Williams K R, Reddigari S, Patel G L
Proc Natl Acad Sci U S A. 1985 Aug;82(16):5260-4. doi: 10.1073/pnas.82.16.5260.
A rat liver DNA helix-destabilizing protein (HDP) that has previously been proposed to play a role in transcription has been identified as M chain lactate dehydrogenase (LDH-5; L-lactate:NAD+ oxidoreductase, EC 1.1.1.27). Tryptic peptides accounting for 157 amino acids in the rat liver HDP have been characterized and then matched to the published sequence for the M chain of porcine LDH. Based on amino acid compositions and direct solid-phase protein sequencing, at least 148 of the 157 residues that were compared are identical in both proteins. In addition, both porcine LDH and the rat liver HDP have blocked amino termini and similar amino acid compositions and molecular weights. Rat liver HDP and LDH-5 that were purified to molecular homogeneity had similar specific activities in both single-stranded DNA (ss DNA) binding and LDH assays. HPLC tryptic peptide maps were also identical for both the rat liver HDP and LDH proteins. Since preincubation of HDP in NADH prevents its binding to ss DNA, both NADH and ss DNA may be binding at the same site. Further support for this latter idea derives from chemical-modification studies which demonstrate that tyrosine-238, which is located near the coenzyme binding site of LDH, seems to be essential for the ability of HDP to bind ss DNA. These results indicate caution in ascribing in vivo roles solely on the basis of binding to ss DNA. Alternatively, they suggest that a single protein may play more than one biological role.
一种先前被认为在转录过程中起作用的大鼠肝脏DNA螺旋不稳定蛋白(HDP)已被鉴定为M链乳酸脱氢酶(LDH-5;L-乳酸:NAD+氧化还原酶,EC 1.1.1.27)。已对占大鼠肝脏HDP中157个氨基酸的胰蛋白酶肽段进行了表征,然后将其与猪LDH M链的已发表序列进行匹配。基于氨基酸组成和直接固相蛋白质测序,所比较的157个残基中至少有148个在两种蛋白质中是相同的。此外,猪LDH和大鼠肝脏HDP都有封闭的氨基末端,且氨基酸组成和分子量相似。纯化至分子均一性的大鼠肝脏HDP和LDH-5在单链DNA(ss DNA)结合和LDH测定中具有相似的比活性。大鼠肝脏HDP和LDH蛋白的HPLC胰蛋白酶肽图也相同。由于HDP在NADH中预孵育会阻止其与ss DNA结合,因此NADH和ss DNA可能在同一位点结合。对后一种观点的进一步支持来自化学修饰研究,该研究表明位于LDH辅酶结合位点附近的酪氨酸-238似乎是HDP结合ss DNA能力所必需的。这些结果表明,仅基于与ss DNA的结合来赋予体内作用时应谨慎。或者,它们表明单一蛋白质可能发挥不止一种生物学作用。