域鉴定出多个保守氨基酸,这些氨基酸可能影响酶 - 底物识别,并可能与ADAMTS-4和ADAMTS-5的外结合位点相互作用。
应探索抑制ADAMTS-4和ADAMTS-5外结合位点与聚集蛋白聚糖的结合,作为骨关节炎的一种治疗干预手段。