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474 INDEX<br />

Ivermectin, 398, 427, 455, 457, 458<br />

mode of action, 319, 335, 359, 360, 427–8, 458<br />

electrophysiology, 375<br />

receptor, 373–4<br />

resistance, 376–8, 428<br />

structure, 361<br />

Kainite, 373<br />

structure, 361<br />

Karyotyping, 6–7<br />

pulsed field gel electrophoresis (PFGE), 7<br />

Ketoconazole, 423, 452<br />

Kinetoplast, 281–2<br />

gene organization, 37<br />

maxicircle DNAs, 37, 38<br />

minicircle DNAs, 37, 282<br />

genome, 281<br />

RNA (kRNA) editing, 38–9, 40, 281, 282<br />

in vitro systems, 42<br />

regulatory proteins, 42–3<br />

therapeutic target, 448<br />

Kinetoplastids, see Trypanosomatids<br />

Kinetosome, 281<br />

kqt-1, 333<br />

kqt-2, 333<br />

kqt-3, 333<br />

Lactacystin, 180<br />

Lactate dehydrogenase, 159–60<br />

Lambda bacteriophage vectors, 7<br />

Large insert clone libraries, 7<br />

LdNT1, 203, 204<br />

LdNT2, 203, 204<br />

Legumain (Sm32), 178, 180<br />

Leishmania, 73, 74, 397, 437<br />

adenylyl cyclases, 259<br />

amino acid uptake, 172<br />

avirulence genetic rescue, 115–16<br />

chemotherapy, 413, 414, 446, 450–3<br />

drug resistance, 116–17, 413, 415–18, 430<br />

genome, 20, 21, 118<br />

functional genomics, 121<br />

manipulation, 118–19<br />

laboratory studies, 112<br />

life cycles, 112, 231<br />

phosphoglycans, 225<br />

promoter structures, 53<br />

proteolytic enzymes, 174, 175, 176–7<br />

purine metabolism, 208, 212–14<br />

drug targets, 418, 452<br />

<strong>trans</strong>port, 203–4<br />

pyrimidine metabolism, 220–1<br />

RNA <strong>trans</strong>cription regulation, 79<br />

HSP genes, 81<br />

secreted glycoconjugates, 237–9<br />

proteophosphoglycan, 239<br />

secreted acid phosphatase, 237, 238, 239<br />

surface glycoconjugates, 231–9<br />

glycosylinositolphospholipids, 235–6<br />

GP63, 236<br />

lipophosphoglycan (LPG), 112, 114–15, 231–5<br />

manan-like carbohydrate, 237<br />

membrane-bound acid phosphatase, 237<br />

<strong>trans</strong>mission, 112, 113<br />

<strong>trans</strong>poson mutagenesis, 117–18<br />

virulence, 111–22<br />

candidate genes, 119–22<br />

determinants, 113, 234, 235<br />

genetic approaches, 113–14, 119<br />

Leishmania adleri, 235<br />

Leishmania aethiopica:<br />

glycosylinositolphospholipids, 235<br />

secreted acid phosphatase, 237<br />

Leishmania amazonensis:<br />

acidocalcisomes, 249<br />

amino acid metabolism, 192<br />

HSP genes, 81<br />

proteolytic enzymes, 176<br />

secreted acid phosphatase, 237<br />

SERCA calcium pumps, 246<br />

virulence candidate genes, 120<br />

Leishmania braziliensis:<br />

amino acid metabolism, 192<br />

GP63, 236<br />

secreted acid phosphatase, 237<br />

Leishmania braziliensis panamensis:<br />

polyamines synthesis, 191<br />

purine <strong>trans</strong>port, 203<br />

Leishmania chagasi:<br />

promoter structures, 54<br />

protein phosphatases, 274<br />

Leishmania donovani:<br />

acidocalcisomes, 249<br />

adenylyl cyclases, 259<br />

amino acid metabolism, 183, 190, 191, 192<br />

catabolism, 188<br />

osmotic stress responses, 193<br />

uptake, 172<br />

calcium metabolism, 250<br />

calreticulin, 245<br />

chemotherapy, 451<br />

drug resistance, 415, 417

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