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Preliminary characterization of a temperature-sensitive mutant of Moloney murine leukemia virus that produces particles at the restrictive temperature.

机译:莫尼鼠白血病病毒温度敏感突变体的初步表征,其在限制温度下产生颗粒。

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The isolation and preliminary characterization of a new temperature-sensitive mutant of Moloney murine leukemia virus, designated ts7, are reported. The infectivity of ts7, determined by a focus-forming unit assay, was reduced at least 100-fold when the virus was assayed at the nonpermissive temperature (39 degrees C) as compared with assay at the permissive temperature (34 degrees C). However, several lines of evidence indicated that the diminution of ts7 titer at 39 degrees C is not due to its inability to form virus particles at that temperature. The supernatant from ts7-infected cells grown at 39 degrees C showed significant infectivity when assayed at 34 degrees C; only small reductions in reverse transcriptase activity and fusion ability were observed when compared with supernatant from 34 degrees C ts7-infected cultures. That particles are produced at the nonpermissive temperature was confirmed by transmission electron microscopy of the supernatant from ts7-infected cells at 39 degrees C and by transmission electron microscope observations of mature particles trapped in the intercellular spaces of pelleted thin cell section. A possible explanation for the productivity at 39 degrees C of particles that are infectious at 34 degrees C but not at 39 degrees C is that the virus is heat labile at the nonpermissive temperature. Consistent with this hypothesis is the extreme heat lability of virus harvested at 34 degrees C. Such virus, when incubated at 39 degrees C, has a half-life one-sixth that of identical virus incubated at 34 degrees C, or that of wild-type virus at either temperature.
机译:报道了莫尼鼠白血病病毒,指定TS7的新型温度敏感突变体的分离和初步表征。通过聚焦形成单元测定确定的TS7的感染性降低至少100倍,当在允许温度(34℃)处的测定时,在非智能温度(39℃)上测定病毒时。然而,几种证据表明,在39摄氏度下的TS7滴度的减少不是由于其在该温度下形成病毒颗粒。在39℃下生长的TS7感染细胞的上清液显示出在34℃下测定时的显着感染性;与34摄氏度的上清液相比,观察到逆转录酶活性和融合能力的少量减少。通过在39℃下通过从TS7感染的细胞的上清液的透射电子显微镜并通过捕获在粒状薄细胞部分的细胞间隙中的成熟颗粒的透射电子显微镜观察,通过从TS7感染的细胞的透射电子显微镜进行了在非智能温度下产生的。在39摄氏度的39摄氏度的颗粒中的生产率的可能解释,但不在39摄氏度下,该病毒在非智能温度下是热不稳定的。与该假设一致的是在34℃下收获的病毒的极端热量易易损伤。这种病毒在39摄氏度下孵育时,具有在34摄氏度的34℃或野生孵育的相同病毒的半衰期六分之一。在任一温度下型病毒。

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